@phdthesis{Trappe2022, author = {Trappe, Julian}, title = {The influence of medieval building activity on relief development within the Spessart uplands, Germany. A sedimentological, geophysical and GIS-based approach at different castle and mining sites}, edition = {1. Auflage}, publisher = {W{\"u}rzburg University Press}, address = {W{\"u}rzburg}, isbn = {978-3-95826-184-6}, issn = {0510-9833}, doi = {10.25972/WUP-978-3-95826-185-3}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-261499}, school = {W{\"u}rzburg University Press}, pages = {XXI, 250}, year = {2022}, abstract = {In the Spessart, a low mountain range in central Germany, a feud during the Middle Ages led to the construction of numerous castles in this region. This study analyzes the mutual influence of (paleo-)relief development and medieval building activity using a geomorphological and geoarchaeological multimethod approach to expand the knowledge of human-environmental interactions during this time. For this purpose, GIS-based terrain analysis and geophysical measurements were conducted and combined with sedimentological information to create 1D-3D models of the subsurface and to assess knowledge of the landscape and relief evolution at various medieval castle and mining sites. The interpretation of all these data led to the answering of numerous site-specific questions on various geomorphological, geoarchaeological, geologic, and archaeological topics that have been explored in this work and have greatly increased our knowledge of each study site. In addition to these key contributions to the archaeological and geomorphological interpretation of individual study sites, a quantification of the anthropogenic influence on the relief development was conducted, a generalized model of the influence was derived, and new methodological and interpretative approaches were developed. Overall, this study links geomorphological/geological and (geo-)archaeological investigations at five medieval sites and delivers important information on human-environmental interactions within the Spessart and beyond.}, subject = {Geoarch{\"a}ologie}, language = {en} } @article{KleemannZamoraVillacisChiluisaetal.2022, author = {Kleemann, Janina and Zamora, Camilo and Villacis-Chiluisa, Alexandra Belen and Cuenca, Pablo and Koo, Hongmi and Noh, Jin Kyoung and F{\"u}rst, Christine and Thiel, Michael}, title = {Deforestation in continental Ecuador with a focus on protected areas}, series = {Land}, volume = {11}, journal = {Land}, number = {2}, issn = {2073-445X}, doi = {10.3390/land11020268}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-262078}, year = {2022}, abstract = {Forest conservation is of particular concern in tropical regions where a large refuge of biodiversity is still existing. These areas are threatened by deforestation, forest degradation and fragmentation. Especially, pressures of anthropogenic activities adjacent to these areas significantly influence conservation effectiveness. Ecuador was chosen as study area since it is a globally relevant center of forest ecosystems and biodiversity. We identified hotspots of deforestation on the national level of continental Ecuador between 1990 and 2018, analyzed the most significant drivers of deforestation on national and biome level (the Coast, the Andes, The Amazon) as well as inside protected areas in Ecuador by using multiple regression analysis. We separated the national system of protected areas (SNAP) into higher and lower protection levels. Besides SNAP, we also considered Biosphere Reserves (BRs) and Ramsar sites. In addition, we investigated the rates and spatial patterns of deforestation in protected areas and buffer zones (5 km and 10 km outwards the protected area boundaries) using landscape metrics. Between 1990 and 2018, approximately 4\% of the accumulated deforestation occurred within the boundaries of SNAP, and up to 25.5\% in buffer zones. The highest rates of deforestation have been found in the 5 km buffer zone around the protected areas with the highest protection level. Protected areas and their buffer zones with higher protection status were identified as the most deforested areas among SNAP. BRs had the highest deforestation rates among all protected areas but most of these areas just became BRs after the year 2000. The most important driver of deforestation is agriculture. Other relevant drivers differ between the biomes. The results suggest that the SNAP is generally effective to prevent deforestation within their protection boundaries. However, deforestation around protected areas can undermine conservation strategies to sustain biodiversity. Actions to address such dynamics and patterns of deforestation and forest fragmentation, and developing conservation strategies of their landscape context are urgently needed especially in the buffer zones of areas with the highest protection status.}, language = {en} } @article{SognoTraidlHoffmannKuenzer2020, author = {Sogno, Patrick and Traidl-Hoffmann, Claudia and Kuenzer, Claudia}, title = {Earth Observation data supporting non-communicable disease research: a review}, series = {Remote Sensing}, volume = {12}, journal = {Remote Sensing}, number = {16}, issn = {2072-4292}, doi = {10.3390/rs12162541}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-211113}, year = {2020}, abstract = {A disease is non-communicable when it is not transferred from one person to another. Typical examples include all types of cancer, diabetes, stroke, or allergies, as well as mental diseases. Non-communicable diseases have at least two things in common — environmental impact and chronicity. These diseases are often associated with reduced quality of life, a higher rate of premature deaths, and negative impacts on a countries' economy due to healthcare costs and missing work force. Additionally, they affect the individual's immune system, which increases susceptibility toward communicable diseases, such as the flu or other viral and bacterial infections. Thus, mitigating the effects of non-communicable diseases is one of the most pressing issues of modern medicine, healthcare, and governments in general. Apart from the predisposition toward such diseases (the genome), their occurrence is associated with environmental parameters that people are exposed to (the exposome). Exposure to stressors such as bad air or water quality, noise, extreme heat, or an overall unnatural surrounding all impact the susceptibility to non-communicable diseases. In the identification of such environmental parameters, geoinformation products derived from Earth Observation data acquired by satellites play an increasingly important role. In this paper, we present a review on the joint use of Earth Observation data and public health data for research on non-communicable diseases. We analyzed 146 articles from peer-reviewed journals (Impact Factor ≥ 2) from all over the world that included Earth Observation data and public health data for their assessments. Our results show that this field of synergistic geohealth analyses is still relatively young, with most studies published within the last five years and within national boundaries. While the contribution of Earth Observation, and especially remote sensing-derived geoinformation products on land surface dynamics is on the rise, there is still a huge potential for transdisciplinary integration into studies. We see the necessity for future research and advocate for the increased incorporation of thematically profound remote sensing products with high spatial and temporal resolution into the mapping of exposomes and thus the vulnerability and resilience assessment of a population regarding non-communicable diseases.}, language = {en} } @article{SaddiqueUsmanBernhofer2019, author = {Saddique, Naeem and Usman, Muhammad and Bernhofer, Christian}, title = {Simulating the impact of climate change on the hydrological regimes of a sparsely gauged mountainous basin, northern Pakistan}, series = {Water}, volume = {11}, journal = {Water}, number = {10}, issn = {2073-4441}, doi = {10.3390/w11102141}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-193175}, year = {2019}, abstract = {Projected climate changes for the 21st century may cause great uncertainties on the hydrology of a river basin. This study explored the impacts of climate change on the water balance and hydrological regime of the Jhelum River Basin using the Soil and Water Assessment Tool (SWAT). Two downscaling methods (SDSM, Statistical Downscaling Model and LARS-WG, Long Ashton Research Station Weather Generator), three Global Circulation Models (GCMs), and two representative concentration pathways (RCP4.5 and RCP8.5) for three future periods (2030s, 2050s, and 2090s) were used to assess the climate change impacts on flow regimes. The results exhibited that both downscaling methods suggested an increase in annual streamflow over the river basin. There is generally an increasing trend of winter and autumn discharge, whereas it is complicated for summer and spring to conclude if the trend is increasing or decreasing depending on the downscaling methods. Therefore, the uncertainty associated with the downscaling of climate simulation needs to consider, for the best estimate, the impact of climate change, with its uncertainty, on a particular basin. The study also resulted that water yield and evapotranspiration in the eastern part of the basin (sub-basins at high elevation) would be most affected by climate change. The outcomes of this study would be useful for providing guidance in water management and planning for the river basin under climate change.}, language = {en} } @article{ThonfeldGessnerHolzwarthetal.2022, author = {Thonfeld, Frank and Gessner, Ursula and Holzwarth, Stefanie and Kriese, Jennifer and da Ponte, Emmanuel and Huth, Juliane and Kuenzer, Claudia}, title = {A first assessment of canopy cover loss in Germany's forests after the 2018-2020 drought years}, series = {Remote Sensing}, volume = {14}, journal = {Remote Sensing}, number = {3}, issn = {2072-4292}, doi = {10.3390/rs14030562}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-255306}, year = {2022}, abstract = {Central Europe was hit by several unusually strong periods of drought and heat between 2018 and 2020. These droughts affected forest ecosystems. Cascading effects with bark beetle infestations in spruce stands were fatal to vast forest areas in Germany. We present the first assessment of canopy cover loss in Germany for the period of January 2018-April 2021. Our approach makes use of dense Sentinel-2 and Landsat-8 time-series data. We computed the disturbance index (DI) from the tasseled cap components brightness, greenness, and wetness. Using quantiles, we generated monthly DI composites and calculated anomalies in a reference period (2017). From the resulting map, we calculated the canopy cover loss statistics for administrative entities. Our results show a canopy cover loss of 501,000 ha for Germany, with large regional differences. The losses were largest in central Germany and reached up to two-thirds of coniferous forest loss in some districts. Our map has high spatial (10 m) and temporal (monthly) resolution and can be updated at any time.}, language = {en} } @article{DirscherlDietzKneiseletal.2021, author = {Dirscherl, Mariel and Dietz, Andreas J. and Kneisel, Christof and Kuenzer, Claudia}, title = {A novel method for automated supraglacial lake mapping in Antarctica using Sentinel-1 SAR imagery and deep learning}, series = {Remote Sensing}, volume = {13}, journal = {Remote Sensing}, number = {2}, issn = {2072-4292}, doi = {10.3390/rs13020197}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-222998}, year = {2021}, abstract = {Supraglacial meltwater accumulation on ice sheets can be a main driver for accelerated ice discharge, mass loss, and global sea-level-rise. With further increasing surface air temperatures, meltwater-induced hydrofracturing, basal sliding, or surface thinning will cumulate and most likely trigger unprecedented ice mass loss on the Greenland and Antarctic ice sheets. While the Greenland surface hydrological network as well as its impacts on ice dynamics and mass balance has been studied in much detail, Antarctic supraglacial lakes remain understudied with a circum-Antarctic record of their spatio-temporal development entirely lacking. This study provides the first automated supraglacial lake extent mapping method using Sentinel-1 synthetic aperture radar (SAR) imagery over Antarctica and complements the developed optical Sentinel-2 supraglacial lake detection algorithm presented in our companion paper. In detail, we propose the use of a modified U-Net for semantic segmentation of supraglacial lakes in single-polarized Sentinel-1 imagery. The convolutional neural network (CNN) is implemented with residual connections for optimized performance as well as an Atrous Spatial Pyramid Pooling (ASPP) module for multiscale feature extraction. The algorithm is trained on 21,200 Sentinel-1 image patches and evaluated in ten spatially or temporally independent test acquisitions. In addition, George VI Ice Shelf is analyzed for intra-annual lake dynamics throughout austral summer 2019/2020 and a decision-level fused Sentinel-1 and Sentinel-2 maximum lake extent mapping product is presented for January 2020 revealing a more complete supraglacial lake coverage (~770 km\(^2\)) than the individual single-sensor products. Classification results confirm the reliability of the proposed workflow with an average Kappa coefficient of 0.925 and a F\(_1\)-score of 93.0\% for the supraglacial water class across all test regions. Furthermore, the algorithm is applied in an additional test region covering supraglacial lakes on the Greenland ice sheet which further highlights the potential for spatio-temporal transferability. Future work involves the integration of more training data as well as intra-annual analyses of supraglacial lake occurrence across the whole continent and with focus on supraglacial lake development throughout a summer melt season and into Antarctic winter.}, language = {en} } @article{OttingerBachoferHuthetal.2021, author = {Ottinger, Marco and Bachofer, Felix and Huth, Juliane and Kuenzer, Claudia}, title = {Mapping aquaculture ponds for the coastal zone of Asia with Sentinel-1 and Sentinel-2 time series}, series = {Remote Sensing}, volume = {14}, journal = {Remote Sensing}, number = {1}, issn = {2072-4292}, doi = {10.3390/rs14010153}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-252207}, year = {2021}, abstract = {Asia dominates the world's aquaculture sector, generating almost 90 percent of its total annual global production. Fish, shrimp, and mollusks are mainly farmed in land-based pond aquaculture systems and serve as a primary protein source for millions of people. The total production and area occupied for pond aquaculture has expanded rapidly in coastal regions in Asia since the early 1990s. The growth of aquaculture was mainly boosted by an increasing demand for fish and seafood from a growing world population. The aquaculture sector generates income and employment, contributes to food security, and has become a billion-dollar industry with high socio-economic value, but has also led to severe environmental degradation. In this regard, geospatial information on aquaculture can support the management of this growing food sector for the sustainable development of coastal ecosystems, resources, and human health. With free and open access to the rapidly growing volume of data from the Copernicus Sentinel missions as well as machine learning algorithms and cloud computing services, we extracted coastal aquaculture at a continental scale. We present a multi-sensor approach that utilizes Earth observation time series data for the mapping of pond aquaculture within the entire Asian coastal zone, defined as the onshore area up to 200 km from the coastline. In this research, we developed an object-based framework to detect and extract aquaculture at a single-pond level based on temporal features derived from high-spatial-resolution SAR and optical satellite data acquired from the Sentinel-1 and Sentinel-2 satellites. In a second step, we performed spatial and statistical data analyses of the Earth-observation-derived aquaculture dataset to investigate spatial distribution and identify production hotspots at various administrative units at regional, national, and sub-national scale.}, language = {en} } @phdthesis{Rodrian2009, author = {Rodrian, Philipp T.}, title = {Das Erbe der deutschen Kolonialzeit in Namibia im Fokus des "Tourist Gaze" deutscher Touristen}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-231424}, school = {Universit{\"a}t W{\"u}rzburg}, pages = {210}, year = {2009}, abstract = {Die Studie besch{\"a}ftigt sich mit der Wahrnehmung des deutschen Kolonialerbes in Namibia aus Sicht deutscher Touristen. Namibia ist das Land in Afrika welches die st{\"a}rkste Durchdringung mit Elementen der deutschen Kolonialzeit aufweist. Dar{\"u}ber hinaus zeichnet sich dieses Land durch eine sehr hohe touristische Bedeutung des deutschen Quellmarktes aus. Weiterhin ist die gemeinsame koloniale Vergangenheit weder bilateral noch innerhalb Namibias aufgearbeitet, was der Thematik eine gesellschaftspolitische Komponente verleiht. Die Analyse der touristischen Wahrnehmung basiert auf 103 qualitativen Interviews mit deutschen Touristen in Namibia. Neben der Perspektive der Reisenden werden Akteure untersucht, welche den ‚Blick' der Touristen lenken und beeinflussen. Dabei kommen eine Inhaltsanalyse von deutschsprachiger Reiseliteratur sowie teilnehmende Beobachtungen bei Stadtf{\"u}hrungen mit lokalen Reiseleitern in der Stadt zum Einsatz. Die Resultate zeigen, dass die Touristen das Erbe der deutschen Kolonialzeit als sehr heterogenes Ph{\"a}nomen interpretieren. Durch das Aufsummieren der vielf{\"a}ltigen Erfahrungen mit gelebtem und gebautem Kolonialerbe wird die Wahrnehmung geographisch wirksam, da die Eindr{\"u}cke auf R{\"a}ume und Menschen {\"u}bertragen werden und nicht auf punktuellen Elementen verharren. Aufgrund von Unterdr{\"u}ckung und Verbrechen in der Kolonialzeit sehen die befragten Touristen das deutsche Erbe in Namibia als ein ‚schwieriges' an, das kaum nostalgische Gef{\"u}hle ausl{\"o}st, sondern eher zu einer kritischen Auseinandersetzung mit der Geschichte anregt. Der Grad dieser Dissonanz ist stark davon abh{\"a}ngig, in wie weit die koloniale Thematik nach Ansicht der Touristen in aktuellem Bezug steht oder aber als nicht mehr relevante Vergangenheit interpretiert wird. Neben der ‚Dissonanz' k{\"o}nnen die Touristen anhand der beiden weiteren Indikatoren ‚Interesse' - im Sinne einer Auseinandersetzung und Informiertheit - sowie ‚Attraktion' - als touristische Bedeutung - typologisiert werden. Die entscheidende Determinante f{\"u}r die Charakterisierung der Befragten stellt das Maß der empfundenen Dissonanz dar. Weiterhin l{\"a}sst sich eine Differenzierung in Touristen mit einer vorbereiteten und organisierten und solche mit einer unvorbereiteten und spontanen Konfrontation mit dem deutschen Erbe vornehmen. Insgesamt k{\"o}nnen f{\"u}nf Typen - ‚klassische Heritage-Touristen', ‚spontane Heritage-Touristen, ‚Kritiker', ‚historische motivierte Touristen' und ‚Sightseeing-Touristen' - identifiziert werden, wobei den drei erstgenannten eine Wahrnehmung als ‚schwieriges', dissonantes Erbe immanent ist.}, subject = {Namibia}, language = {de} } @phdthesis{Poppitz2022, author = {Poppitz, Hanka}, title = {Untersuchungen zur Alteration von R{\"u}ckstandshalden der Kaliindustrie im Werratal}, doi = {10.25972/OPUS-25380}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-253802}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2022}, abstract = {Im Zuge der Aufbereitung von Kalirohsalzen fallen weltweit feste R{\"u}ckst{\"a}nde an, die auf Großhalden entsorgt werden. Die Aufhaldung und die von den R{\"u}ckstandshalden ausgehenden Umweltauswirkungen unterliegen in Deutschland der Kontrolle durch die zust{\"a}ndigen Bergbeh{\"o}rden. Um die Emissionen besser quantifizieren zu k{\"o}nnen und die Eignung technischer Minderungsmaßnahmen zu beurteilen, erfolgte im Rahmen der Genehmigungsverfahren zur Erweiterung der R{\"u}ckstandshalden an den Standorten Hattorf und Wintershall die Erkundung des Haldenk{\"o}rpers durch Bohrungen mit Fokus auf die darin ablaufenden Str{\"o}mungsprozesse. Eine Modellvorstellung zur Zonierung der Halde im Hinblick auf Str{\"o}mungsprozesse war zun{\"a}chst anhand von Haldenbohrungen am Standort Hattorf entwickelt worden. Das Ziel dieser Arbeit war, mittels der Bohrergebnisse einer weiteren Haldenbohrung am Standort Wintershall die {\"U}bertragbarkeit der zuvor in Hattorf gefundenen Gegebenheiten zu {\"u}berpr{\"u}fen und den Kenntnisstand zu Str{\"o}mungs- und Alterationsprozessen innerhalb der Halde zu verbessern. Im Zuge der Haldenbohrungen erfolgten bohrbegleitende Untersuchungen (Abflussmessungen, Kamerabefahrungen, geophysikalische und geohydraulische Untersuchungen), und an dem Bohrkernmaterial und den Haldenl{\"o}sungen wurde ein umfangreiches Laboruntersuchungsprogramm ausgef{\"u}hrt, das chemische und mineralogische Analysen sowie Untersuchungen der physikalischen und hydraulischen Eigenschaften des R{\"u}ckstands umfasste. Zus{\"a}tzlich wurden erg{\"a}nzende Gef{\"u}geuntersuchungen (D{\"u}nnschliffuntersuchungen am Rasterelektronen-Mikroskop und exemplarische CT-Untersuchungen) an Probenmaterial der Halde Hattorf durchgef{\"u}hrt, um mittels visueller Untersuchungen insbesondere die Rolle {\"u}bersch{\"u}tteter ehemaliger Haldenoberfl{\"a}chen f{\"u}r das Str{\"o}mungsgeschehen im Haldenk{\"o}rper zu erkunden. Unter Ber{\"u}cksichtigung aller Ergebnisse wurden die Str{\"o}mungs- und Alterationsprozesse im R{\"u}ckstand beschrieben. Die maßgebliche Erkenntnis im Hinblick auf das Str{\"o}mungsgeschehen im Haldenk{\"o}rper ist, dass in dessen Porenraum keine S{\"a}ttigung besteht und dieser in allen Bereichen mit einem Gemisch aus L{\"o}sung und Luft gef{\"u}llt ist, so dass die Gesetzm{\"a}ßigkeiten der Zweiphasenstr{\"o}mung maßgeblich sind. Die bislang zur Bewertung von Str{\"o}mungsprozessen {\"u}blichen Durchl{\"a}ssigkeitsbeiwerte sind damit ungeeignet, da sie f{\"u}r ges{\"a}ttigte Bereiche gelten. {\"U}bereinstimmend wurde mit einer Reihe von Ergebnissen belegt, dass die Str{\"o}mungsprozesse im Haldenk{\"o}rper an bevorzugte Wegsamkeiten gebunden sind, bei denen es sich ausweislich der Gef{\"u}geuntersuchungen um ein System miteinander verbundenen Sekund{\"a}rporen handelt. Der R{\"u}ckstand ist zu charakterisieren als ein Nebeneinander aus diesen Wegsamkeiten und unbeeinflussten, aggregierten Bereichen. Des Weiteren wurde gezeigt, dass der Niederschlagseinfluss zur Teufe hin abnimmt, und es wurden Kriterien zum Nachweis von Niederschlagsunbeeinflussten Bereichen formuliert. Die Arbeit hat damit auch gezeigt, dass die Modellvorstellung, welche die Halde in eine f{\"u}r die Str{\"o}mungsprozesse maßgebliche Haldenmantelzone, eine gering durchl{\"a}ssige Kernzone und eine dazwischen befindliche {\"U}bergangszone mit gradueller {\"A}nderung der Eigenschaften unterteilt, grunds{\"a}tzlich auch auf den Standort Wintershall {\"u}bertragbar ist. Das Modell des Haldenk{\"o}rpers wurde weiter detailliert und zus{\"a}tzliche Kriterien zur Verortung der einzelnen Zonen im Haldenk{\"o}rper abgeleitet. Insbesondere wurde im Haldenmantelbereich eine charakteristische Randzone ausgehalten, welche im Ergebnis einer intensiven Durchstr{\"o}mung mit un- bzw. teilges{\"a}ttigten L{\"o}sungen selektiv an Wertstoff-Restgehalten abgereichert ist. Sie 2 wird von den unterlagernden reaktiven Zonen durch die L{\"o}sungsfronten f{\"u}r Kalium und Magnesium abgegrenzt. Aufbauend auf der erweiterten Modellvorstellung wurde die Zonierung f{\"u}r die Haldenbohrung am Standort Wintershall abgeleitet. Besonderes Augenmerk galt im Rahmen aller Untersuchungen der Wirkung von {\"u}bersch{\"u}tteten ehemaligen Haldenoberfl{\"a}chen, die als Sch{\"u}ttfl{\"a}chen bezeichnet werden. Es zeigte sich anhand der Untersuchungen, dass die Relevanz von Sch{\"u}ttfl{\"a}chen f{\"u}r das Str{\"o}mungsgeschehen abh{\"a}ngig von der Sch{\"u}tthistorie ist, und dass diese, selbst wenn sie aktiv am Str{\"o}mungsgeschehen teilnehmen, die Gegebenheiten im Haldenk{\"o}rper nur lokal {\"u}berpr{\"a}gen. Das Ziel der Aufstellung eines Modells zu Str{\"o}mungsprozessen im Haldenk{\"o}rper besteht in der Beurteilung der von diesen Halden ausgehenden Umweltauswirkungen. Dar{\"u}ber hinaus dienen die Erkenntnisse der Einsch{\"a}tzung der Wirksamkeit der bereits ergriffenen bzw. noch zu ergreifenden Schutz- und Emissionsminderungsmaßnahmen sowie der Planung zuk{\"u}nftiger Maßnahmen zur Wiedernutzbarmachung der Tagesoberfl{\"a}che und zur Erstellung von Prognosen. In diesem Sinne wurden aus den Ergebnissen der Arbeit abschließend Empfehlungen f{\"u}r technische Konzepte und den Haldenbetrieb abgeleitet.}, subject = {Kaliindustrie}, language = {de} } @article{PhilippWegmannKuebertFlock2021, author = {Philipp, Marius and Wegmann, Martin and K{\"u}bert-Flock, Carina}, title = {Quantifying the Response of German Forests to Drought Events via Satellite Imagery}, series = {Remote Sensing}, volume = {13}, journal = {Remote Sensing}, number = {9}, issn = {2072-4292}, doi = {10.3390/rs13091845}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-239575}, year = {2021}, abstract = {Forest systems provide crucial ecosystem functions to our environment, such as balancing carbon stocks and influencing the local, regional and global climate. A trend towards an increasing frequency of climate change induced extreme weather events, including drought, is hereby a major challenge for forest management. Within this context, the application of remote sensing data provides a powerful means for fast, operational and inexpensive investigations over large spatial scales and time. This study was dedicated to explore the potential of satellite data in combination with harmonic analyses for quantifying the vegetation response to drought events in German forests. The harmonic modelling method was compared with a z-score standardization approach and correlated against both, meteorological and topographical data. Optical satellite imagery from Landsat and the Moderate Resolution Imaging Spectroradiometer (MODIS) was used in combination with three commonly applied vegetation indices. Highest correlation scores based on the harmonic modelling technique were computed for the 6th harmonic degree. MODIS imagery in combination with the Normalized Difference Vegetation Index (NDVI) generated hereby best results for measuring spectral response to drought conditions. Strongest correlation between remote sensing data and meteorological measures were observed for soil moisture and the self-calibrated Palmer Drought Severity Index (scPDSI). Furthermore, forests regions over sandy soils with pine as the dominant tree type were identified to be particularly vulnerable to drought. In addition, topographical analyses suggested mitigated drought affects along hill slopes. While the proposed approaches provide valuable information about vegetation dynamics as a response to meteorological weather conditions, standardized in-situ measurements over larger spatial scales and related to drought quantification are required for further in-depth quality assessment of the used methods and data.}, language = {en} } @phdthesis{NghengwaAche2019, author = {Nghengwa Ache, Patience}, title = {Waste Management As a Correlate of Environmental Sustainability in Sub-Saharan Africa: The Example of Imo State, Nigeria}, doi = {10.25972/OPUS-19224}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-192240}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2019}, abstract = {Summary Introduction. Rapid and uncontrolled industrialisation and urbanisation in most developing countries are resulting in land, air and water pollution at rates that the natural environment cannot fully renew. These contemporary environmental issues have attracted local, national and international attention. The problem of urban garbage management is associated with rapid population growth in developing countries. These are pertinent environmental crises of sustainability and sanitation in Sub-Saharan Africa and other Third World countries. Despite efforts of the various tiers of government (the case of Nigeria with three tiers: Federal, State and Local governments) in managing solid waste in urban centres, it is still overflowing open dumpsites, litters streets and encroaches into water bodies. These affect the quality of urban living conditions and the natural environment. Sub-Saharan and other developing countries are experiencing an upsurge in the accumulation and the diversity of waste including E-waste, waste agricultural biomass and waste plastics. The need for effective, sustainable and efficient management of waste through the application of 3Rs principle (Reduce, Reuse, and Recycle) is an essential element for promoting sustainable patterns of consumption and production. This study examined waste management in Imo State, Nigeria as an aspect correlated to the sustainability of its environment. Materials and methods. To analyse waste management as a correlate of environmental sustainability in Sub-Saharan Africa, Imo State, in eastern Nigeria was chosen as a study area. Issues about waste handling and its impact on the environment in Imo have been reported since its creation in 1976; passing through the State with the cleanest State capital in 1980 to a 'dunghill' in 2013 and a 'garbage capital' on October 1, 2016. Within this State, three study sites were selected - Owerri metropolis (the State capital) Orlu and Okigwe towns. At these sites, households, commercial areas, accommodation and recreational establishments and schools, as well as dumpsites were investigated to ascertain the composition, quantity, distribution, handling patterns of waste in relation to the sustainability of the State's environment. This was done conveniently but randomly through questionnaires, interviews, focus group discussions and non-participant observation; these were all heralded by a detailed deskwork. Data were entered using Microsoft Office Excel and were explored and analysed using the Statistical Package for Social Sciences - SPSS. Data were made essentially of categorical variables and were analysed using descriptive statistics. The association between categorical variables was measured using Cramer's V the Chi-Square that makes the power and the reliability of the test. Cramer's V is a measure of association tests directly integrated with cross-tabulation. The Chi-Square test of equal proportions was used to compare proportions for significant differences at 0.05 levels. The statistical package - the Epi Info 6.04d was also used since a contingency table had to be created from several sub-outputs and determine the extent of association between the row and column categories. The scale variable 'quantity of waste generated' was described using measures of central tendency. It was screened for normality using the Kolmogorov-Smirnov and Shapiro-Wilk tests for normality; in all context, the normality assumption was violated (P<0.05). Five null hypotheses were tested using Logistic Regression model. The explanatory power of individual conceptual component was calculated using the Cox \& Snell R2 and that of individual indicators was also appraised using the Likelihood Ratio test. In the context of this work, the significance of the variability explained by the model (baseline model) was appraised using the Omnibus Tests of Model Coefficients, the magnitude of this variability explained by the model using the Cox \& Snell R2 and the effects of individual predictors using the Likelihood Ratio test. Qualitatively, data from open-ended items, observations and interviews were analysed using the process of thematic analysis whereby concepts or ideas were grouped under umbrella terms or keywords. The results were presented using tables, charts, graphs, photos and maps. Findings and discussions. The total findings and analyses indicated that proper waste handling in Imo State, Nigeria has a positive impact on the environment. This was assessed by the community's awareness of waste management via sources like the radio and the TV, their education on waste management and schools' integration of environmental education in their program. Although most community members perceived the State's environment as compared to it about 10 years' back has worsened, where they were conscious of proper waste handling measures, the environment was described to be better. This influence of environmental awareness and education on environmental sustainability appraised using Logistic Regression Model, portrayed a significant variability (Omnibus Tests of Model Coefficients: χ2=42.742; P=0.014), inferring that environmental awareness and education significantly predict environmental sustainability. The findings also revealed that organic waste generation spearheaded amongst other waste types like paper, plastic, E-waste, metal, textile and glass. While waste pickers always sorted paper, plastics, aluminium and metal, some of them also sorted out textile and glass. Statistically (P<0.05), in situations where waste was least generated (i.e., 1-2kg per day), community members maintained that the environmental quality was better in comparison to 10 years' back. Waste items like broken glass and textile as well as the remains of E-waste after the extraction of copper and brass were not sorted for and these contributed more to environmental degradation. Similarly, the influence of wealth on environmental sustainability was appraised using Logistic Regression Model including development index related indicators like education, occupation, income and the ability to pay for waste disposal. Harmonising the outcome, farmers, who were mostly the least educated claimed to notice more environmental improvement. In addition, those who did not agree to pay for waste disposal who were mostly those with low income (less than 200,000 Naira, i.e. about 620 Euros monthly) perceived environmental improvement more than those with income above 200,000 Naira. This irony can be attributed to the fact that those with low educational backing lack the capacity to appreciate environmental sustainability pointers well as compared to those with a broader educational background with critical thinking. The employment and poverty reduction opportunities pertaining to waste management on environmental sustainability was appraised using qualitative thematic analysis. All community members involved in sorting, buying and selling of waste items had no second job. They attested that the money earned from their activities sustained their livelihood and families. Some expressed love for the job, especially as they were their own masters. Waste picking and trading in waste items are offering employment opportunities to many communities around the world. For instance, in the waste recycling, waste composting, waste-to-energy plants and die Stadtreiniger in W{\"u}rzburg city. The workers in these enterprises have jobs as a result of waste. Waste disposal influence on environmental sustainability was appraised using the Binary Logistic Regression Model and the variability explained by the model was significant. The validity was also supported by the Wald statistics (P<0.05), which indicates the effect of the predictors is significant. Environmental sustainability was greatly reliant on indicators like the frequency at which community members emptied their waste containers; how/where waste is disposed of, availability of disposal site or public bin near the house, etc. Imolites who asserted to have public waste bins or disposal sites near their houses maintained that the quality of the State's environment had worsened as such containers/disposal sites were always stinking as well as had animals and smoke around them. Imolites around disposal sites complained of traits like diarrhoea, catarrh, insect bites, malaria, smoke and polluted air. Conclusions. The liaison between poor waste management strategies and the sustainability of the Imo State environment was considered likely as statistically significant ineffectiveness, lack of awareness, poverty, insufficient and unrealistic waste management measures were found in this study area. In these situations, the environment was said to have not improved. Such inadequacies in the handling of generated waste did not only expose the citizenry to health dangers but also gave rise to streets and roads characterized by filth and many unattended disposal sites unleashing horrible odour to the environment and attracting wild animals. This situation is not only prevalent in Imo State, Nigeria but in many Sub-Saharan cities. Future Perspectives. To improve the environment in Sub-Saharan Africa, it is imperative to practice an inclusive and integrated sustainable waste management system. The waste quantity in this region is fast growing, especially food/organic waste. The region should aim at waste management laws and waste reduction strategies, which will help save and produce more food that it really needs. Waste management should be dissociated from epidemic outbreaks like cholera, typhoid, Lassa fever and malaria, whose vectors thrive in filthy environments. Water channels and water bodies should not be waste disposal channels or waste disposal sites.}, language = {en} } @article{WangBachoferKoehleretal.2022, author = {Wang, Zhiyuan and Bachofer, Felix and Koehler, Jonas and Huth, Juliane and Hoeser, Thorsten and Marconcini, Mattia and Esch, Thomas and Kuenzer, Claudia}, title = {Spatial modelling and prediction with the spatio-temporal matrix: a study on predicting future settlement growth}, series = {Land}, volume = {11}, journal = {Land}, number = {8}, issn = {2073-445X}, doi = {10.3390/land11081174}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-281856}, year = {2022}, abstract = {In the past decades, various Earth observation-based time series products have emerged, which have enabled studies and analysis of global change processes. Besides their contribution to understanding past processes, time series datasets hold enormous potential for predictive modeling and thereby meet the demands of decision makers on future scenarios. In order to further exploit these data, a novel pixel-based approach has been introduced, which is the spatio-temporal matrix (STM). The approach integrates the historical characteristics of a specific land cover at a high temporal frequency in order to interpret the spatial and temporal information for the neighborhood of a given target pixel. The provided information can be exploited with common predictive models and algorithms. In this study, this approach was utilized and evaluated for the prediction of future urban/built-settlement growth. Random forest and multi-layer perceptron were employed for the prediction. The tests have been carried out with training strategies based on a one-year and a ten-year time span for the urban agglomerations of Surat (India), Ho-Chi-Minh City (Vietnam), and Abidjan (Ivory Coast). The slope, land use, exclusion, urban, transportation, hillshade (SLEUTH) model was selected as a baseline indicator for the performance evaluation. The statistical results from the receiver operating characteristic curve (ROC) demonstrate a good ability of the STM to facilitate the prediction of future settlement growth and its transferability to different cities, with area under the curve (AUC) values greater than 0.85. Compared with SLEUTH, the STM-based model achieved higher AUC in all of the test cases, while being independent of the additional datasets for the restricted and the preferential development areas.}, language = {en} } @phdthesis{Emmert2020, author = {Emmert, Adrian Alexander}, title = {The Internal Structure of Periglacial Landforms - Assessments of Subsurface Variations in Permafrost-related and Frost-related Phenomena by Multi-dimensional Geophysical Investigations}, edition = {1. Auflage}, publisher = {W{\"u}rzburg University Press}, address = {W{\"u}rzburg}, isbn = {978-3-95826-138-9}, doi = {10.25972/WUP-978-3-95826-139-6}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-202437}, school = {W{\"u}rzburg University Press}, pages = {xix, 167}, year = {2020}, abstract = {The internal structure of periglacial landforms contains valuable information on past and present environmental conditions. To benefit from this archive, however, an enhanced understanding of subsurface variations is crucial. This enables to assess the influence of the internal structure on prevailing process regimes and to evaluate the sensitivity of different landform units to environmental changes. This thesis investigates structural variations in the subsurface of (i) rock glaciers,(ii) solifluction lobes, (iii) palsas/ lithalsas and (iv) patterned ground, which occur between the different landform types, but also between landform units of the same type. Investigated variables comprise (i) the spatial distribution of permafrost, (ii) ground ice content, (iii) the origin of ground ice, (iv) thickness of the active layer and (v) frost table topography. Multi-dimensional investigations by the geophysical methods Electrical Resistivity Imaging (ERI) and Ground-Penetrating Radar (GPR) were performed in six study areas (a-f): four of them are located in high-alpine environments in Switzerland and two of them are located in the subarctic highlands of Iceland. Additionally, surface and subsurface temperature values were continuously recorded at selected study sites. At one study site, pF-values, representing the matric potential (or water potential), were recorded. From a methodological view, this thesis focuses on the application of quasi-3-D ERI, an approach in which many two-dimensional data sets are combined to create one three-dimensional data set. This permits e.g., a three-dimensional delimitation of subsurface structures and a spatial investigation of the distribution of ground ice. Besides the analysis of field data, this thesis incudes a comparison between inversion models produced with different software products, based on two synthetic data sets. The detection of resistivity structures and reflection patterns provides valuable insights into the internal structure of the investigated landform units: At the high-alpine study site at (a) Piz Nair, a highly variable ice content indicates a complex development of the investigated rock glacier assembly. The local formation of ground ice is attributed to an embedding of surface patches of snow or ice into the subsurface by rockfall. Results of geoelectric monitoring surveys on selected rock glaciers show the influence of seasonal alterations in the internal structure on subsurface meltwater flow. At the study site at (b) Piz {\"U}ertsch, results indicate the occurrences of isolated ground ice patches in a significantly larger rock glacier. Detected characteristics of the internal structure enable to reconstruct the development of the rock glacier, in which a temporary override of an adjacent glacier tongue on the rock glacier is considered crucial for the current distribution of ground ice. However, results of this thesis clearly show the absence of buried glacier ice in the subsurface of the rock glacier. Results from a rock glacier near the (c) Las Trais Fluors mountain ridge affirm the existence of a water-permeable frozen layer, which was assumed in previous studies. Furthermore, results show that the rock glacier contains large amounts of rockfall deposits. A joint interpretation of ERI and GPR results from the investigated scree slope at the mountain (d) Blauberg (Furka Pass) reveals characteristic structures in the subsurface, which enable a differentiation between solifluction lobes and pebbly rock glaciers. At the subarctic study site (e) Orravatnsr{\´u}stir, results show that the internal structure of palsas can be used to deduce their current development stage and to assess past and future developments. Presented results affirm a long history of palsa development at the study site, as assumed in previous studies, but indicate recently changing environmental conditions. The investigated occurrences of patterned ground in the proglacial area of the glacier (f) Hofsj{\"o}kull are currently not influenced by the detected occurrence of permafrost, according to the presented results. Therefore, a temporary formation of pattered ground is assumed, which is linked to the retreat of the glacier. This thesis shows discrepancies between the internal structure of some of the investigated landform units and the recent environmental conditions. This indicates a delayed adaption and a low sensitivity of the landform units to environmental changes. Findings indicate that the future development of permafrost will be strongly affected by variations in snowfall. Furthermore, the detection of isolated occurrences of ground ice at several study sites contradicts the widely assumed effectivity of balancing heat fluxes to create homogenous subsurface conditions in relatively fine-grained subsurface materials.}, subject = {Permafrost}, language = {en} } @article{RoeschPlank2022, author = {R{\"o}sch, Moritz and Plank, Simon}, title = {Detailed mapping of lava and ash deposits at Indonesian volcanoes by means of VHR PlanetScope change detection}, series = {Remote Sensing}, volume = {14}, journal = {Remote Sensing}, number = {5}, issn = {2072-4292}, doi = {10.3390/rs14051168}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-262232}, year = {2022}, abstract = {Mapping of lava flows in unvegetated areas of active volcanoes using optical satellite data is challenging due to spectral similarities of volcanic deposits and the surrounding background. Using very high-resolution PlanetScope data, this study introduces a novel object-oriented classification approach for mapping lava flows in both vegetated and unvegetated areas during several eruptive phases of three Indonesian volcanoes (Karangetang 2018/2019, Agung 2017, Krakatau 2018/2019). For this, change detection analysis based on PlanetScope imagery for mapping loss of vegetation due to volcanic activity (e.g., lava flows) is combined with the analysis of changes in texture and brightness, with hydrological runoff modelling and with analysis of thermal anomalies derived from Sentinel-2 or Landsat-8. Qualitative comparison of the mapped lava flows showed good agreement with multispectral false color time series (Sentinel-2 and Landsat-8). Reports of the Global Volcanism Program support the findings, indicating the developed lava mapping approach produces valuable results for monitoring volcanic hazards. Despite the lack of bands in infrared wavelengths, PlanetScope proves beneficial for the assessment of risk and near-real-time monitoring of active volcanoes due to its high spatial (3 m) and temporal resolution (mapping of all subaerial volcanoes on a daily basis).}, language = {en} } @article{Hardaker2021, author = {Hardaker, Sina}, title = {Platform economy: (dis-) embeddedness processes in urban spaces}, series = {Urban Transformations}, volume = {3}, journal = {Urban Transformations}, issn = {2524-8162}, doi = {10.1186/s42854-021-00029-x}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-271329}, pages = {1-13}, year = {2021}, abstract = {Digital platforms, understood as multi-sided matchmakers, have amassed huge power, reimagining the role of consumers, producers, and even ownership. They increasingly dictate the way the economy and urban life is organized. Yet, despite their influential and far-reaching role in shaping our economic as well as sociocultural world, our understanding of their embeddedness, namely how their activities are embedded in systems of social and societal relationships and how they conceptualize their main functions and actions in relation to their wider setting, remains rudimentary. Consequently, the purpose of this frontier paper is threefold. Firstly, it reveals the need to discuss and evaluate (dis-)embedding processes in platform urbanism in order to understand the underlying dynamics of platform power and urban transformation. Secondly, it aims to reveal the main reasons in regard to the difficulties in pinpointing digital platforms embeddedness. Thirdly, it seeks to propose future research unravelling the (dis-)embeddedness of the platform economy. This paper argues for three main reasons namely unawareness, unaccountability and non-transparency of digital platforms that drive the lack of embeddedness and reaffirms platform power. This is mainly based on the configuration of new commodities, platforms' strategic avoidance of labour protections and other regulatory frameworks as well as platforms' secrecy in which they operate. This frontier paper argues that transferring the concept of embeddedness to the platform economy might serve as a valuable tool to understand and pinpoint essential dynamics and relationships at play, therefore proposing embeddedness as a basis for future research on the platform economy. It strongly argues that a more detailed understanding is urgently needed, in order to be able to understand, accompany and actively influence the development of the platform economy in regulatory terms.}, language = {en} } @phdthesis{Abel2023, author = {Abel, Daniel Karl-Joseph}, title = {Weiterentwicklung der Bodenhydrologie des regionalen Klimamodells REMO}, doi = {10.25972/OPUS-31146}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-311468}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2023}, abstract = {Die Bodenfeuchte stellt eine essenzielle Variable f{\"u}r den Energie-, Feuchte- und Stoffaustausch zwischen Landoberfl{\"a}che und Atmosph{\"a}re dar. Ihre Auswirkungen auf Temperatur und Niederschlag sind vielf{\"a}ltig und komplex. Die in Klimamodellen verwendeten Schemata zur Simulation der Bodenfeuchte, auch bodenhydrologische Schemata genannt, sind aufgrund des Ursprungs der Klimamodelle aus Wettermodellen jedoch h{\"a}ufig sehr stark vereinfacht dargestellt. Bei Klimamodellen, die Simulationen mit einer groben Aufl{\"o}sung von mehreren Zehner- oder Hunderterkilometern rechnen, k{\"o}nnen viele Prozesse vernachl{\"a}ssigt werden. Da die Aufl{\"o}sung der Klimamodelle jedoch stetig steigt und mittlerweile beim koordinierten Projekt regionaler Klimamodelle CORDEX-CORE standardm{\"a}ßig bei 0.22° Kantenl{\"a}nge liegt, m{\"u}ssen auch h{\"o}her aufgel{\"o}ste Daten und mehr Prozesse simuliert werden. Dies gilt erst recht mit Blick auf konvektionsaufl{\"o}sende Simulationen mit wenigen Kilometern Kantenl{\"a}nge. Mit steigenden Modellaufl{\"o}sungen steigt zugleich die Komplexit{\"a}t und Differenziertheit der Fragestellungen, die mit Hilfe von Klimamodellen beantwortet werden sollen. An diesem Punkt setzt auch das Projekt BigData@Geo an, in dessen Rahmen die vorliegende Arbeit entstand. Ziel dieses Projektes ist es, hochaufgel{\"o}ste Klimainformationen f{\"u}r den bayerischen Regierungsbezirk Unterfranken f{\"u}r Akteure aus der Land- und Forstwirtschaft sowie dem Weinbau zur Verf{\"u}gung zu stellen. Auf diesen angewandten und grundlegenden Anforderungen und Zielsetzungen basierend, bedarf auch das in dieser Arbeit verwendete regionale Klimamodell REMO (Version 2015) der weiteren Entwicklung. So ist das Hauptziel der Arbeit das bestehende einschichtige bodenhydrologische Schema durch ein mehrschichtiges zu ersetzen. Der Vorteil mehrerer simulierter Bodenschichten besteht darin, dass nun die vertikale Bewegung des Wassers in Form von Versickerung und kapillarem Aufstieg simuliert werden kann. Dies geschieht auf der Basis bodenhydrologischer Parameter, deren Wert in Abh{\"a}ngigkeit vom Boden und der Bodenfeuchte {\"u}ber die Wasserr{\"u}ckhaltekurve bestimmt wird. F{\"u}r diese Kurve existieren verschiedene Parametrisierungen, von denen die Ans{\"a}tze von Clapp-Hornberger und van Genuchten verwendet wurden. Außerdem kann die Bodenfeuchte nun bis zu einer Tiefe von circa 10 m beziehungsweise der Tiefe des anstehenden Gesteins simuliert werden. Damit besteht im Gegensatz zum vorherigen Schema, dessen Tiefe auf die Wurzeltiefe beschr{\"a}nkt ist, die M{\"o}glichkeit, dass Wasser auch unterhalb der Wurzeln zur Verf{\"u}gung stehen kann und somit die absolute im Boden verf{\"u}gbare Wassermenge zunimmt. Die Schichtung erlaubt dar{\"u}ber hinaus die Verdunstung aus unbewachsenem Boden lediglich auf Basis des in der obersten Schicht verf{\"u}gbaren Wassers. Ein weiterer Prozess, der dank der Schichtung und der weiter unten erl{\"a}uterten Datens{\"a}tze neu parametrisiert werden kann, ist die Infiltration. F{\"u}r die Verwendung des Schemas sind Informationen {\"u}ber bodenhydrologische Parameter, die Wurzeltiefe und die Tiefe bis zum anstehenden Gestein erforderlich. Entsprechende Datens{\"a}tze m{\"u}ssen hierf{\"u}r aufbereitet und in das Modell eingebaut werden. Bez{\"u}glich der Wurzeltiefe wurden drei sich bez{\"u}glich der Tiefe, der Definition und der verf{\"u}gbaren Aufl{\"o}sung stark voneinander unterscheidende Datens{\"a}tze verglichen. Letztendlich wird die Wurzeltiefe aus dem mit einer anderen REMO-Version gekoppelten Vegetationsmodul iMOVE verwendet, da zuk{\"u}nftig eine Kopplung dieses Moduls mit dem mehrschichtigen Boden geplant ist und die Wurzeltiefen damit konsistent sind. Zudem ist die zugrundeliegende Aufl{\"o}sung der Daten hoch und es werden maximale Wurzeltiefen ber{\"u}cksichtigt, die besonders wichtig f{\"u}r die Simulation von Landoberfl{\"a}che-Atmosph{\"a}re-Interaktionen sind. Diese Vorteile brachten die anderen Datens{\"a}tze nicht mit. In der finalen Modellversion werden f{\"u}r die Tiefe bis zum anstehenden Gestein und die Korngr{\"o}ßenverteilungen die Daten von SoilGrids verwendet. Ein Vergleich mit anderen Bodendatens{\"a}tzen fand in einer parallel laufenden Dissertation statt (Ziegler 2022). Bei SoilGrids ist hervorzuheben, dass die Korngr{\"o}ßenverteilungen in einer hohen r{\"a}umlichen Aufl{\"o}sung (1 km^2 oder h{\"o}her) und mit mehreren vertikalen Schichten vorliegen. Gegen{\"u}ber dem urspr{\"u}nglich in REMO verwendeten Datensatz mit einer Kantenl{\"a}nge von 0.5° und ohne vertikale Differenzierung ist dies eine starke Verbesserung der Eingangsdaten. Dazu kommt, dass die Korngr{\"o}ßenverteilungen die Verwendung kontinuierlicher Pedotransferfunktionen statt f{\"u}nf diskreter Texturklassen, denen f{\"u}r die bodenhydrologischen Parameter fixe Tabellenwerte zugewiesen werden, erm{\"o}glichen. Dies f{\"u}hrt zu einer deutlich besseren Differenzierung des heterogenen Bodens. Im Rahmen der Arbeit wurden insgesamt 19 Simulationen f{\"u}r Europa und ein erweitertes Deutschlandgebiet mit Aufl{\"o}sungen von 0.44° beziehungsweise 0.11° f{\"u}r den Zeitraum 2000 bis 2018 gerechnet. Dabei zeigte sich, dass die Einf{\"u}hrung des mehrschichtigen Bodenschemas gegen{\"u}ber dem einschichtigen Schema zu einer Verringerung der Bodenfeuchte in der Wurzeltiefe f{\"u}hrt. Nichtsdestotrotz nimmt die absolute Wassermenge des Bodens durch die Ber{\"u}cksichtigung des Bodens unterhalb der Wurzelzone zu. Bezogen auf die einzelnen Schichten wird die Bodenfeuchte damit zwar untersch{\"a}tzt, im Laufe der Modellentwicklung kann jedoch eine Verbesserung im Vergleich zu ERA5 erzielt werden. Das neue Schema f{\"u}hrt zu einer Verringerung der Evapotranspiration, die {\"u}ber alle Schritte der Modellentwicklung und besonders w{\"a}hrend der Sommermonate auftritt. Im Vergleich zu Validationsdaten von ERA5 und GLEAM zeigt sich, dass dies eine Verbesserung dieser Gr{\"o}ße bedeutet, die sowohl in der Fl{\"a}che als auch beim Fehler und in der Verteilung auftritt. Gleiches l{\"a}sst sich f{\"u}r den Oberfl{\"a}chenabfluss sagen. Hierf{\"u}r implementierte Schemata (Philip, Green-Ampt), die anders als das standardm{\"a}ßig verwendete Improved-Arno-Schema bodenhydrologische Parameter ber{\"u}cksichtigen, konnten eine weitere Verbesserung im Flachland zeigen. In Gebirgsregionen nahm der Fehler durch die nicht enthaltene Ber{\"u}cksichtigung der Hangneigung jedoch zu, sodass in der finalen Modellversion auf das Improved-Arno-Schema zur{\"u}ckgegriffen wurde. Die Temperatur steigt durch die urspr{\"u}ngliche Version des mehrschichtigen Schemas zun{\"a}chst an, was zu einer {\"U}ber- statt der vorherigen Untersch{\"a}tzung gegen{\"u}ber E-OBS f{\"u}hrt. Die Modellentwicklung resultiert zwar in einer Reduzierung der Temperatur, jedoch f{\"a}llt diese zu stark aus, sodass der Temperaturfehler letztendlich gr{\"o}ßer als in der einschichtigen Modellversion ist. Da die Evapotranspiration jedoch maßgeblich verbessert wurde, kann dieser Fehler eventuell auf ein {\"u}berm{\"a}ßiges Tuning der Temperatur zur{\"u}ckgef{\"u}hrt werden. Die Betrachtung von Hitzeereignissen am Beispiel der Sommer 2003 und 2018 hat gezeigt, dass die Modellentwicklung dazu beitr{\"a}gt, diese Ereignisse besser als das einschichtige Schema zu simulieren. Zwar trifft dies nicht auf das r{\"a}umliche Verhalten der mittleren Temperatur zu, jedoch auf deren zeitlichen Verlauf. Hinzu kommt die bessere Simulation der t{\"a}glichen Extrem- und besonders der Minimaltemperatur, was zu einer Erh{\"o}hung der t{\"a}glichen Temperaturspanne f{\"u}hrt. Diese wird von Klimamodellen in der Regel zu stark untersch{\"a}tzt. Durch die Ber{\"u}cksichtigung der vertikalen Wasserfl{\"u}sse hat sich jedoch auch gezeigt, dass noch enormes Entwicklungspotenzial mit Blick auf (boden)hydrologische Prozesse besteht. Dies gilt in besonderem Maße f{\"u}r zuk{\"u}nftige Simulationen mit konvektionserlaubender Aufl{\"o}sung. So sollten subskalige Informationen des Bodens und der Orographie ber{\"u}cksichtigt werden. Dies dient einerseits der Repr{\"a}sentation vorliegender Heterogenit{\"a}ten und kann andererseits, wie am Beispiel der Infiltrationsschemata dargelegt, zur Verbesserung bestehender Prozesse beitragen. Da die simulierte Drainage durch das mehrschichtige Bodenschema im gleichen Maße zu- wie der Oberfl{\"a}chenabfluss abnimmt und das Wasser dem Modell in der Folge nicht weiter zur Verf{\"u}gung steht, sollte zuk{\"u}nftig auch Grundwasser im Modell ber{\"u}cksichtigt werden. Eine Vielzahl von Studien konnte einen Mehrwert durch die Implementierung dieser Variable und damit verbundener Prozesse feststellen. Mittelfristig ist jedoch insgesamt die Kopplung an ein hydrologisches Modell zu empfehlen, um die bei hochaufl{\"o}senden Simulationen relevanten Prozesse angemessen repr{\"a}sentieren zu k{\"o}nnen. Hierf{\"u}r bieten sich beispielsweise ParFlow oder mHM an. Insgesamt ist festzuhalten, dass das mehrschichtige Bodenschema einen Mehrwert liefert, da schwer zu simulierende und in der Postprozessierung zu korrigierende Variablen wie die Evapotranspiration und der Oberfl{\"a}chenabfluss deutlich besser modelliert werden k{\"o}nnen als mit dem einschichtigen Schema. Dies gilt auch f{\"u}r die Extremtemperaturen. Beides ist klar auf die Schichtung des Bodens und damit einhergehender Prozesse zur{\"u}ckzuf{\"u}hren. Bez{\"u}glich der Daten zeigt sich, dass die Wurzeltiefe, die Ber{\"u}cksichtigung von SoilGrids und die vertikale Bodeninformation f{\"u}r die weitere Optimierung verantwortlich sind. Dar{\"u}ber hinaus ist der h{\"o}here Informationsgehalt, der anhand der geschichteten Bodenfeuchte zur Verf{\"u}gung steht, ebenfalls als Mehrwert einzustufen.}, subject = {Klima}, language = {de} } @book{Wagner2022, author = {Wagner, Horst-G{\"u}nter}, title = {Golf von Neapel : Landschaftswandel durch Verst{\"a}dterung}, publisher = {wbg Academic}, address = {Darmstadt}, isbn = {978-3-534-40635-7}, doi = {10.25972/OPUS-25052}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-250525}, publisher = {Universit{\"a}t W{\"u}rzburg}, pages = {172}, year = {2022}, abstract = {In vielen mediterranen K{\"u}stenniederungen entstand seit 1950 infolge von Gebirgsentv{\"o}lkerung, Infrastrukturausbau, neuer Gewerbe sowie illegaler Baut{\"a}tigkeit ein fast l{\"u}ckenloses Verst{\"a}dterungsband. Am Golf von Neapel konnte dieser Landschaftswandel {\"u}ber eine lange Zeit beobachtet und durch zahlreiche Vergleichsfotos, Kartierungen, Luft- und Satellitenbilder und Interviews dokumentiert werden. Horst-G{\"u}nter Wagner zeigt in diesem Band die Ver{\"a}nderungen der K{\"u}stenebene und erl{\"a}utert ihre Ursachen.}, subject = {Golf von Neapel}, language = {de} } @article{RoesslerWittIkonenetal.2021, author = {R{\"o}ßler, Sebastian and Witt, Marius S. and Ikonen, Jaakko and Brown, Ian A. and Dietz, Andreas J.}, title = {Remote sensing of snow cover variability and its influence on the runoff of S{\´a}pmi's rivers}, series = {Geosciences}, volume = {11}, journal = {Geosciences}, number = {3}, issn = {2076-3263}, doi = {10.3390/geosciences11030130}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-234261}, year = {2021}, abstract = {The boreal winter 2019/2020 was very irregular in Europe. While there was very little snow in Central Europe, the opposite was the case in northern Fenno-Scandia, particularly in the Arctic. The snow cover was more persistent here and its rapid melting led to flooding in many places. Since the last severe spring floods occurred in the region in 2018, this raises the question of whether more frequent occurrences can be expected in the future. To assess the variability of snowmelt related flooding we used snow cover maps (derived from the DLR's Global SnowPack MODIS snow product) and freely available data on runoff, precipitation, and air temperature in eight unregulated river catchment areas. A trend analysis (Mann-Kendall test) was carried out to assess the development of the parameters, and the interdependencies of the parameters were examined with a correlation analysis. Finally, a simple snowmelt runoff model was tested for its applicability to this region. We noticed an extraordinary variability in the duration of snow cover. If this extends well into spring, rapid air temperature increases leads to enhanced thawing. According to the last flood years 2005, 2010, 2018, and 2020, we were able to differentiate between four synoptic flood types based on their special hydrometeorological and snow situation and simulate them with the snowmelt runoff model (SRM).}, language = {en} } @article{RauchTaubenboeckKnoppetal.2021, author = {Rauch, S. and Taubenb{\"o}ck, H. and Knopp, C. and Rauh, J.}, title = {Risk and space: modelling the accessibility of stroke centers using day- \& nighttime population distribution and different transportation scenarios}, series = {International Journal of Health Geographics}, volume = {20}, journal = {International Journal of Health Geographics}, doi = {10.1186/s12942-021-00284-y}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-261228}, year = {2021}, abstract = {Purpose Rapid accessibility of (intensive) medical care can make the difference between life and death. Initial care in case of strokes is highly dependent on the location of the patient and the traffic situation for supply vehicles. In this methodologically oriented paper we want to determine the inequivalence of the risks in this respect. Methods Using GIS we calculate the driving time between Stroke Units in the district of M{\"u}nster, Germany for the population distribution at day- \& nighttime. Eight different speed scenarios are considered. In order to gain the highest possible spatial resolution, we disaggregate reported population counts from administrative units with respect to a variety of factors onto building level. Results The overall accessibility of urban areas is better than in less urban districts using the base scenario. In that scenario 6.5\% of the population at daytime and 6.8\% at nighttime cannot be reached within a 30-min limit for the first care. Assuming a worse traffic situation, which is realistic at daytime, 18.1\% of the population fail the proposed limit. Conclusions In general, we reveal inequivalence of the risks in case of a stroke depending on locations and times of the day. The ability to drive at high average speeds is a crucial factor in emergency care. Further important factors are the different population distribution at day and night and the locations of health care facilities. With the increasing centralization of hospital locations, rural residents in particular will face a worse accessibility situation.}, language = {en} } @article{DobińskiKneisel2021, author = {Dobiński, Wojciech and Kneisel, Christof}, title = {Permafrost and glaciers: perspectives for the Earth and planetary sciences — another step forward}, series = {Geosciences}, volume = {11}, journal = {Geosciences}, number = {2}, issn = {2076-3263}, doi = {10.3390/geosciences11020068}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-228766}, year = {2021}, abstract = {No abstract available}, language = {en} }