Increased urbanization, coupled with the projected impacts of climatic change, mandates further evaluation of the impact of urban development on water flow paths to guide sustainable land-use planning. Though the general urbanization impacts of increased storm runoff peaks and reduced baseflows are well known; how the complex, non-stationary interaction of the dominant water fluxes within dynamic urban water stores sustain streamflow regimes over longer periods of time is less well quantified. In particular, there is a challenge in how hydrological modelling should integrate the juxtaposition of rapid and slower flow pathways of the urban ‘karst’ landscape and different approaches need evaluation. In this context, we utilized hydrological a...
Urbanization strongly changes natural catchment by increasing impervious coverage and by creating a ...
Urbanization leads to a decline in the quality of aquatic ecosystems through the alteration of the n...
Knowledge about water flow paths is essential for understanding biogeochemical fluxes in developed a...
Increased urbanization, coupled with the projected impacts of climatic change, mandates further eval...
Complex networks of both natural and engineered flow paths control the hydrology of streams in major...
Large urban areas are typically characterized by a mosaic of different land uses, with contrasting m...
ACKNOWLEDGMENTS This project was funded by the German Research Foundation (DFG) as part of the Resea...
Funding Information: This study was funded through the German Research Foundation (DFG) as part of t...
Funding Information: Einstein Stiftung Berlin (grant no. EVF-2018-425), the Deutsche Forschungsgemei...
In vielen Städten erfordern fortschreitende Urbanisierung und Klimaerwärmung ein besseres Verständni...
Urban green space is increasingly viewed as essential infrastructure to build resilience to climate ...
Urbanisation is known as a fundamental driver of actual land use change. A good understanding of how...
peer reviewedKnowledge of how to articulate the “urban transition” is today urgently needed. Urbaniz...
Date of Acceptance: 25/03/2015 Acknowledgements The help of Clara F. Soulsby with the sampling is gr...
Stable isotopes of water are ideal tracers to integrate into process‐based models, advancing ecohydr...
Urbanization strongly changes natural catchment by increasing impervious coverage and by creating a ...
Urbanization leads to a decline in the quality of aquatic ecosystems through the alteration of the n...
Knowledge about water flow paths is essential for understanding biogeochemical fluxes in developed a...
Increased urbanization, coupled with the projected impacts of climatic change, mandates further eval...
Complex networks of both natural and engineered flow paths control the hydrology of streams in major...
Large urban areas are typically characterized by a mosaic of different land uses, with contrasting m...
ACKNOWLEDGMENTS This project was funded by the German Research Foundation (DFG) as part of the Resea...
Funding Information: This study was funded through the German Research Foundation (DFG) as part of t...
Funding Information: Einstein Stiftung Berlin (grant no. EVF-2018-425), the Deutsche Forschungsgemei...
In vielen Städten erfordern fortschreitende Urbanisierung und Klimaerwärmung ein besseres Verständni...
Urban green space is increasingly viewed as essential infrastructure to build resilience to climate ...
Urbanisation is known as a fundamental driver of actual land use change. A good understanding of how...
peer reviewedKnowledge of how to articulate the “urban transition” is today urgently needed. Urbaniz...
Date of Acceptance: 25/03/2015 Acknowledgements The help of Clara F. Soulsby with the sampling is gr...
Stable isotopes of water are ideal tracers to integrate into process‐based models, advancing ecohydr...
Urbanization strongly changes natural catchment by increasing impervious coverage and by creating a ...
Urbanization leads to a decline in the quality of aquatic ecosystems through the alteration of the n...
Knowledge about water flow paths is essential for understanding biogeochemical fluxes in developed a...