Javascript must be enabled to continue!
Ingredients of German flood events
View through CrossRef
<p>Floods can be caused by a large variety of different processes, such as short, but intense rainfall bursts, long rainfall events, which are wetting up substantial parts of the catchment, or rain on snow cover or frozen soils. Although there is a plethora on studies analysing or modelling rainfall-runoff processes, it is still not well understood, what rainfall and runoff generation conditions are needed to generate flood runoff and how these characteristics vary between catchments. In this databased approach we decipher the ingredients of flood events occurred in 161 catchments across Germany. For each catchment rainfall-runoff events are separated from observed time series for the period 1950-2013, resulting in about 170,000 single events. A peak-over-threshold approach is used to select flood events out of these runoff events. For each event, spatially and temporally distributed rainfall and runoff generation characteristics, such as snow cover and soil moisture, as well as their interaction are derived. Then we decipher those event characteristics controlling flood event occurrence by using machine learning techniques.</p><p>On average, the most important event characteristic controlling flood occurrence in Germany is, as expected, event rainfall volume, followed by the overlap of rainfall and soil moisture and the extent of wet areas in the catchment (area with high soil moisture content). Rainfall intensity is another important characteristic. However, a large variability in its importance is noticeable between dryer catchments where short rainfall floods occur regularly and wetter catchments, where rainfall intensity might be less important for flood generation. To analyse the regional variability of flood ingredients, we cluster the catchments according to similarity in their flood controlling event characteristics and test how good the flood occurrence can be predicted from regionalised event characteristics. Finally, we analyse the regional variability of the flood ingredients in the light of climate and landscape catchment characteristics.</p>
Title: Ingredients of German flood events
Description:
<p>Floods can be caused by a large variety of different processes, such as short, but intense rainfall bursts, long rainfall events, which are wetting up substantial parts of the catchment, or rain on snow cover or frozen soils.
Although there is a plethora on studies analysing or modelling rainfall-runoff processes, it is still not well understood, what rainfall and runoff generation conditions are needed to generate flood runoff and how these characteristics vary between catchments.
In this databased approach we decipher the ingredients of flood events occurred in 161 catchments across Germany.
For each catchment rainfall-runoff events are separated from observed time series for the period 1950-2013, resulting in about 170,000 single events.
A peak-over-threshold approach is used to select flood events out of these runoff events.
For each event, spatially and temporally distributed rainfall and runoff generation characteristics, such as snow cover and soil moisture, as well as their interaction are derived.
Then we decipher those event characteristics controlling flood event occurrence by using machine learning techniques.
</p><p>On average, the most important event characteristic controlling flood occurrence in Germany is, as expected, event rainfall volume, followed by the overlap of rainfall and soil moisture and the extent of wet areas in the catchment (area with high soil moisture content).
Rainfall intensity is another important characteristic.
However, a large variability in its importance is noticeable between dryer catchments where short rainfall floods occur regularly and wetter catchments, where rainfall intensity might be less important for flood generation.
To analyse the regional variability of flood ingredients, we cluster the catchments according to similarity in their flood controlling event characteristics and test how good the flood occurrence can be predicted from regionalised event characteristics.
Finally, we analyse the regional variability of the flood ingredients in the light of climate and landscape catchment characteristics.
</p>.
Related Results
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED]Keanu Reeves CBD Gummies ==❱❱ Huge Discounts:[HURRY UP ] Absolute Keanu Reeves CBD Gummies (Available)Order Online Only!! ❰❰= https://www.facebook.com/Keanu-Reeves-CBD-G...
ASP Flood After a Polymer Flood vs. ASP Flood After a Water Flood
ASP Flood After a Polymer Flood vs. ASP Flood After a Water Flood
Abstract
Alkaline-surfactant-polymer (ASP) flooding is an effective technique to improve oil recovery. It has been applied typically after a water flood. Recently, t...
Probabilistic Flood Hazard Maps at Ungauged Locations Using Multivariate Extreme Values Approach
Probabilistic Flood Hazard Maps at Ungauged Locations Using Multivariate Extreme Values Approach
<p>Flood hazard maps are essential for development and assessment of flood risk management strategies. Conventionally, flood hazard assessment is based on determinist...
Rhine Cities - Urban Flood Integration (UFI): German and Dutch Adaptation and Mitigation Strategies
Rhine Cities - Urban Flood Integration (UFI): German and Dutch Adaptation and Mitigation Strategies
While agglomerations along the Rhine are confronted with the uncertainties of an increasing flood risk due to climate change, different programs are claiming urban river front site...
Assessment of Flood Risk Analysis in Selangor
Assessment of Flood Risk Analysis in Selangor
Flood events occur every year especially during the monsoon season. Although its consequences are not as disastrous as other natural disasters such as earthquakes and tornado storm...
Flood Hydrograph Coincidence Analysis of the Upper Yangtze River and Dongting Lake, China
Flood Hydrograph Coincidence Analysis of the Upper Yangtze River and Dongting Lake, China
Abstract
In hydrological research, flood events can be analyzed by flood hydrograph coincidence. Existing flood hydrograph coincidence research mostly focuses on the analys...
Analyzing the Evolution of Droughts and Floods During the Flood Season in the Yangtze River Basin and the Three Gorges Reservoir Area from 1470 to 2022
Analyzing the Evolution of Droughts and Floods During the Flood Season in the Yangtze River Basin and the Three Gorges Reservoir Area from 1470 to 2022
Abstract
As an important economic region in China, The Yangtze River economic belt encountered a historically rare successive drought in 2022. Here even appeared a phenomen...
Modeling Uncertainty of Copula-based Joint Return Period of Flood Events under Climate Change
Modeling Uncertainty of Copula-based Joint Return Period of Flood Events under Climate Change
Modeling the joint behavior of flood characteristics under climate change is necessary for understanding the potential changes in associated flood risk and hazards. In this study, ...

