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Therefore, these variations should be taken into account in e.g. catchment hydrology, runoff and erosion studies and the design of rainfall monitoring networks.
This paper reports important implications for the application of Distributed Hydrological Models and Semi-distributed Hydrological Models, as well as for the optimal design of rainfall gauges among large basins.
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This paper investigates the logic for such contracts and some basic designs using measures of rainfall.
The volume and delay of total runoff were sampled for both dry and wet soil-moisture stages for a simulated rainstorm of 155 mm/h and duration of 7 min, which approaches the value of the design rainfall of 10-year return-period and an observed rainfall event that caused flooding in 2011 in the area where the experiments took place.
Estimation of design rainfall is generally made using a regionalization technique based on a regional database of observed rainfalls.
While our presentation focusses on the representation of design rainfall attributes (IFDs), the proposed approach can also be easily extended to constrain other attributes of the generated rainfall, providing an effective platform for post-processing of stochastic rainfall generators.
He has been recognized for his use of modern probabilistic methods in the design of networks to monitor rainfall and river flow, and in rainfall and river discharge forecasting.
It was designed to test the effects of rainfall amount (0, 12 and 24 mm), rainfall timing (days −1, 0 and 3 relative to faecal deposition) and soil moisture maintained at 10, 20 and 30% on these variables.
The sampling interval was designed to detect the effect of rainfall (1315 mm for the 3 years with 72 mm/h peak intensity) on the spatial soil changes as consequence of processes such as: leaching, soil erosion, etc.
This research develops a spatial probabilistic multi-criteria decision making (SPMCDM) framework to demonstrate the impact of the design rainfall uncertainty on evaluation of flood management alternatives.
Results showed that, the shift of rainfall intensity in design storms could produce amplified hydrologic responses, but had little impact on the overland rankings based on runoff depth or specific sediment yield.
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