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In particular, L-moments based regional frequency analysis (RFA-LM) has being adopted as the standard method for hydrologic frequency analysis in many parts of the world and for many other applications relating to hydrological extremes.
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To investigate this claim, we incorporate low-cost field methods for hydrologic data collection and evaluate two satellite-derived precipitation data products (CMORPH and TRMM-3B42) for input to a hydrological model used to predict recharge rates in eleven watersheds under scenarios of climate change and agricultural expansion.
This study develops a new method for analyzing the terrestrial hydrologic responses to precipitation through using level-based daily anomalous high flow (DAHF) occurrence in a catchment.
Many of these tools were developed outside of hydrology but they were appropriately tailored for hydrologic applications.
Meanwhile, a snow melt method that takes advantage from the remotely sensed SWE is needed to better achieve results suitable for hydrologic studies.
This discussion describes the method used to downscale and bias-correct national monthly GCM outputs and provides new internally consistent data sets for hydrologic and ecological-scale modeling for the US at 4 km, the southwest including California at 270 m, and California at 90 m.
For example, Weib and Menzel (2008) compared the Priestley–Taylor (PT) method, two methods based on the Penman Monteith (PM) equation and the Hargreaves method, a temperature-based method for predicting PET in a global-scale hydrologic method.
Although most of the hydrologic studies conducted the frequency analysis for hydrologic parameters, it seems that few studies use such analysis for wind speed, especially for Iran.
Briefly tracing the history of hydrologic modeling, this paper discusses the progress that has been achieved in hydrologic modeling since the advent of computer and what the future may have in store for hydrologic modeling.
Wu et al. (2008) discussed about DEM-derived primary topographic attributes for hydrologic applications.
Smith et al. (2002) prepared a treatise on infiltration theory for hydrologic applications.
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