Hydrology and floodplain analysis
Now in its third edition, "Hydrology and Floodplain Analysis" continues to offer a clear and up-to-date presentation of the fundamental concepts and design methods required to understand hydrology and floodplain analysis. It addresses the computational emphasis of modern hydrology and provides a balanced approach to important applications in watershed analysis, floodplain computation, flood control, urban hydrology, stormwater design, and computer modeling. Includes HEC-HMS, HEC-RAS, and SWMM models plus GIS and radar rainfall. The text is ideal for students taking an undergraduate or graduate course on hydrology, while the practicing engineer should value the book as a modern reference for hydrologic principles, flood frequency analysis, floodplain analysis, computer simulation, and hydrologic storm water design.
Updated coverage in the third edition includes:
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analysis applied aquifer Assume average basin basin model bridge calculated catchment Chapter coefficient computed Creek critical depth cross section Darcy's law depth design storm determine developed discharge distribution downstream drainage duration estimates evaporation example Figure flood control floodplain frequency function graph ground water HEC-HMS HEC-RAS hydraulic conductivity hydrologic model hyetograph IDF curves impervious infiltration inflow input kinematic wave located loss Manning's equation measured method moisture NEXRAD outflow overland flow parameters peak flow plot precipitation pressure problem pumping radar rain gage rainfall rainfall excess rainfall intensity rainfall rate relationship reservoir return period River sewer shown in Fig Siletz River simulation skewness slope soil storage storm event Stormwater stream streamflow subarea subbasin surface runoff SWMM tion U.S. Army unit hydrograph upstream urban USGS values variable velocity volume Water Resources water table watershed