Proceedings of the International Conference on Hydrology and Water Resources, New Delhi, India, December 1993: Surface-water hydrology
The four volumes in this set cover major aspects of hydrology and water resources, including surface water hydrology, subsurface water hydrology, water quality hydrology, and water resources planning management. Some of the articles and state-of-the-art papers have been written by leading experts from around the globe. The books reflect the water resources technology as practised in India and the Indian subcontinent which would be of great value to water resources professionals in the west. The books are of interest to academicians, graduate students, practising engineers, water engineers, as well as water policy makers. Those wishing to further pursue the topics covered will find the books to be of special interest and value.
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A Worldwide View
Modelling Evapotranspiration of Dune Vegetation
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1996 Kluwer Academic application ARMA model ARMA-TF models ASCE average basin catchment channel characteristics Chezy coefficient computed constant correlation cross-sectional shape cumulants desertification developed diffusion wave discharge distribution Dooge dynamic error estimate evapotranspiration Figure flood routing flow depth forecasting forest frequency analysis Froude number given hydraulic diffusivity Hydrol impulse response inertial waves infiltration infiltrometer inflow input interception Kalman filter kernel kinematic wave kriging layer linear lysimeter matrix mean measured method Muskingum Neebing River neural network neurons noise nonlinear numerical diffusion observed obtained outflow output overland flow parameters pattern peak Ponce precipitation prediction problem rainfall raingauge region regression Research ridge regression river runoff sediment simulation slope soil solution stations statistical stochastic streamflow Strupczewski surface surface runoff Surface-Water Hydrology Table UJ UJ UJ unit hydrograph V. P. Singh values variables vegetation Water Resources watershed wave model