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Identifying hydrograph parameters and their relationships to urbanization variables
Authors:Shao-Yang Huang  Jet-Chau Wen  Ju-Huang Lee
Institution:1. Graduate School of Engineering Science and Technology, National Yunlin University of Science and Technology , Douliou, Yunlin 640, Taiwan;2. Department of Safety Health and Environmental Engineering , National Yunlin University of Science and Technology , Douliou, Yunlin 640, Taiwan;3. Water Resources Agency, Ministry of Economic Affairs , Taipei 106, Taiwan
Abstract:Abstract

This study examines relationships between model parameters and urbanization variables for evaluating urbanization effects in a watershed. Rainfall–runoff simulation using the Nash model is the main basis of the study. Mean rainfall and excesses resulting from time-variant losses were completed using the kriging and nonlinear programming methods, respectively. Calibrated parameters of 47 events were related to urbanized variables, change of shape parameter responds more sensitively than that of scale parameter based on comparisons between annual average and optimal interval methods. Regression equations were used to obtain four continuous correlations for linking shape parameter with urbanization variables. Verification of 10 events demonstrates that shape parameter responds more strongly to imperviousness than to population, and a power relationship is suitable. Therefore, an imperviousness variable is a major reference for analysing urbanization changes to a watershed. This study found that time to peak of IUH was reduced from 11.76 to 3.97 h, whereas peak discharge increased from 44.79 to 74.92 m3/s.

Editor D. Koutsoyiannis; Associate editor S. Grimaldi

Citation Huang, S.-Y., Cheng, S.-J., Wen, J.-C. and Lee, J.-H., 2012. Identifying hydrograph parameters and their relationships to urbanization variables. Hydrological Sciences Journal, 57 (1), 144–161.
Keywords:hydrograph parameter  urbanization variables  hydrological modelling  urbanization change  time to peak  peak discharge
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