Literature DB >> 25889540

Chance-constrained overland flow modeling for improving conceptual distributed hydrologic simulations based on scaling representation of sub-daily rainfall variability.

Jing-Cheng Han1, Guohe Huang2, Yuefei Huang1, Hua Zhang3, Zhong Li4, Qiuwen Chen5.   

Abstract

Lack of hydrologic process representation at the short time-scale would lead to inadequate simulations in distributed hydrological modeling. Especially for complex mountainous watersheds, surface runoff simulations are significantly affected by the overland flow generation, which is closely related to the rainfall characteristics at a sub-time step. In this paper, the sub-daily variability of rainfall intensity was considered using a probability distribution, and a chance-constrained overland flow modeling approach was proposed to capture the generation of overland flow within conceptual distributed hydrologic simulations. The integrated modeling procedures were further demonstrated through a watershed of China Three Gorges Reservoir area, leading to an improved SLURP-TGR hydrologic model based on SLURP. Combined with rainfall thresholds determined to distinguish various magnitudes of daily rainfall totals, three levels of significance were simultaneously employed to examine the hydrologic-response simulation. Results showed that SLURP-TGR could enhance the model performance, and the deviation of runoff simulations was effectively controlled. However, rainfall thresholds were so crucial for reflecting the scaling effect of rainfall intensity that optimal levels of significance and rainfall threshold were 0.05 and 10 mm, respectively. As for the Xiangxi River watershed, the main runoff contribution came from interflow of the fast store. Although slight differences of overland flow simulations between SLURP and SLURP-TGR were derived, SLURP-TGR was found to help improve the simulation of peak flows, and would improve the overall modeling efficiency through adjusting runoff component simulations. Consequently, the developed modeling approach favors efficient representation of hydrological processes and would be expected to have a potential for wide applications.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Modeling efficiency; Rainfall intensity; Scale; Surface runoff; Three Gorges Reservoir; Uncertainty

Year:  2015        PMID: 25889540     DOI: 10.1016/j.scitotenv.2015.02.107

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  2 in total

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Authors:  Dong Jin Jeon; Yakov Pachepsky; Cary Coppock; M Dana Harriger; Rachael Zhu; Edward Wells
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2.  Effect of the time scale on the uncertainty of geometric mean concentrations of fecal indicators in creek under baseflow conditions.

Authors:  Dong Jin Jeon; Yakov Pachepsky; M Dana Harriger; Rachael Zhu; Cary Coppock
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  2 in total

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