Effect of urban underlying surface change on stormwater runoff process based on the SWMM and Green-Ampt infiltration model

Author:

Zhao Gaolei1,Wan Yanlei2,Lei Zhiwen3,Liang Ruifeng1,Li Kefeng1,Pu Xunchi1

Affiliation:

1. State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu 610065, China

2. Changjiang Institute of Survey, Planning, Design and Research, Wuhan 430010, China

3. Chifeng Product Quality and Measurement Inspect Institute, Chifeng 024005, China

Abstract

Abstract The acceleration of urbanization has brought significant changes to the urban underlying surface. As a result, the flood disaster caused by stormwater runoff has become increasingly prominent. The infiltration function of the permeable area can lead to flood disasters, but the extent and depth of the effect are still unclear. Therefore, based on the storm water management model (SWMM) and Green-Ampt infiltration model, this paper discussed the effect of improving soil saturated hydraulic conductivity (SSHC) and soil capillary suction head (SCSH) on the stormwater runoff process. The results show that the increase in SSHC and SCSH can significantly reduce runoff and increase infiltration. However, the improvement of SSHC can more effectively alleviate flood disasters compared with the improvement of SCSH. The change of SSHC has a significant effect on the stormwater runoff with a critical SSHC value while the effect can be ignored. In addition, there is a cross value; when the value of SSHC and SCSH is larger than the cross value, the difference between SSHC and SCSH in reducing runoff duration no longer exists. The critical value and cross value are not constant but change with the change of rainfall intensity.

Funder

Yunnan key research and development project

Publisher

IWA Publishing

Subject

Water Science and Technology

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