Examining the effects of urban agglomeration polders on flood events in Qinhuai River basin, China with HEC-HMS model

Author:

Gao Yuqin1,Yuan Yu1,Wang Huaizhi1,Schmidt Arthur R.2,Wang Kexuan2,Ye Liu1

Affiliation:

1. College of Water Conservancy and Hydropower Engineering, Hohai University, No. 1, Xi Kang Rd, Gu Lou District, Nanjing City 210098, Jiangsu Province, China

2. Civil Engineering from University of Illinois Urbana-Champaign, UrbanaChampaign, USA

Abstract

The urban agglomeration polders type of flood control pattern is a general flood control pattern in the eastern plain area and some of the secondary river basins in China. A HEC-HMS model of Qinhuai River basin based on the flood control pattern was established for simulating basin runoff, examining the impact of urban agglomeration polders on flood events, and estimating the effects of urbanization on hydrological processes of the urban agglomeration polders in Qinhuai River basin. The results indicate that the urban agglomeration polders could increase the peak flow and flood volume. The smaller the scale of the flood, the more significant the influence of the polder was to the flood volume. The distribution of the city circle polder has no obvious impact on the flood volume, but has effect on the peak flow. The closer the polder is to basin output, the smaller the influence it has on peak flows. As the level of urbanization gradually improving of city circle polder, flood volumes and peak flows gradually increase compared to those with the current level of urbanization (the impervious rate was 20%). The potential change in flood volume and peak flow with increasing impervious rate shows a linear relationship.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference24 articles.

1. Study on drainage modulus calculation method of diked area;Cui;Journal of Catastrophology,2008

2. Assessing the effects of urbanization on annual runoff and flood events using an integrated hydrological modeling system for Qinhuai River basin, China;Du;Journal of Hydrology,2012

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