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Multiscale Model for Urban Flood Control Planning Based on Microcirculation

Tao Zhang (Faculty of Architecture and Urban Planning, Chongqing University, Chongqing, 400044, China)
Wanmin Zhao (Faculty of Architecture and Urban Planning, Chongqing University, Chongqing, 400044, China)
Dongjun Tong (D-Wave Systems Inc. Vancover, Canada)

Open House International

ISSN: 0168-2601

Article publication date: 1 September 2016

43

Abstract

Flood season in our country is characterized by frequent heavy rains, and flood problems are becoming increasingly serious. The uneven distribution of water resources causes conflicts in the occurrence of floods and droughts. Implementing effective flood control planning and solving drought and flood disasters are the research highlights of relevant institutions both domestic and abroad. This study develops a multiscale method of urban flood control planning based on microcirculation. A microcirculation water ecosystem, which consists of six elements, namely, collecting, interacting, precipitating, reserving, storing, and purifying, is introduced. This study investigates precipitation; peak shaving; recycle mode of filtration at the macro level in different regions; “hierarchy” in rainwater ecosystems in rain parks, heavy rain garden parks, and wetland parks at the meso level; and the concept of zero-emission rain in residential areas and roads at the micro level. Finally, this study analyzes a rain garden and its domestic application. A conclusion is drawn that the flood control planning model based on microcirculation can effectively reduce rain runoff. Empirical measurement proves that the proposed multiscale model for city flood control planning based on microcirculation promotes flood control and effectively reduces the occurrence of droughts and floods.

Keywords

Citation

Zhang, T., Zhao, W. and Tong, D. (2016), "Multiscale Model for Urban Flood Control Planning Based on Microcirculation", Open House International, Vol. 41 No. 3, pp. 66-70. https://doi.org/10.1108/OHI-03-2016-B0011

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Open House International

Copyright © 2016 Open House International

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