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发展中城市集水区土地利用/土地覆盖变化的建模与优化

Modelling and optimization of land use/land cover change in a developing urban catchment.

作者信息

Xu Ping, Gao Fei, He Junchao, Ren Xinxin, Xi Weijin

机构信息

Key Laboratory of Urban Stormwater System and Water Environment, Ministry of Education, Beijing University of Civil Engineering and Architecture, Beijing 100044, China.

China Urban Construction Design & Research Institute Co. Ltd, Beijing 100120, China E-mail:

出版信息

Water Sci Technol. 2017 Jun;75(11-12):2527-2537. doi: 10.2166/wst.2017.121.

Abstract

The impacts of land use/cover change (LUCC) on hydrological processes and water resources are mainly reflected in changes in runoff and pollutant variations. Low impact development (LID) technology is utilized as an effective strategy to control urban stormwater runoff and pollution in the urban catchment. In this study, the impact of LUCC on runoff and pollutants in an urbanizing catchment of Guang-Ming New District in Shenzhen, China, were quantified using a dynamic rainfall-runoff model with the EPA Storm Water Management Model (SWMM). Based on the simulations and observations, the main objectives of this study were: (1) to evaluate the catchment runoff and pollutant variations with LUCC, (2) to select and optimize the appropriate layout of LID in a planning scenario for reducing the growth of runoff and pollutants under LUCC, (3) to assess the optimal planning schemes for land use/cover. The results showed that compared to 2013, the runoff volume, peak flow and pollution load of suspended solids (SS), and chemical oxygen demand increased by 35.1%, 33.6% and 248.5%, and 54.5% respectively in a traditional planning scenario. The assessment result of optimal planning of land use showed that annual rainfall control of land use for an optimal planning scenario with LID technology was 65%, and SS pollutant load reduction efficiency 65.6%.

摘要

土地利用/覆盖变化(LUCC)对水文过程和水资源的影响主要体现在径流变化和污染物变化方面。低影响开发(LID)技术被用作控制城市集水区城市雨水径流和污染的有效策略。在本研究中,利用美国环境保护局暴雨管理模型(SWMM)的动态降雨径流模型,对中国深圳光明新区一个城市化集水区内LUCC对径流和污染物的影响进行了量化。基于模拟和观测结果,本研究的主要目标是:(1)评估LUCC情况下集水区径流和污染物变化;(2)在规划情景中选择并优化LID的合适布局,以减少LUCC情况下径流和污染物的增长;(3)评估土地利用/覆盖的最优规划方案。结果表明,与2013年相比,在传统规划情景下,径流量、峰值流量以及悬浮固体(SS)和化学需氧量的污染负荷分别增加了35.1%、33.6%、248.5%和54.5%。土地利用最优规划的评估结果表明,采用LID技术的最优规划情景下土地利用的年降雨量控制率为65%,SS污染物负荷削减效率为65.6%。

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