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基于SD模型的小江流域协调发展模式研究
引用本文:翟羽佳,王丽婧,郑丙辉,王会肖,李小宝.基于SD模型的小江流域协调发展模式研究[J].环境科学与技术,2012(11):167-172.
作者姓名:翟羽佳  王丽婧  郑丙辉  王会肖  李小宝
作者单位:北京师范大学水科学研究院;中国环境科学研究院河流海岸带创新基地
基金项目:国家水专项课题(2009ZX07528-003);国家国际科技合作计划项目(2007DFA90510)
摘    要:三峡水库自蓄水以来水环境安全问题便受到广泛关注。选取三峡水库典型支流小江为研究对象,应用系统动力学(SD)方法和情景分析方法,构建了小江流域环境-社会-经济系统仿真模拟模型,实现了3种发展情景的模拟和分析。研究结果显示:(1)自然发展模式下流域人口、需水量、各产业GDP都实现高速增长,至2025年COD、氨氮、总氮、总磷的负荷分别达到16 796.1 t,9 578.8 t,3 461.8 t以及405.1 t;(2)经济人口调控模式下COD、氨氮负荷分别下降了7.9%和25%;(3)环境社会经济协调发展模式下实现了污染负荷的大幅度削减。结合模拟结果,提出了小江流域环境社会经济持续协调发展的相关建议。

关 键 词:三峡水库  小江  系统动力学模型  情景分析  协调发展

Sustainable Development Patterns in Xiaojiang River Basin Based on System Dynamic Model
ZHAI Yu-jia,WANG Li-jing,ZHENG Bing-hui,WANG Hui-xiao,LI Xiao-bao.Sustainable Development Patterns in Xiaojiang River Basin Based on System Dynamic Model[J].Environmental Science and Technology,2012(11):167-172.
Authors:ZHAI Yu-jia  WANG Li-jing  ZHENG Bing-hui  WANG Hui-xiao  LI Xiao-bao
Institution:1.College of Water Science,Beijing Normal University,Beijing 100875,China;2.River and Coastal Environment Research Centre,Chinese Research Academy of Environmental Science,Beijing 100012,China)
Abstract:Water environmental problem of Three Gorges Reservoir(TGR)has aroused wide concern since impoundment.As a typical tributary of TGR,Xiaojiang River was selected as the study area.Using the system dynamics approach and scenario analysis,an environmental-social-economic system dynamics model was constructed and simulated under 3 scenarios.Results showed that with natural development pattern,rapid growth is found in population,water demand and GDP.Loads of COD,NH3-N,TN and TP will reach 16 796.1 t,9 578.8 t,3 461.8 t and 405.1 t respectively in 2025.Under economic-social-regulated mode,loads of COD and NH3-N will decrease by 7.9% and 25%.As for environmental-social-economic coordinated development pattern,the pollutant loads will be largely cut down.In view of the results,relevant suggestions for sustainable development in the River basin were proposed as well.
Keywords:Three Gorges Reservoir(TGR)  Xiaojiang River  system dynamic model  scenario analysis  coordinated development
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