• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
ZHU Wei, XIA Ting, JIANG Mou-yu, ZHAO Lian-fang. Comprehensive assessment of water environment for urban stream[J]. Advances in Water Science, 2007, 18(5): 736-744.
Citation: ZHU Wei, XIA Ting, JIANG Mou-yu, ZHAO Lian-fang. Comprehensive assessment of water environment for urban stream[J]. Advances in Water Science, 2007, 18(5): 736-744.

Comprehensive assessment of water environment for urban stream

Funds: The study is financially supported by the National Basic Research Program of China (No.2003AA601100)
More Information
  • Received Date: August 20, 2006
  • Revised Date: January 18, 2007
  • The comprehensive assessment of water environment for urban stream(WEUS) aims at providing the essential information for its restoration.Starting with the idea of environment, this paper analyzes the concept of water environment of urban stream and its connotation.To fit for the objective of stream restoration, the index system, including morphology, hydrodynamics, water quality, zoology and landscape, is established, and the fitting assessment model is put forward.Furthermore, the above theory and method are applied to the case study of 6 representative reaches of the Ancient Canal in Zhenjiang city, and some suggestions are provided for the next restoration based on the result of evaluation.
  • [1]
    宋庆辉,杨志峰.对我国城市河流综合管理的思考[J].水科学进展,2002,13 (3):377-382.
    [2]
    杨士弘.城市生态环境学[M].北京:科学出版社,2003.103-111.
    [3]
    Melissa Parsons,Martin T,Richard N,et al.Review of physical river assessment methods:a biological perspective[M].Canberra:University of Canberra and Commonwealth of Australia,2000.11-17.
    [4]
    Ladson A,Ladson A R,White L J,et al.An index of stream condition:Reference manual (second edition)[M].Melbourme:Department of Natural Resources and Environment,1999.10-14.
    [5]
    张明凤,陈寅山,许友勤.福州市内河水质评价[J].福建师范大学学报(自然科学版),2003,19(4):56-61.
    [6]
    Marco Rizzoni,Bianca G,Cristina F,et al.An integrated approach to the assessment of the environment quality of the Tiber river in the urban area of Rome:A mutagenesis assay (micronucleus test) and an analysis of macrobenthic community structure[J].The Science of the Total Environment,1995,162(2-3):127-137.
    [7]
    杜桂森,王建厅,张为华.北京城市河湖的营养状态分析[J].北京水利,2002(6):25-27.
    [8]
    Li Zhu Wang,John Lyons,Paul Kanehl,et al.Impacts of urbanization on stream habitat and fish Across multiple spatial scales[J].Environmental Management,2001,28(2):255-266.
    [9]
    Angela J Davenport Angela M,Gurnell Patrick D.Armitage,et al.Habitat survey and classification of urban rivers[J].River Research and Applications,2004,20:687-704.
    [10]
    赵彦伟,杨志峰.城市河流生态系统健康评价初探[J].水科学进展,2005,16(3):349-355.
    [11]
    张凤玲,刘静玲,杨志峰.城市河湖生态系统健康评价:以北京市"六海"为例[J].生态学报,2005,25(11):3 019-3 027.
    [12]
    郭根林.关于水环境研究的几点认识[J].江苏水利,2003(1):37-38.
    [13]
    王振勇.对温州市河道水环境综合整治规划思路的几点思考[J].水利发展研究,2003(6):19-27.
    [14]
    陈雁,冯效毅,田炯.内秦淮河水环境整治方案探讨[J].江苏环境科技,2000,13(3):34-36.
    [15]
    汪常青,吴永红,刘剑彤.武汉城市湖泊水环境现状及综合整治途径[J].长江流域资源与环境,2004,13(5):499-502.
    [16]
    彭静,廖文根.城市水系的环境重塑[J].中国水利水电科学研究院学报,2003,1(4):255-259.
    [17]
    冯契.哲学大辞典[M].上海:上海辞书出版社,2001.556.
    [18]
    杨通进.争论中的环境伦理学:问题与焦点[J].哲学动态,2005(1):11-14.
    [19]
    《环境科学大辞典》编辑委员会.环境科学大辞典[M].北京:中国环境出版社,1991.283.
    [20]
    彭静,廖文根.对水环境研究的认识及展望[J].中国水利水电科学研究院学报,2004,2(4):271-275.
    [21]
    Vladimir N,Alena B,Neal O,et al.Unlocking the relationship of biotic integrity of impaired waters to anthropogenic stresses[J].Water Research,2005,39:184-198.
    [22]
    Pollard P,Huxham M.The european water framework directive:a new era in the management of aquatic ecosystem health?[J].Aquatic Conservation:Marine and Freshwater Ecosystems,1998,8:773-792.
    [23]
    萨蒂 T L.层次分析法-在资源分配、管理和冲突中的应用[M].北京:煤碳工业出版社,1988.18-26.
    [24]
    蔡文,杨春燕,林伟初.可拓工程方法[M].北京:科学出版社,1997.202-209.
    [25]
    谷朝君,潘颖.内梅罗指数法在地下水水质评价中的应用及存在问题[J].环境保护科学,2002,28(109):45-47.
    [26]
    夏军,史晓新.广义水环境质量评价标准探讨[J].环境与开发,1997,12(3):32-45.
  • Related Articles

    [1]GUAN Guanghua, LIU-WANG jiayi, CHEN Xiaonan, SHI Liangsheng. Roughness estimation methods of hydrodynamic digital twin models for canal systems[J]. Advances in Water Science, 2023, 34(6): 901-912. DOI: 10.14042/j.cnki.32.1309.2023.06.008
    [2]WANG Zhongjing, ZHENG Zhilei, XU Guoyin, JIANG Guangyu. Linear quadratic optimal control of multi-cascaded canals[J]. Advances in Water Science, 2018, 29(3): 383-389. DOI: 10.14042/j.cnki.32.1309.2018.03.010
    [3]SHANG Yi-zi, WU Bao-sheng, LI Tie-jian, WANG Guang-qian. Design and simulation of a foreseeable algorithm for canals[J]. Advances in Water Science, 2011, 22(2): 242-248.
    [4]WU Bao-sheng, SHANG Yi-zi, CUI Xing-hua, CHEN Zhi-yuan. Automatic canal control system and its operation and design[J]. Advances in Water Science, 2008, 19(5): 746-755.
    [5]SONG Lan-lan, LU Gui-hua, LIU Ling, HE Rui-min. Evaluation indicators system for regional ecosystem health[J]. Advances in Water Science, 2006, 17(1): 116-121.
    [6]LUO Yu-feng, CUI Yuan-lai, ZHENG Zu-jin. Research progress on methods of quantifying seepage from rivers and canals[J]. Advances in Water Science, 2005, 16(3): 444-449.
    [7]WANG Wei-di. Recognition of hydrologic cycle and water-silt relation in ancient China[J]. Advances in Water Science, 2003, 14(6): 799-802.
    [8]ZHOU Zu-hao, YUAN Hong-yuan, CUI Yuan-lai, LUO Qiang. Integrated optimal operation for reservoir and canal irrigation systems under limited water supply[J]. Advances in Water Science, 2003, 14(2): 172-177.
    [9]Cheng Jilin, Ji Zhaosen, Sen Xuehua, Xie Ji. Dynamic Programming Method of Mixture System in Canal Profile Cross Section Design[J]. Advances in Water Science, 1997, 8(1): 83-89.
    [10]Zhang Jiacheng. Scientific Thought of Water Controlling in Ancient China[J]. Advances in Water Science, 1996, 7(2): 158-162.

Catalog

    Article Metrics

    Article views (201) PDF downloads (760) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return