Improving assessment of groundwater sustainability with analytic hierarchy process and information entropy method: a case study of the Hohhot Plain, China
详细信息    查看全文
  • 作者:Jiang Chen ; Yilong Zhang ; Zongyu Chen ; Zhenlong Nie
  • 关键词:Zoning ; Indicators ; DPSIR ; Sustainability
  • 刊名:Environmental Earth Sciences
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:73
  • 期:5
  • 页码:2353-2363
  • 全文大小:1,930 KB
  • 参考文献:1. Alley WM, Reilly TE, Franke OL (1999) Sustainability of ground-water resources. U.S. Geological Survey Circular 1186
    2. Biswas AK (1988) Sustainable water development for developing countries. Water Resour Dev 4(4):232-50 CrossRef
    3. Bithas K (2008) The sustainable residential water use: sustainability, efficiency and social equity, the European experience. Ecol Econ 68:221-29 CrossRef
    4. Chaves HML, Alipaz S (2007) An integrated indicator based on basin hydrology, environment, life, and policy: the watershed sustainability index. Water Resour Manag 21(5):883-95 CrossRef
    5. Custodio E, Kretsinger V, Llamas MR (2005) Intensive development of groundwater: concepts, facts and suggestions. Water Policy 7:151-62
    6. Dillon PJ (2005) Future management of aquifer recharge. Hydrogeology 13:313-16 CrossRef
    7. Fleckenstein J, Krause S, Hannah DM, Boano F (2010) Groundwater-surface water interactions: new methods and models to improve understanding of processes and dynamics. Adv Water Resour 33(11):1291-295 CrossRef
    8. Foster S (2006) Groundwater-sustainability issues and governance needs. Episodes 29(4):238-43
    9. Hirata R, Suhogusoff A, Fernandes A (2007) Groundwater resources in the State of S?o Paulo (Brazil): the application of indicators. Anais da Academia Brasileira de Ciências 79(1):141-52 CrossRef
    10. Hoekstra AY (2009) Human appropriation of natural capital: a comparison of ecological footprint and water footprint analysis. Ecol Econ 68(7):1963-974 CrossRef
    11. Juwana I, Perera BJC, Muttil N (2009) Conceptual framework for the development of West Java water sustainability index. 18th World IMACS/MODSIM Congress, Cairns
    12. Kuzmana MK, Groˇselja P, Ayrilmis N et al (2013) Comparison of passive house construction types using analytic hierarchy process. Energy Build 64:258-63 CrossRef
    13. Lamba′n LJ, Martos S, Rodr?′guez-Rodr?′guez M, Rubio JC (2011) Application of groundwater sustainability indicators to the carbonate aquifer of the Sierra de Becerrero (Southern Spain). Environ Earth Sci 64:1835-848 CrossRef
    14. Lavapuro M (2008) Groundwater sustainability indicators testing with Finnish data. Boreal Environ Res 13:381-02
    15. Liao Y, Xu J, Wang W (2011) A method of water quality assessment based on biomonitoring and multiclass support vector machine. Proc Environ Sci 10:451-57 CrossRef
    16. Liu J, Rich K, Zheng C (2008) Sustainability analysis of groundwater resources in a coastal aquifer, Alabama. Environ Geol 54:43-2 CrossRef
    17. Loucks DP, Gladwell JS (1999) Sustainability criteria for water resource systems. Cambridge University Press, Cambridge
    18. Lutz A, Thomas JM, Pohll G, Keita M, McKay WA (2008) Sustainability of groundwater in Mali, West Africa. Environ Earth Sci 58:1441-450
    19. Meadows D (1998) Indicators and information systems for sustainable development: a report to the Balaton. The Sustainability Institute, Balaton Group
    20. Menon S (2007) Groundwater management: need for sustainable approach. MPRA (Munich Personal RePEc Archieve) paper
    21. Palme U, Tillman AM (2008) Sustainable development indicators: how are they used in Swedish water utilities? J Clean Prod 16:1346-357 CrossRef
    22. Pandey VP, Shrestha S, Chapagain SK, Kazama F (2011) A framework for measuring groundwater sustainability. Environ Sci Policy 14:396-07
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:None Assigned
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1866-6299
文摘
The objective of this study was to test indicators and improve the assessment of groundwater sustainability by using a synthetic method. An indicator system of groundwater sustainability was constructed under the framework of driver–pressure–state–impact–response, and a method for the assessment of groundwater sustainability was developed by using analytic hierarchy process together with information entropy theory. This method was used to calculate the weight of each indicator. And then, the sustainability scale was determined by the indicator zoning methods. The assessment results of a case study in Hohhot Plain, China, demonstrated that the method greatly reduced the randomicity and anthropogenic influence on the determination of weight of indicators; and gave a quantitative classification on sustainability scale which produced a rational result on the assessment of groundwater sustainability in Hohhot Plain.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700