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Volume 31 Issue 1
Mar.  2012
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Article Contents
ZHANG Qiang. Assessment on the intrinsic vulnerability of karst groundwater source in the Qingmuguan karst valley[J]. CARSOLOGICA SINICA, 2012, 31(1): 67-73. doi: 10.3969/j.issn.1001-4810.2012.01.012
Citation: ZHANG Qiang. Assessment on the intrinsic vulnerability of karst groundwater source in the Qingmuguan karst valley[J]. CARSOLOGICA SINICA, 2012, 31(1): 67-73. doi: 10.3969/j.issn.1001-4810.2012.01.012

Assessment on the intrinsic vulnerability of karst groundwater source in the Qingmuguan karst valley

doi: 10.3969/j.issn.1001-4810.2012.01.012
  • Received Date: 2011-05-19
  • Publish Date: 2012-03-25
  • Assessment on the vulnerability of karst groundwater source is an effective measure for the protection and effective management of karst aquifer. In the most part of Southwest China karst area, the karst groundwater is liable to be contaminated for lack of proper protective zone for groundwater. The intrinsic vulnerability of karst groundwater source in the Qingmuguan karst valley is assessed quantitatively with the modified Slovenia model on condition of considering four factors: surficial material (O), runoff (C) and rain fall (P) as well as karst development (K). The results prove that high vulnerable area accounts for 12.6% of the total acreage, middle vulnerable area for 43%, and low vulnerable area for 44.4% in the watershed. It is high vulnerable area in sinkholes with their surrounding100 m area. Sinking stream with its surrounding10 m area, and high karstified area are the high vulnerable areas. But most areas are middle vulnerable, and sandstone area is low vulnerable. The assessment is coincident with reality, which supplies simple and clear scientific basis for reasonable programming and protection of groundwater. The method in the paper is worth to be popularized in the field of the assessment on the vulnerability of karst groundwater source in the East Sichuan karst valley region.

     

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  • [1]
    袁道先,朱德浩,翁金桃,等.中国岩溶学[M].北京:地质出版社,1993:1.
    [2]
    袁道先,薛禹群,傅家谟,等.防止我国西南岩溶地区地下河变成“下水道”的对策与建议[C]//中国科学院院士建议.2007,164期.
    [3]
    D Daly, A Dassargues, D Drew, S Dunne, N Goldscheider, S Neale, I C Popescu, F Zwahlen. Main concepts of the European Approach for (karst) ground water vulnerability assessment and mapping[J].Hydrogeology Journal, 2002,10(2):340-345.
    [4]
    邹胜章,梁彬,陈宏峰,等.EPIK法在表层岩溶带水脆弱性评价中的应用——以洛塔为例[C]//中国地质调查局.中国岩溶地下水与石漠化研究.南宁:广西科学技术出版社,2003,155-164.
    [5]
    章程,蒋勇军,Michèle Lettingue,等.岩溶地下水脆弱性评价“二元法”及其在重庆金佛山的应用[J].中国岩溶,2007,26(4):334-340.
    [6]
    Nata?a Ravbar, Nico Goldscheider. Proposed methodology of vulnerability and contamination risk mapping for the protection of karst aquifers in Slovenia[J]. Acta Carsologica, 2007, 36(3): 461-475.
    [7]
    Nico Goldscheider. Karst groundwater vulnerability mapping: application of a new method in the Swabian Alb, Germany[J]. Hydrogeology Journal,2003,13:555-564.
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