[1] Vrba J, Zaporozec A. Guidebook on mapping groundwater vulnerability. International Contributions to Hydrogeology [M]. Verlag Heinz Heise. 1994, 16. [2] 孙才志, 潘俊.地下水脆弱性的概念、评价方法与研究前景[J]. 水科学进展, 1999, 10(4): 444~449. [3] Foster S S D. Fundamental concepts in aquifer vulnerability, pollution risk and protection strategy[A]. In: W. van Duijvanbooden & H. G. van Waegeningh, Vulnerability of Soil and Groundwater to Pollutions. TNO Committee on Hydrogeological Research, Proceeedings and information no. 38[C]. The Hague, 1987, 69~86. [4] Aller L, Bennet T, Lehr J H et al. DRASTIC: a standardized system for evaluating groundwater pollution potential using hydrogeological settings[A]. U. S. Environmental Protection Agency report 600/2-87-035[C], Ada(Oklahoma), U. S. A. 1987, 445. [5] Thomas T. Assessment of soil type at the scale 1: 50, 000 for DRASTIC vulnerability mapping of the coastal zone of mainland Portugal[A]. COMETT Grantee at LNEC[C], Lisbon, Portugal. 1995, 76~82. [6] Lobo -Ferreira J P, Oliveria & Manuel M. Assessment of groundwater vulnerability to pollution using the DRASTIC Method[A]. National Laboratory of Civil Engineering[C], Lisbon, Portugal. 1994, 123~129. [7] McCabe G J Jr, Wolock D M. Effects of climatic change and climatic variability on the Thornthwaite moisture index in the Delaware River Basin[J]. Climatic Change, 1992, 24: 143~159. [8] Yates D N. Watbal: an integrated water balance model for climate impact assessment of river basin runoff[J]. International Journal of Water Resources Development. 1996, 12(2): 121~139. [9] Strzepek K M, Yates D N. Assessment of water resources vulnerability and adaptation to climate change[J]. International Journal of Water Resources Development. 1996, 12(2): 111~119. [10] Working Group II of IPCC. Technical Guidelines for Assessing Climate Change Impacts and Adapting[M], 1994. 3~5. [11] Qing Y, Maotian L. The application of the DRASTIC index to the assessment of vulnerability of Dalian Peninsula using GIS[A]. Progress Report -1998, National National Laboratory of Civil Engineering[C]. Lisbon, Portugal. 1998, 43~49. [12] 扬庆, 栾茂田.地下水易污性评价方法——DRASTIC 指标体系[J]. 水文地质工程地质. 1999, 26(2): 4~9. [13] 林山杉, 武健强, 张勃夫.地下水环境脆弱程度图编图方法研究[J]. 水文地质工程地质, 2000, 27(3): 6~8. [14] Lloyd J D. Aspects of interaction between groundwater and the environment[A]. In: Proceedings, Malayia Groundwater and the Environment Symposium ed. by Awadalla S & Noor I M[C]. 1987, 1~24. [15] Das Gupta A, Amaraweera H N M P. Assessment of long term withdrawal rate for coastal aquifer[J]. Ground Water, 1993, 31 (2), 250~259. [16] 伊恩·伯顿, 彼德·蒂默曼. 全球变化中的人类因素-审视我们的责任和机会[J]. 国际社会科学杂志(中文版), 1990, 7(3): 6~19. [17] Buckleg R. 2 nd Environmental sensitivity mapping, a regional planning tool. Perspective in Environmental Management [M]. Springer-verleg, New York, 1991, 73. |