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森林水文学:全球变化背景下的森林与水的关系 被引量:30

FOREST HYDROLOGY: FOREST AND WATER IN A CONTEXT OF GLOBAL CHANGE
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出处 《植物生态学报》 CAS CSCD 北大核心 2007年第5期753-756,共4页 Chinese Journal of Plant Ecology
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参考文献21

  • 1Andersen J, Dybkjaer G, Jensen KH (2005). Use of remotely sensed precipitation and leaf area index in a distributed hydrological model. Journal of Hydrology, 305(4) ,15- 39.
  • 2Andréassian V (2004). Waters and forests: from historical controversy to scientific debate. Journal of Hydrology, 291, 1 - 27.
  • 3Bloschl G (2001). Scaling in hydrology. Hydrological Processes, 15,709 - 711.
  • 4Brown AE, Zhang L, McMahon TA (2005). A review of paired catchment studies for determining changes in water yield resulting from alterations in vegetation. Journal of Hydrology, 310,28 -61.
  • 5Cammeraa LH (2004). Scale dependent thresholds in hydrological and erosion response of a semi-arid catchment in southeast Spain. Agriculture, Ecosystems and Environment, 104, 317 - 332.
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  • 7Chirico GB, Graysan GB,Westem AW (2003). A downward approach to identifying the structure and parameters of a process - based model for a small experimental catchment. Hydrology Protess, 17, 2239 - 2258.
  • 8Chuang YL, Oren R, Bertozzi AL (2006). The porous media model for the hydraulic system of a conifer tree: linking sap flux data to transpiration rate. Ecological Modelling, 191 (3224) 4, 4722 - 4725.
  • 9Giertz S, Diekkrager B (2003). Analysis of the hydrological processes in a small headwater catchment in Benin (West Africa). Physics and Chemistry of the Earth, 28,1333 - 1341.
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二级参考文献44

  • 1张志强 余新晓 赵玉涛.森林从坡面到流域尺度对水文过程的影响:实验、机制与模拟[J].应用生态学报,2002,13(4).
  • 2Watson F G R, Grayson R B, and Vertessy R A. Large scale distribution modeling and the utility of detailed ground data. Hydrological processes, 1998, 12: 873-888.
  • 3Hutchinson M F. Interpolation of rainfall data with thin plate smoothing splines Ⅰ. Two dimensional smoothing of data with short range correlation. Journal of Geographic Information and Decision Analysis. 1998, 2:152167.
  • 4Thornton P E, Running S W & White M A. Generating surfaces of daily meteorological variables over large regions of complex terrain. J Hydrol , 1997, 190: 214-251.
  • 5Thornton P E, Running S W. Generating daily surfaces of temperature and precipitation over complex topography. In: Goodchild, M F ; Steyaert, L T ; Parks, B O , eds. GIS and environmental modeling: progress and research issues. Fort Collins, CO: GIS World Books, 1996.
  • 6Stillman Sara. A comparison of three automated precipitation simulation models: ANUSPLIN, MTCLIM-3D, and PRISM, 98. [Wilson] Graduate Programs in Geography and Geology. Department of earth sciences. Montana state university, bozeman, 1996, Available on line http://www. montana. edu/wwwes/text/geogms.htm.
  • 7Martz L W, Garbrecht J. Numerical definition of drainage network and subcatchment areas from digital elevation models. Computer & Geoscience, 1992, 18(6) : 747-761.
  • 8Fairfield J, Leymarie P. Drainage networks from grid digital elevation models. Water resources research, 1991, 27(5): 709-717.
  • 9Whitehead P G and Robinson M. Experimental basin studies— and international and historical perspective of forest impacts, J Hydrol, 1993, 145:217-230.
  • 10Sui D Z, Maggio R C. Integrating GIS with hydrological modeling: practices, problems, and prospects. Computers, Environment, and Urban Systems, 1999, 23 : 33 -51.

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同被引文献522

引证文献30

二级引证文献204

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