[1]YAO Zhi-hong,YANG Qing-ke,WANG Feng-ping,et al.Quantitative Marking of Non-climatic Factors Influencing Soil Moisture in Loess Hilly Area[J].Research of Soil and Water Conservation,2012,19(05):23-28.
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Quantitative Marking of Non-climatic Factors Influencing Soil Moisture in Loess Hilly Area

References:
[1] Fitzjohn C, Ternan J L, Williams A G. Soil moisture variability in a semi-arid gully catchment:implications for runoff erosion control[J]. Catena, 1998, 32(1):55-70.
[2] 贾志军, 王贾平, 李俊义, 等.土壤含水率对坡耕地产流入渗影响的研究[J].中国水土保持, 1987(9):25-27.
[3] Castillo V M, Gomez-Plaza A, Martinez-Mena M. The role of antecedent soil water content in the runoff response of semiarid catchments:a simulation approach[J]. Journal of Hydrology, 2003, 284(1/4):114-130.
[4] 王浩, 雷晓辉, 秦大庸, 等.基于人类活动的流域产流模型构建[J].资源科学, 2003, 25(6):14-18.
[5] 赵人俊.新安江模型参数的分析[J].水文, 1988(6):2-9.
[6] 黄奕龙, 陈利顶, 傅伯杰, 等.黄土丘陵小流域土壤水分空间格局及其影响因素[J].自然资源学报, 2005, 20(4): 483-492.
[7] Qiu Yang, Fu Bojie, Wang Jun, et al. Soil moisture variation in relation to topography and land use in hillslope catchment of the Loess Plateau, China[J]. Journal of Hydrology, 2001, 240(3/4):243-263.
[8] 傅伯杰, 王军, 马克明.黄土丘陵区土地利用对土壤水分的影响[J].中国科学基金, 1999(4):225-229.
[9] 何福红, 黄明斌, 党廷辉.黄土高原沟壑区小流域土壤水分空间分布特征[J].水土保持通报, 2002, 22(4):6-9.
[10] 黄明斌, 康绍忠, 李玉山.黄土高原沟壑区森林和草地小流域水文行为的比较研究[J].自然资源学报, 1999, 14(3):226-231.
[11] 王国梁, 刘国彬, 常欣, 等.黄土丘陵区小流域植被建设的土壤水文效应[J].自然资源学报, 2002, 17(3):339-344.
[12] 焦峰.基于GIS的黄土丘陵区土壤水库蓄水数量特征及其生态供水潜力评价[D].陕西杨凌:西北农林科技大学, 2006.
[13] 段建军.黄土高原地区土壤干层的分布状况与时空动态研究[D].陕西杨凌:中国科学院水利部水土保持研究所, 2006.
[14] 王洪明.基于DEM和实测数据的小流域土壤水分模拟[D].西安:西北大学, 2009.
[15] 杨文治, 余存祖.黄土高原区域治理与评价[M].北京:科学出版社, 1992.
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