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流域侵蚀控制度的概念与计算方法--以王茂沟流域为例 被引量:10
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作者 高海东 李占斌 +3 位作者 李鹏 贾莲莲 庞国伟 徐国策 《中国水土保持科学》 CSCD 2013年第1期17-24,共8页
文章将流域最小可能土壤侵蚀模数与实际土壤侵蚀模数的比值定义为流域侵蚀控制度,并以王茂沟流域为例说明计算方法。结果表明:王茂沟流域水土保持措施容量下的流域最小可能土壤侵蚀模数为2 573 t/(km2.a);使用王茂沟流域2004年土地利用... 文章将流域最小可能土壤侵蚀模数与实际土壤侵蚀模数的比值定义为流域侵蚀控制度,并以王茂沟流域为例说明计算方法。结果表明:王茂沟流域水土保持措施容量下的流域最小可能土壤侵蚀模数为2 573 t/(km2.a);使用王茂沟流域2004年土地利用图,计算得出王茂沟流域实际土壤侵蚀模数为7 413 t/(km2.a),王茂沟流域侵蚀控制度为0.35,造成王茂沟流域2004年流域侵蚀控制度较低的原因是王茂沟流域还存在一定数量的坡耕地以及林地面积较少。建议将流域侵蚀控制度作为评价流域水土保持现状的指标。 展开更多
关键词 水土保持 修正通用土壤流失方程 容许土壤流失量 流域侵蚀控制度 黄土高原
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Effects of Erosion Control Measures on Mountain Floods: A Case Study of the Censhui River South Branch Watershed
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作者 Changzhi Li Hong Wang +2 位作者 Baozhao Yuan Dongya Sun Changjun Liu 《Journal of Agricultural Science and Technology(A)》 2015年第8期646-654,共9页
To investigate the effects of various erosion control measures on mountain floods, a case study was conducted in Censhui River South Branch Watershed using scenario analysis and soil conservation service (SCS) metho... To investigate the effects of various erosion control measures on mountain floods, a case study was conducted in Censhui River South Branch Watershed using scenario analysis and soil conservation service (SCS) methods. A distributed hydrological model was developed, and watershed parameters were determined based on satellite imagery, digital terrain models, digital maps and field investigations. Two types of erosion control measures were investigated: the variation of vegetation covers and the change of cultivation techniques. Seven scenarios were considered for the test watershed. The results show: (1) while the de-vegetation results in the increase of peak discharge, the improve of vegetation covers decreases peak discharge at watershed scale; (2) by both improving vegetation cover and enhancing terrace-cultivation technology, the peak discharge is reduced and the peak flow arrival time is delayed; (3) attention should be attached to both early warning system and measures changing the underlying surface and conveyance systems. 展开更多
关键词 WATERSHED soil and water conservation mountain flood erosion control measures scenario analysis.
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