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基于RUSLE模型的南方丘陵山区土壤侵蚀研究 被引量:108

Study of Soil Erosion in the Southern Hillside Area of China Based on RUSLE Model
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摘要 土壤侵蚀已成为世界范围内的生态环境问题,是水土保持的重要内容。本文基于GIS技术和RUSLE模型对南方丘陵山区4个主要省份——湖南、江西、浙江和福建的土壤侵蚀状况进行了定量研究,分析了土壤侵蚀空间分布特征以及与坡度、海拔间的关系。结果表明:研究区内年均土壤侵蚀量为2.46亿t/a,平均土壤侵蚀模数为421.81t/(km2?a);研究区水土保持状况良好,土壤侵蚀面积中,只有13.41%的面积存在着较高程度的侵蚀,局部区域表现为强烈侵蚀;空间上,湖南和江西的土壤侵蚀呈现块状分布,浙江和福建的土壤侵蚀则呈现出点状分布,湖南整体的水土保持状况不如其他3个省份;研究区内土壤侵蚀与坡度和海拔关系密切,微度侵蚀在各海拔和坡度等级下分布面积最大(均大于75%),强度以上的侵蚀分布面积很小(均小于1.5%),坡度15~25°和海拔200~500m的区域是研究区内土壤侵蚀最为强烈的区域。 Soil erosion is a major ecological and environmental issue globally. As an important content of soil and water conservation, soil erosion by water is a primary cause of soil degradation and is significantly threatening the environment. Based on GIS and RUSLE models, we conducted quantitative research on the quantity and spatial distribution of soil erosion in four provinces (Hunan, Jiangxi, Zhejiang and Fujian) comprising the Southern Hillside Area. In addition, relationships between the distribution characteristics of soil erosion and influencing factors (e.g. slope and elevation) were analyzed. We found that the annual amount of soil erosion was 246 million tons and the mean soil erosive modulus is 421.81t/km^2. Soil and water conservation good across the study area, and only 13.41% of the soil erosion area has a higher degree of erosion. Spatially, soil erosion in Hunan and Jiangxi were characterized by a block distribution; soil erosion in Zhejiang and Fujian were characterized by a point distribution. Soil and water conservation in Hunan were worse than the other provinces. The degree of soil erosion in the study area was closely related to slope and elevation. At different levels of slope and elevation, the slight erosion had the largest area (more than 75% of the area of soil erosion). Otherwise, the area of intense erosion and higher degree erosion was small compared to the slight soil erosion degree (less than 1.5% of the total). The slope 15-25° and elevation from 20N500m suffered the most intensive erosion.
出处 《资源科学》 CSSCI CSCD 北大核心 2014年第6期1288-1297,共10页 Resources Science
基金 科技基础性工作专项(编号:2012FY111800-01-01)
关键词 土壤侵蚀 南方丘陵山区 RUSLE GIS soil erosion southern hillside area RUSLE GIS
作者简介 陈思旭,男,湖南常德市人,硕士生,主要从事资源信息获取与应用研究。E—mail:sxchen89@163.com 通讯作者:杨小唤,E-mail:yangxh@lreis.ac.cn
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  • 1Dotterweich IVl. The history of human-induced soil erosion: Geo-morphic legacies, early descriptions and research, and thedevelopment of soil conservation-a global synopsis[J]. Geomor-phology ,2013,201:1-34.
  • 2李占斌,朱冰冰,李鹏.土壤侵蚀与水土保持研究进展[J].土壤学报,2008,45(5):802-809. 被引量:182
  • 3杨勤科,李锐,曹明明.区域土壤侵蚀定量研究的国内外进展[J].地球科学进展,2006,21(8):849-856. 被引量:67
  • 4Renard K G, Foster G R, Weesies G A, et al. RUSLE: Reviseduniversal soil loss equation[J].Journal of soil and Water Conser-vatiort, 1991,46( 1):30-33.
  • 5De Roo A, Wesseling C G, Ritsema C J. Lisem: A single-eventphysically based hydrological and soil erosion model for drainagebasins. I: theory, input and output[J]. Hydrological processes,1996,10(8):1107-1117.
  • 6Renard K G, Foster G R, Weesies G A, et al. Predicting SoilErosion by Water r A Guide to Conservation Planning with theRevised Universal Soil Loss Equation (RUSLE)[R]. Washington:Agriculture Handbook,1997.
  • 7Morgan R,Quinton J N, Smith R E, et al. The European SoilErosion Model (EUROSEM) : A dynamic approach for predictingsediment transport from fields and small catchments[J]. EarthSurface Processes andLandforms, 1998,23(6) :527-544.
  • 8De Jong S M, Paracchini M L, Bertolo F, et al. Regionalassessment of soil erosion using the distributed model SEMMEDand remotely sensed datafj]. Catena, 1999,37(3) :291-308.
  • 9Baoyuan L,Keli Z.Yun X. An empirical soil loss equation[A]. In:Proceedings 12th International Soil Conservation OrganizationConference[K]. Beijing : Tsinghua University Press,2002.
  • 10Reich P, Eswaran H, Beinroth F. Global Dimensions of Vulner-ability to Wind and Water Erosion[A]. In: Sustaining the globalfarm. 10th International Soil Conservation Organization Meeting[R]. Purdue University,1999.

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