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Soil Erosion Information Entropy: A Comprehensive Measure Index and Simulation Tool for Land Surface Erodibility

机译:土壤侵蚀信息熵:土地表面易用的综合指数和仿真工具

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The author put forward the concept for soil erosion information entropy, and expressed by H = -K ∑from i=1 to n of ∑from j=1 to m of ω_(ji) a_(ij) log(ω_(ji) a_(ij)) where K represents unit transform coefficient for information measurement, a_(ij) represents contribution of the jth type corresponding to the ith factor to soil erosion, ω_(ji) represents the weight of the jth type for the ith factor. Soil erosion information entropy, in essence, reflects synthetical information about internal aspect of the ground and also is a comprehensive measure index for erodibility, when related factors of soil erosion are divided into external factor such as precipitation and internal factors such as terrain, physical and chemical properties of soil, land use and land cover, crop, water and soil conservation factors, etc.. Human beings cannot control precipitation process so far, but they do have influences on soil erosion caused by precipitation through change of land surface. Soil erosion information entropy effectively simulates the process of land surface change and manifests its results directly. So it provides a quantative analysis tool for benefit estimation on water and soil conservation. The product of erosion information entropy and precipitation erodibility R(R=EI30), which is αHR (α is unit transform coefficient), can illustrate quantatively the amount of soil erosion and its spatial distribution. This paper also gave a case study at HongShuigou watershed located on tributary of SanChuan river in Shanxi province and gained fairly good results.
机译:作者提出了土壤侵蚀信息熵的概念,并由H = -kΣfromi = 1到n表示σfromj = 1到mω_(ji)a_(ij)log(ω_(ji)a_ (IJ))其中k表示信息测量的单位变换系数,A_(IJ)表示与土壤侵蚀的第i因子对应的第j型的贡献,ω_(ji)表示第i因子的第j型的重量。土壤侵蚀信息熵,实质上,反映了地面内部方面的综合信息,也是一种综合措施蚀刻指标,当土壤侵蚀的相关因素分为外部因素,如降水和内部因素,如地形,物理和内部因素土壤,土地利用和土地覆盖,作物,水土保持因子等化学性质等。人类无法控制降水过程,但它们确实对通过陆地变化降水引起的土壤侵蚀的影响。土壤侵蚀信息熵有效地模拟了土地表面变化的过程,并直接表现出结果。因此,它为水土保持有益估计提供了一种量化分析工具。侵蚀信息熵和降水蚀刻蚀刻的产物R(R = EI30),即αHR(α是单位变换系数),可以说明土壤腐蚀量及其空间分布。本文还为山西省休川河支流的红山沟流域进行了案例研究,效果相当好。

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