首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Spatial-Temporal Evolution of Soil Erosion in a Typical Mountainous Karst Basin in SWChina, Based on GIS and RUSLE
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Spatial-Temporal Evolution of Soil Erosion in a Typical Mountainous Karst Basin in SWChina, Based on GIS and RUSLE

机译:基于GIS和风险的Swchina典型多山岩溶盆地土壤侵蚀的空间演变

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摘要

In this study,we address the characteristics of the spatial and temporal evolution of soil erosion in karstic mountainous area of Houzhai River Basin of southwest China. The study uses GIS, erodibility test results, actual surveys of soil types, a revised universal soil loss equation for estimating soil erosion in 1973, 1990, 2002, and 2013, and an analysis of the spatial and temporal distribution of the evolution law of soil erosion for almost 40 years. Results show the following: (1) The soil erosion modulus of the Houzhai River Basin exhibits a decrease from 222.72 t km~(−2) year~(−1) in 1973 to 103.82 t km~(−2) year~(−1) in 2013. (2) The intensity level of soil erosion changes across space. The most active area is mainly concentrated in the upstream peak cluster depression. Areas with a slope of 8°-25° account for 40.81% of the total erosion contribution rate, indicating that these are the main areas where erosion occurs. (3) The global and universal classification standard of soil erosion shows that the Houzhai River Basin areas above 65%do not undergo microerosion. The rocky desertification is a serious problem, which explains why grading standard soil erosion intensity is inapplicable to karst areas. (4) The average soil erosion modulus in the basin is generally low(i.e., below1000 t km~(−2) year~(−1)), which indicates strong karstification in the karst areas. This process can occur through subsurface pores, fissures, holes, and underground leakage phenomena, which underestimate the amount of soil erosion in the karst areas. A comprehensive analysis of a long time series reveals that soil erosion in the karst areas is a complex process which requires further detailed studies.
机译:在这项研究中,我们解决了西南北海河流域喀斯特山区土壤侵蚀空间和时间演变的特点。该研究采用GIS,蚀刻性测试结果,土壤类型的实际调查,修订了1973年,1990年,2002年和2013年估算土壤侵蚀的经修订的通用土壤损失方程,以及分析土壤进化法的空间和时间分布腐蚀近40年。结果表明以下:(1)侯寨河流域的土壤侵蚀模量从1973年到103.82 T KM〜(-2)年的222.72 T KM〜(-2)年〜(-2)〜( - 1)2013年。(2)空间侵蚀的强度水平变化。最活跃的区域主要集中在上游峰簇抑制中。坡度为8°-25°的区域占总侵蚀贡献率的40.81%,表明这些是侵蚀发生的主要领域。 (3)土壤侵蚀的全球和普遍分类标准表明,侯寨河流域以上65%以上的地区不接受微渗。岩石荒漠化是一个严重的问题,这解释了为什么分级标准土壤侵蚀强度可不适用于喀斯特地区。 (4)盆地的平均土壤腐蚀模量通常低(即,低于1000吨KM〜(-2)年〜(-1)),这表明岩溶地区的强劲岩溶。该过程可以通过地下毛孔,裂缝,孔和地下泄漏现象发生,这低估了喀斯特地区的土壤侵蚀量。对长时间序列的综合分析表明,喀斯特地区的土壤侵蚀是一种需要进一步详细研究的复杂过程。

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  • 作者单位

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550002 China College of Forestry Guizhou University Guiyang 550000 China Puding Karst Ecosystem Observation and Research Station Anshun 561000 Guizhou China;

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550002 China Puding Karst Ecosystem Observation and Research Station Anshun 561000 Guizhou China;

    College of Forestry Guizhou University Guiyang 550000 China Puding Karst Ecosystem Observation and Research Station Anshun 561000 Guizhou China;

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550002 China Puding Karst Ecosystem Observation and Research Station Anshun 561000 Guizhou China;

    College of Forestry Guizhou University Guiyang 550000 China Puding Karst Ecosystem Observation and Research Station Anshun 561000 Guizhou China;

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550002 China Puding Karst Ecosystem Observation and Research Station Anshun 561000 Guizhou China;

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550002 China Puding Karst Ecosystem Observation and Research Station Anshun 561000 Guizhou China;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GIS; RUSLE; Karst; Houzhai River watershed; Soil erosion;

    机译:GIS;风险;喀斯特;Houzhai河流域;水土流失;

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