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Volume 29 Issue 2
Jun.  2010
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Article Contents
TANG Yi-qun1, ZHANG Xiao-hui, ZHOU Jie, SHE Tian-yu, YANG Ping, WANG Jian-xiu. The mechanism of underground leakage of soil in karst rocky desertification areas—A case in Chenqi small watershed, Puding, Guizhou Province[J]. CARSOLOGICA SINICA, 2010, 29(2): 121-127. doi: 10.3969/j.issn.1001-4810.2010.02.003
Citation: TANG Yi-qun1, ZHANG Xiao-hui, ZHOU Jie, SHE Tian-yu, YANG Ping, WANG Jian-xiu. The mechanism of underground leakage of soil in karst rocky desertification areas—A case in Chenqi small watershed, Puding, Guizhou Province[J]. CARSOLOGICA SINICA, 2010, 29(2): 121-127. doi: 10.3969/j.issn.1001-4810.2010.02.003

The mechanism of underground leakage of soil in karst rocky desertification areas—A case in Chenqi small watershed, Puding, Guizhou Province

doi: 10.3969/j.issn.1001-4810.2010.02.003
  • Received Date: 2009-05-19
  • Publish Date: 2010-06-25
  • The underground leakage of soil is a special type of soil and water erosion in karst rocky desertification areas. Based on a case study in the Chenqi small watershed — a serious karst rocky desertification area, the process and mechanism of underground leakage of soil is illustrated. The results show that special geologic and environmental conditions in the karst area provide favorable transport channel and accommodation space for underground leakage of soil. Substantial leakage of surface precipitation is the force f or soil leakage toward underground. The disintegration of the aggregate into the finer particles makes the soil leak easier to move along the soil pores and the rock fissures and goes down into underground. In conditions of the infiltrating and softening by the water, the soils that deposited in the karst fissures or caves become more plastic and are able t o creep along the soilrock interface and migrate to the underground river which leads to the leakage of the surface soil. This study is expected to provide a theoretical support for the soil and water conservation in karst rocky desertification areas.

     

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  • [1]
    王世杰. 喀斯特石漠化——中国西南最严重的生态地质环境问题[J].矿物岩石地球化学通报, 2003, 22(2): 120-126.
    [2]
    俞锦标, 杨立铮, 章海生, 等.中国喀斯特发育规律典型研究——贵州普定南部地区喀斯特水资源评价及其开发利用[M]. 北京: 科学出版社, 1990:1-3,104-108.
    [3]
    王世杰. 喀斯特石漠化概念演绎及其科学内涵的探讨[J]. 中国岩溶,2002, 21(2): 101-105.
    [4]
    张信宝,王世杰,贺秀斌,等. 碳酸盐岩风化壳中的土壤蠕滑与岩溶坡地的土壤地下漏失[J]. 地球与环境,2007,35(3):202-206.
    [5]
    彭韬, 杨涛, 王世杰, 等. 喀斯特坡地土壤流失监测结果简报[J]. 地球与环境, 2009, 37(2): 126-130.
    [6]
    彭韬, 王世杰, 张信宝, 等. 喀斯特坡地地表径流系数监测初报[J].地球与环境, 2008, 36(2): 125-129.
    [7]
    Duiker S W, Flanagan D C, Lal R. Erodibility and infiltration characteristics of five major soils of southwest Spain[J]. Catena, 2001, 45(2): 103-121.
    [8]
    Bryan R. Development of laboratory instrumentation for the study of soil erodibility[J]. Earth Science Journal, 1968, 2(1): 38-50.
    [9]
    唐益群, 张晓辉, 舍恬钰,等. 贵州石漠化地区棕黄色粘性土团聚体稳 定性研究[J]. 工程地质学报, 2009, 17 (6): 817-822.
    [10]
    唐益群, 叶为民. 全充型复活溶洞——宜兴慕蠡洞洞穴发育特征[J]. 水文地质工程地质, 2001, 28(5): 39-42.
    [11]
    Singh A, Mitchell J K. General stress stain time function for soils[J]. Journal of the Soil Mechanics and Foundations Division ASCE, 1968, 94(1): 21-46.
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