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Role of epikarst in near-surface hydrological processes in a soil mantled subtropical dolomite karst slope: implications of field rainfall simulation experiments

机译:表层岩溶在土壤覆盖的亚热带白云岩岩溶斜坡中近地表水文过程中的作用:田间降雨模拟实验的意义

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摘要

Epikarst exerts a strong control on run-off generation in karst regions, but it is still unclear in karst regions. Our study aimed to demonstrate the effect of epikarst on near-surface hydrological processes in a subtropical cockpit karst region of southwest China, using plot-scale rainfall simulation experiments with different rainfall intensities (low and high) and antecedent moisture conditions (dry and wet). A trench excavated to the epikarst lower boundary allowed identification of flow pathways in the entire soil–epikarst architecture system, thus facilitating the water balance calculations using a conceptual model with the assumption of a two-stage hydrological evolution. More than 70% of the total rainfall water moved vertically through the shallow soil layer and then was redistributed by the epikarst as subsurface flow occurring on the soil–epikarst interface, depression filling on epikarst surface, water held by epikarst and deep percolation. Epikarst water regulation capacity, defined as the sum of depression filling on epikarst surface, water held by epikarst, epikarst seepage flow and deep percolation, was 58 mm (wet antecedent condition) and 223 mm (dry antecedent condition). Total run-off from the soil–epikarst system was dominated by saturated subsurface flow showing a threshold process controlled by epikarst storage capacity (storing as much as 181 mm of rainfall water under dry antecedent condition). Our study proved that despite the epikarst being relatively poorly developed and covered by a soil mantle, it still exerted a strong influence on near-surface hydrological processes and thus should be adequately considered in future modelling of water recharge and depletion dynamics in this integrated soil–epikarst system. Copyright © 2015 John Wiley & Sons, Ltd.
机译:Epikarst对喀斯特地区的径流产生有很强的控制作用,但在喀斯特地区尚不清楚。我们的研究旨在通过使用不同降雨强度(低和高)和先前湿度条件(干湿)的样地规模降雨模拟实验,来证明表岩溶对中国西南亚热带驾驶舱岩溶区近地表水文过程的影响。 。开挖到表层岩溶下部边界的一条沟渠可以识别整个土壤-表层岩溶建筑体系中的水流路径,从而简化了使用概念模型(假设水文两阶段演变)的水平衡计算。总降雨量中有70%以上的水垂直流过浅层土壤,然后由于表层岩土在表层-土壤界面上的地下流动,表层岩溶表面的凹陷填充,表层岩溶所持的水和深层渗滤而被表层岩溶重新分配。表层岩溶水调节能力定义为表层洼地充填,表层岩溶所持水量,表层岩溶渗流和深层渗滤之和,分别为58 mm(湿前条件)和223 mm(干前条件)。土壤-表岩溶系统的总径流主要由饱和地下流控制,该过程显示出一个阈值过程,该表观过程受表岩溶储藏能力控制(在干燥的先决条件下储存了多达181 mm的降雨水)。我们的研究证明,尽管表岩溶发育相对较弱,并被土壤覆盖层覆盖,但它仍然对近地表水文过程产生很大影响,因此,在未来对这种综合土壤中的补给和枯竭动态进行建模时应充分考虑这一点–岩溶系统。版权所有©2015 John Wiley&Sons,Ltd.

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  • 来源
    《Hydrological ProcHydrological Processesrnesses》 |2016年第5期|795-811|共17页
  • 作者单位

    Chinese Academy of Sciences Key Laboratory of Agro‐ecological Processes in Subtropical Region Institute of Subtropical Agriculture Changsha Hunan China;

    Chinese Academy of Sciences Huanjiang Observation and Research Station for Karst Ecosystems Huanjiang Guangxi China;

    Chinese Academy of Sciences Key Laboratory of Agro‐ecological Processes in Subtropical Region Institute of Subtropical Agriculture Changsha Hunan China;

    Chinese Academy of Sciences Huanjiang Observation and Research Station for Karst Ecosystems Huanjiang Guangxi China;

    Chinese Academy of Sciences Key Laboratory of Agro‐ecological Processes in Subtropical Region Institute of Subtropical Agriculture Changsha Hunan China;

    Chinese Academy of Sciences Huanjiang Observation and Research Station for Karst Ecosystems Huanjiang Guangxi China;

    Guilin University of Technology College of Environmental Science and Engineering Guilin China;

    Chinese Academy of Sciences Key Laboratory of Agro‐ecological Processes in Subtropical Region Institute of Subtropical Agriculture Changsha Hunan China;

    Chinese Academy of Sciences Huanjiang Observation and Research Station for Karst Ecosystems Huanjiang Guangxi China;

    Hunan Agricultural University College of Resources and Environment Changsha Hunan China;

    Chinese Academy of Sciences Key Laboratory of Agro‐ecological Processes in Subtropical Region Institute of Subtropical Agriculture Changsha Hunan China;

    Chinese Academy of Sciences Huanjiang Observation and Research Station for Karst Ecosystems Huanjiang Guangxi China;

    Graduate University of Chinese Academy of Sciences Beijing China;

    Chinese Academy of Sciences Key Laboratory of Agro‐ecological Processes in Subtropical Region Institute of Subtropical Agriculture Changsha Hunan China;

    Chinese Academy of Sciences Huanjiang Observation and Research Station for Karst Ecosystems Huanjiang Guangxi China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    epikarst; water balance; hydrological processes; rainfall simulation; storage capacity;

    机译:岩溶;水平衡;水文过程;降雨模拟;储水能力;

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