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Catchment-scale conceptual modelling of water and solute transport in the dual flow system of the karst critical zone

机译:喀斯特临界区双流系统中水和溶质运移的集水规模概念模型

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摘要

Hydrological and hydrochemical processes in the critical zone of karst environments are controlled by the fracture-conduit network. Modelling hydrological and hydrochemical dynamics in such heterogeneous hydrogeological settings remains a research challenge. In this study, water and solute transport in the dual flow system of the karst critical zone were investigated in a 73.5-km(2) catchment in southwest China. We developed a dual reservoir conceptual run-off model combined with an autoregressive and moving average model with algorithms to assess dissolution rates in the fast flow and slow flow systems. This model was applied to 3 catchments with typical karst critical zone architectures, to show how flow exchange between fracture and conduit networks changes in relation to catchment storage dynamics. The flux of bidirectional water and solute exchange between the fissure and conduit system increases from the headwaters to the outfall due to the large area of the developed conduits and low hydraulic gradient in the lower catchment. Rainfall amounts have a significant influence on partitioning the relative proportions of flow and solutes derived from different sources reaching the underground outlet. The effect of rainfall on catchment function is modulated by the structure of the karst critical zone (e.g., epikarst and sinkholes). Thin epikarst and well-developed sinkholes in the headwaters divert more surface water (younger water) into the underground channel network, leading to a higher fraction of rainfall recharge into the fast flow system and total outflow. Also, the contribution of carbonate weathering to mass export is also higher in the headwaters due to the infiltration of younger water with low solute concentrations through sinkholes.
机译:岩溶环境关键区的水文和水化学过程由裂缝导管网络控制。在这种非均质的水文地质环境中对水文和水化学动力学进行建模仍然是一项研究挑战。在这项研究中,在中国西南部一个73.5 km(2)集水区,研究了岩溶临界区双流系统中的水和溶质运移。我们开发了双储层概念性径流模型,结合了具有算法的自回归和移动平均模型,以评估快流和慢流系统中的溶出速率。该模型被应用于具有典型岩溶关键带结构的3个集水区,以显示裂缝和导管网络之间的流量交换如何与集水区存储动态有关。裂缝和导管系统之间的双向水通量和溶质交换量从上游源头到排污口增加,这是由于已开发导管的面积较大且下部集水区的水力梯度较低。降雨量对分配来自地下源头的不同来源的流量和溶质的相对比例具有重要影响。降雨对集水区功能的影响由岩溶临界区的结构(例如岩溶和下陷)调节。源头薄薄的喀斯特地貌和发达的下沉孔将更多的地表水(较年轻的水)转移到地下河道网络中,从而导致更多的降雨补给到快速流系统和总流出物中。同样,由于低溶质浓度的较年轻水通过污水池的渗透,源头中碳酸盐化风化对大量出口的贡献也更高。

著录项

  • 来源
    《Hydrological Processes》 |2017年第19期|3421-3436|共16页
  • 作者单位

    Univ Aberdeen, Sch Geosci, Aberdeen AB24 3UF, Scotland|Hohai Univ, State Key Lab Hydrol Water Resources & Hydraul En, Nanjing 210098, Jiangsu, Peoples R China|Hohai Univ, Coll Hydrol & Water Resources, Nanjing 210098, Jiangsu, Peoples R China;

    Hohai Univ, State Key Lab Hydrol Water Resources & Hydraul En, Nanjing 210098, Jiangsu, Peoples R China|Hohai Univ, Coll Hydrol & Water Resources, Nanjing 210098, Jiangsu, Peoples R China;

    Univ Aberdeen, Sch Geosci, Aberdeen AB24 3UF, Scotland;

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

    bidirectional exchange; conceptual model; dual flow system; flow and solute; karst critical zone;

    机译:双向交换;概念模型;双流系统;流量和溶质;岩溶临界区;

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