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Large Plot Tracing of Subsurface Flow in the Edwards Aquifer Epikarst

机译:Edwards Aquifer Epikarst中的地下流量的大图追踪

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An experimental rainfall simulation plot (7 x 14 m) in the Edwards Aquifer region of Texas was established in dense juniper land cover to measure the effects of brush clearing on runoff. This project includes the monitoring of lateral subsurface flow using a trench (2.5 m deep x 8 m long) located at the downhill end of the plot. Two tracer tests with fluorescent dyes were conducted using simulated rainfall to assess the discrete flow paths discharging into the trench. Uranine was applied in a band at the uphill end of the plot, eosine was applied around the base of a tree in the center of the plot, and Phloxine B was applied in a narrow band at the downhill end of the plot. During the tracer tests, samples were collected at regular intervals from sixteen locations along the trench face where water flowed into the trench. A fluorescence analysis of water samples using a luminescence spectrometer produced concentration values for each dye. An analysis of the tracer test results revealed: (1) not all areas in the plot contributed to the shallow subsurface flow into the trench, (2) subsurface flow paths displayed a high degree of interconnection, even over short distances, (3) conduits showed strong linkages to multiple plot regions, and (4) conduits showed strong connection with the area surrounding juniper vegetation, with rapid water flow from this area. These results demonstrated that the high variability in flow paths and interconnection encountered in the Edwards Aquifer exists even at the plot scale and highlights the need for greater research into vegetation-flow path interactions in shallow epikarst.
机译:在德克萨斯州德克萨斯州爱德华州含水层区域(7×14米)的实验降雨模拟图(7 x 14米)是在致密的杜松地覆盖覆盖中建立,以测量刷子清除对径流的影响。该项目包括使用沟槽(2.5米深×8米长)位于图的下坡末端的横向地下流量的监测。使用模拟降雨进行两种具有荧光染料的示踪试验,以评估排放到沟槽中的离散流动路径。铀在图的上坡末端的条带中施加,围绕图中的树的底部施加eosine,并且在图的下坡端的窄带中施加氟胺B。在示踪剂测试期间,以沿着沟槽面的十六个位置定期收集样品,其中水流入沟槽。使用发光光谱仪的水样的荧光分析产生每个染料的浓度值。分析显示的示踪试验结果:(1)不是绘图中的所有区域导致浅层地下流入沟槽,(2)地下流动路径显示出高度的互连,即使在短距离,(3)导管表现出对多个绘图区域的强烈联系,(4)导管显示出与周围杜松植被的地区有着强烈的连接,并从该地区的快速流动流动。这些结果表明,即使在情节规模,Edwards含水层中遇到的流动路径和互联的高度变化也存在,并突出需要更大研究浅层Epikarst的植被流动路径相互作用。

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