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首页> 外文期刊>Journal of irrigation and drainage engineering >Field-Obtained Soil Water Characteristic Curves and Hydraulic Conductivity Functions
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Field-Obtained Soil Water Characteristic Curves and Hydraulic Conductivity Functions

机译:野外获得的土壤水分特征曲线和水导率函数

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摘要

A test program consisting of two field-scale compacted clay liners (test pads) is conducted to evaluate field-obtained soil water characteristic curves (SWCCs) and hydraulic conductivity functions (k-functions). The test pads are instrumented with volumetric water content and soil water matric potential sensors. Each test pad is subjected to an infiltration cycle, using either a sealed double-ring infiltrometer or a two-stage borehole infiltrometer, followed by a drying cycle. To compare the results from the field-obtained SWCCs and k-functions, laboratory tests are performed on Shelby tube samples. A comparison of the results obtained from field-scale and laboratory techniques illustrates the evidence of hysteresis between the drying and wetting curves. The shapes of the field-obtained and laboratory-obtained SWCCs are similar, although at different volumetric water contents. There is poor agreement between field-obtained and laboratory-obtained k-functions, as reported in other studies; therefore field k-functions are preferential when available.
机译:进行了一个由两个现场规模的压实粘土衬里(测试垫)组成的测试程序,以评估现场获得的土壤水分特征曲线(SWCC)和水力传导率函数(k函数)。测试垫装有体积水含量和土壤水基质电势传感器。使用密封的双环渗透仪或两级钻孔渗透仪,对每个测试垫进行渗透循环,然后进行干燥循环。为了比较现场获得的SWCC和k函数的结果,对谢尔比管样品进行了实验室测试。从现场规模和实验室技术获得的结果的比较说明了干燥曲线和润湿曲线之间有滞后现象。现场获得的SWCC的形状与实验室获得的SWCC的形状相似,尽管体积水含量不同。正如其他研究报道的那样,现场获得的k函数与实验室获得的k函数之间的一致性差。因此,场k函数在可用时优先。

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