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Field-Scale Unsaturated Hydraulic Properties of Compacted and Uncompacted Earthen Covers

机译:压实和未履行的土木覆盖物的现场尺度不饱和液压性能

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Unsaturated hydraulic properties influence the field hydrology of engineered earthen covers. Field measured hydraulic properties of soils are recommended because they closely represent the field structure of the soil. This paper presents unsaturated hydraulic properties of two field scale test sections, composed of compacted vs. uncompacted clay. The unsaturated hydraulic properties were estimated using continuous measurements of water contents and matric suctions. The water contents and matric suctions were measured by sensors installed in the field test sections. The unsaturated hydraulic conductivities were estimated using the instantaneous profile method. The water content versus suction relationships for the two test sections showed significant differences at low suctions and the relationships were similar at higher suctions. The only difference between the test sections was the compaction state. The compacted clay test section had higher dry unit weight than the uncompacted clay test section. The uncompacted clay had greater volume of inter-clod voids (macropores). The differences in water content versus suction relationships at low suction could be because of macropores which empty out first and fill up last under unsaturated condition. At higher suctions, the relationships were similar because the flow is controlled by the micropores which existed in both test sections.
机译:不饱和液压特性影响工程化土盖的野外水文。建议使用土壤的液压性能,因为它们密切代表了土壤的田间结构。本文介绍了由压实的与未换下的粘土组成的两个场比例试验部分的不饱和液压性能。使用连续测量的水含量和原始吸附估计不饱和液压性能。通过安装在现场试验部分中的传感器测量水质和原旋光液。使用瞬时剖面方法估计不饱和液压传导性。两种测试部分的水含量与吸入关系显示出低迷的显着差异,并且在更高的吸孔中的关系相似。测试部分之间的唯一区别是压实状态。压实的粘土试验部分具有比未提交的粘土试验部分更高的干燥单位重量。未换成的粘土具有更大体积的CLOD间隙(大孔)。水含量与低吸力下的吸入关系的差异可能是因为在不饱和条件下排空并填充的宏孔。在更高的吸音下,关系类似,因为流动由在两个测试部分中存在的微孔控制。

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