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ONE-DIMENSIONAL FLOW INFILTRATION THROUGH A COMPACTED FINE GRAINED SOIL

机译:压实细粒土壤的一维渗流

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Compacted soils are widely used in engineering work and engineers often specify that cohesive soils be compacted either around or on the wet side of optimum water content. In general, at the corresponding degree of saturation values, water component in soil voids is continuous but the air phase is not. The modelling of the infiltration process through compacted soils requires that unsaturated hydraulic functions be defined. A theoretical soil water retention function for soils with a discontinuous air phase is derived using the theory proposed by Schuurman (1966). Data from the test results provide encouraging evidence of the validity of the proposed theory. An empirical hydraulic conductivity function where the air is present in the form of occluded bubbles is also determined by curve fitting to the experimental measurements. A numerical solution of Richards' equation for one-dimensional flow, which incorporates the experimental findings, was used to simulate the measured transient water flow. The results show that the proposed constitutive relationships are capable of producing simulations of the measurements of the unsaturated flow that are both qualitatively and quantitatively realistic.
机译:压实的土壤在工程工作中被广泛使用,工程师经常指定将粘性土壤压实在最佳含水量的湿侧附近或湿侧。通常,在相应的饱和度值下,土壤孔隙中的水成分是连续的,而空气相则不是。通过压实土壤进行渗透过程的模型要求定义不饱和水力函数。利用Schuurman(1966)提出的理论推导了具有不连续空气相的土壤的理论土壤保水函数。测试结果中的数据为所提出理论的有效性提供了令人鼓舞的证据。还通过与实验测量值的曲线拟合来确定经验水力传导率函数,其中空气以闭塞气泡的形式存在。利用一维理查兹方程的数值解法,并结合了实验结果,来模拟测得的瞬态水流。结果表明,所提出的本构关系能够对定性和定量现实的非饱和流测量结果进行模拟。

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