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Performances of two instrumented laboratory models for the study of rainfall infiltration into unsaturated soils

机译:两种仪器化模型在非饱和土壤降雨入渗研究中的性能

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Rainfall infiltration and suction variation in unsaturated soils must be taken into consideration in the analysis of most slope stability problems, particularly in the tropical regions where the annual precipitation is high. The process of rainfall infiltration into unsaturated soils is an extremely complex problem attributed to the non-linearity of the hydraulic property functions of the unsaturated soils. This paper describes in detail two instrumented laboratory models, i.e. one-dimensional soil column, and two-dimensional slope model used to provide experimental evidences for the transient suction variations in the unsaturated soils under certain rainfall conditions. The performances of the laboratory models were tested on four typical types of residual soils, i.e. sand-gravel, silty gravel, sandy silt, and silt (kaolin), and a two-layered soil system, i.e. sandy silt underlain by silty gravel. The results showed that the suction distributions for the single-layered homogeneous soils obtained from the simpler one-dimensional soil column were almost identical to that of two-dimensional slope model. However, the two-dimensional slope model should be employed for the two-layered soil system because of the dominant effect of the lateral flow mechanism. The capillary barrier effect was observed when a less permeable soil layer was underlain by a more permeable soil layer. The minimum suction value in soil is governed by the rainfall intensity, rainfall duration, and the saturated permeability of soil. The infiltration rate of the fine-grained soils that subjected to shrink and crack was independent of the soil permeability, but was significantly governed by the preferential flows developed in the soils.
机译:在分析大多数边坡稳定性问题时,特别是在年降水量高的热带地区,必须考虑非饱和土壤的降雨入渗和吸力变化。降雨渗入非饱和土壤的过程是一个极其复杂的问题,这归因于非饱和土壤水力学特性的非线性。本文详细介绍了两种仪器化的实验室模型,即一维土壤柱和二维斜率模型,它们为在某些降雨条件下非饱和土壤中的瞬时吸力变化提供了实验证据。实验室模型的性能在四种典型类型的残留土壤上进行了测试,即沙砾,粉质砾石,沙质粉尘和粉尘(高岭土),以及两层土壤系统,即粉质砾石夹层的沙质粉砂。结果表明,从较简单的一维土柱得到的单层均质土的吸力分布与二维边坡模型几乎相同。但是,由于侧向流动机理的主要作用,对于两层土体系应采用二维斜率模型。当渗透性较低的土壤层被渗透性较高的土壤层覆盖时,观察到了毛细管屏障效应。土壤的最小吸力值取决于降雨强度,降雨持续时间和土壤的饱和渗透率。经历收缩和破裂的细粒土壤的入渗速率与土壤的渗透性无关,但受土壤中优先流动的支配。

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