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首页> 外文期刊>Vadose zone journal VZJ >Some Remarks on Bimodality Effects of the Hydraulic Properties on Shear Strength of Unsaturated Soils
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Some Remarks on Bimodality Effects of the Hydraulic Properties on Shear Strength of Unsaturated Soils

机译:水力特性对非饱和土抗剪强度的双峰影响研究

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摘要

Hydraulic properties affect the shear strength of unsaturated soils in terms of suction, predicted as a function of water volume in the pores. In complex pore geometries, such as soils with bimodal pore-size distributions, suction effects on shear behavior are poorly understood. We present an analytical approach to define how a bimodal suction stress originates in such soils, which are conceptually divided into micro and macrostructures due to aggregation of a wide range of particle sizes. The results were compared with data from the literature for other soils with aggregated macrostructure or with a prevailing coarse fraction. A physically based dependence of soil shear behavior on the bimodal hydraulic behavior was observable, with the extension of the suction stress theory to a bimodal soil hydraulic response in agreement with the suction and moisture change. Depending on the soil type and the range of suctions investigated, the micro and macrostructures should prevail affecting the mechanical soil response subject to environmental loading, such as rainfall events. From a practical point of view, taking into account the bimodal structure network should be fundamental in the set-up of proper prediction models for shallow landslides induced by rainfall.
机译:水力特性以吸力的形式影响非饱和土壤的剪切强度,这是孔隙中水量的函数。在复杂的孔几何结构中,例如具有双峰孔径分布的土壤,对剪切行为的吸力影响了解得很少。我们提供了一种分析方法来定义双峰吸引应力如何从这种土壤中产生,这些土壤由于大范围的颗粒聚集而在概念上分为微观和宏观结构。将结果与文献中其他宏观结构聚集或粗粒含量较高的土壤的数据进行比较。可以观察到土壤剪切行为对双峰水力行为的物理依赖性,随着吸力理论扩展到与吸力和湿度变化相一致的双峰土壤水力响应。取决于土壤类型和研究的吸力范围,微观和宏观结构应占主导地位,从而影响机械土壤对环境负荷(如降雨事件)的响应。从实际的角度来看,在为降雨引起的浅层滑坡建立适当的预测模型时,考虑双峰结构网络应该是基本的。

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