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Numerical study of the effect of soil- atmosphere interaction on the stability and serviceability of cut slopes in London clay

机译:土壤 - 大气相互作用对伦敦粘土稳定性和可用性的数值研究

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摘要

The stability of cut slopes is greatly influenced by seasonal pore- water pressure variations under the combined effect of rainfall and vegetation. However, predicting soil-atmosphere interaction is not straightforward, due to the complexity of both the boundary conditions involved and the hydromechanical behaviour of soils, which is coupled and highly nonlinear, rendering the use of numerical tools, such as finite element analysis, necessary. This paper discusses the numerical modelling of soil-atmosphere interaction and presents the analysis of a slope cut in London clay in a highly vegetated area. The whole life cycle of the slope is considered with phases of low and high water demand vegetation and vegetation clearance. The analysis results indicate that dense vegetation is associated with high factors of safety, but may induce large differential displacements, which are likely to affect the serviceability of the slope. Vegetation clearance, however, may initiate instability, highlighting the need for effective vegetation management to achieve a balance between serviceability and ultimate limit states. Although the case considered is representative of southeast England, it introduces the necessary tools for realistic numerical analysis of soil-atmosphere interaction.
机译:减少降雨量和植被的综合效应,剪切斜坡的稳定性受到季节性孔隙水压差的影响。然而,由于涉及的边界条件和土壤的流体力学行为的复杂性,预测土壤 - 气氛相互作用并不直接,这是耦合的和高度非线性的,使得使用数值工具,例如有限元分析,所以必要的。本文讨论了土壤 - 大气相互作用的数值模型,并呈现了高度植被区伦敦粘土坡度的分析。斜坡的整个生命周期被认为是低水需求植被和植被清除的阶段。分析结果表明,密集的植被与安全性的高因素有关,但可能诱导大型差分位移,这可能影响斜坡的可用性。然而,植被清除可能会发起不稳定,突出了有效植被管理的需求,以实现可维护性和最终限制状态之间的平衡。虽然被考虑的案例是英格兰东南部的代表,但它介绍了对土气 - 大气相互作用的现实数值分析的必要工具。

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