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Prediction of rainfall-induced transient water pressure head behind a retaining wall using a high-resolution finite element model

机译:利用高分辨率有限元模型预测挡土墙后降雨引起的瞬态水压头

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Retaining walls are used to provide additional support to slopes thought to be at risk of failure. The design of such structures requires the inclusion of pore water head in the appropriate calculations, whilst subsequent construction can have major implications for the overall slope pore water head regime. Despite the obvious importance of pore water head in this context there has been no rigorous model development facilitating the temporal as well as the spatial high-resolution computation of pore water head. This paper reports on the development of a soil water finite element model (ESTEL-2D), which is capable of achieving this. The model is applied to a typical Hong Kong retaining wall scenario where the model is shown to be capable not only of establishing 'dynamic steady state initial conditions', but also of illustrating the complexities of the pore water head changes occurring immediately adjacent to a retaining wall. The results suggest that it is entirely appropriate to consider the utilisation of such modelling capability to assess drainage requirements (including optimal drainage locations) and appropriate piezometric monitoring strategies.
机译:挡土墙用于为被认为有破坏危险的斜坡提供额外的支撑。这种结构的设计要求在适当的计算中包括孔隙水头,而随后的施工可能会对整体斜坡孔隙水头状况产生重大影响。尽管在这种情况下孔隙水压头具有明显的重要性,但是还没有严格的模型开发来促进孔隙水压头的时间和空间高分辨率计算。本文报告了能够实现这一目标的土壤水分有限元模型(ESTEL-2D)的开发。该模型应用于典型的香港挡土墙场景,其中该模型不仅能够建立“动态稳态初始条件”,而且还能说明紧邻挡土墙的孔隙水头变化的复杂性。壁。结果表明,完全有必要考虑利用这种建模能力来评估排水需求(包括最佳排水位置)和适当的测压监测策略。

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