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A p-y model for predicting the lateral nonlinear interaction between pile and soil-rock mixture material based on discrete element modeling

机译:基于离散元素建模的桩和土岩混合材料横向非线性相互作用的P-Y模型

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摘要

To obtain deep insight into and understanding of the mechanical behavior and evolution of the lateral interaction between a single pile and soil-rock mixture material (S/RM), parametric two-dimensional discrete element analyses were performed to investigate the effects of different rock proportions. Adequate numerical simulations for the S/RM were first studied and verified by field direct shear tests. The results demonstrated that the binary discrete numerical models were able to capture the relative shear stress-displacement behavior with different rock proportions. Subsequently, the lateral mechanical behavior, as well as the microstructural evolution law, between the pile and S/RM was studied based on the two-dimensional DEM model. The effects of rock block proportion and size on the p-y curves of the single pile in the S/RM were investigated according to micromechanism analyses. Based on the modified initial modulus of the subgrade reaction and the ultimate resistance that can take into account different rock block contents, a new p-y model is proposed for the prediction of static laterally loaded pile response in S/RM.
机译:为了深入了解和理解单一桩和土岩混合物材料(S / RM)之间的横向相互作用的机械行为和演化,进行参数二维离散元素分析,以研究不同岩石比例的影响。首先通过现场直接剪切测试进行S / RM的足够数值模拟。结果表明,二元离散数值模型能够捕获具有不同岩石比例的相对剪切应力 - 位移行为。随后,基于二维DEM模型研究桩和S / RM之间的横向力学行为以及微观结构演化法。根据微机械分析,研究了岩石块比例和大小对S / RM中单桩的P-Y曲线的影响。基于对路基反应的改性初始模量和可以考虑不同岩石块内容的最终阻力,提出了一种新的P-Y模型,用于预测S / RM中的静横向加载桩响应。

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