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Analytical Solution for Axisymmetric Active Earth Pressure Based on the Characteristics Method considering Orthoradial Geometric Condition

机译:基于考虑立体几何条件的特征方法的轴对称主动接地压力分析解

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The current analytical solutions for axisymmetric active earth pressure are based on certain hypothetical relationships between the circumferential stress, the average stress of the meridional plane, and the main shear stress of the meridional plane. To get a stricter analytical solution, the strict mathematical relationship between them is derived based on the circumferential geometric condition, plastic flow theory, and plastic potential theory in this study. A new axisymmetric characteristics theory, which takes into account the friction angle, the dilatation angle of the soil, and the flow velocity, is established. A new analytical solution for axisymmetric active earth pressure is derived based on the new axisymmetric characteristics theory and the hypothesis of the active static state. The solutions developed in this study and the active static-state hypothesis are demonstrated to be reasonably accurate compared with a set of experimental data obtained from the literature. Various comparative analyses were conducted, and many interesting conclusions are obtained; it is found that the analytical solution is greater than the numerical solution. The analytical and numerical solutions for pressure caused by surcharge and weight fall between the solutions of Berezantzev (lambda=1) and Cheng (lambda=KO), whereas the analytical and numerical solutions for pressure caused by cohesion are greater than those of Berezantzev and Cheng. (c) 2019 American Society of Civil Engineers.
机译:轴对称主动接地压力的目前的分析解基于周向应力,子午平面的平均应力与子午线的主要剪切应力之间的某些假设关系。为了获得更严格的分析解决方案,它们之间的严格数学关系是基于本研究中的周向几何状态,塑料流动理论和塑料潜在理论来源的。建立了一种新的轴对称特征理论,其考虑了摩擦角,土壤的扩张角和流速。基于新的轴对称特征理论和主动静态的假设导出了一种新的轴对称主动接地压力的分析解决方案。与从文献中获得的一组实验数据相比,证明了本研究中开发的解决方案和活性静态假设的合理准确。进行了各种比较分析,获得了许多有趣的结论;发现分析溶液大于数值溶液。额外收费和重量造成的压力的分析和数值解决方案下降(Lambda = 1)和Cheng(Lambda = Ko)之间的溶液,而由凝聚力引起的压力分析和数值溶液大于Berezantzev和Cheng 。 (c)2019年美国土木工程学会。

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