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ELASTO-VISCOPLASTIC SIMULATION OF BEARING CAPACITY CHARACTERISTICS OF STRIP FOOTING ON REINFORCED SAND

机译:加筋砂条带基承载力特性的弹粘模拟

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摘要

A nonlinear FEM analysis incorporating an elasto-viscoplastic constitutive model for sand that has been developed based on results from comprehensive laboratory stress-strain tests including plane strain compression tests is described. A series of plane strain laboratory model tests on the bearing capacity on a model strip footing (10 cm-wide)performed on unreinforced and reinforced level sand grounds were simulated by the FEM. The simulated footing load and settlement relation and failure mechanism in the unreinforced and reinforced sand grounds were compared with the measured ones. It is reported that the proposed FEM analysis method can simulate very well the test results, including the effects of reinforcing. It is one of the characteristic features of the proposed numerical analysis method that the footing and settlement behaviour around the peak footing load state and the one in the post-peak regime can be simulated in a very stable manner. It is shown that this is due largely to that the realistic viscous properties of sand that are properly modeled are incorporated in the FEM analysis.
机译:描述了一种非线性弹性有限元分析,结合了沙子的弹粘塑性本构模型,该模型是根据包括平面应变压缩试验在内的综合实验室应力应变试验的结果开发的。有限元模拟了一系列平面应变实验室模型测试,这些模型测试了在无筋和有筋水平砂土上进行的带状模型脚(10厘米宽)上的承载力。将实测的非加固和加固砂土的模拟地基荷载与沉降关系及破坏机理进行了比较。据报道,所提出的有限元分析方法可以很好地模拟测试结果,包括加固效果。所提出的数值分析方法的特征之一是可以非常稳定地模拟峰值支脚载荷状态下的支脚和沉降行为以及峰后状态下的支脚和支腿行为。结果表明,这主要是由于在FEM分析中结合了正确建模的沙子的真实粘性特性。

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