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Field Stiffness Reduction Evaluations from Back-Analysis of Pile Load Tests

机译:通过桩荷载试验的反分析评估场刚度

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Starting with the fundamental small-strain shear modulus (G_(max)), the mechanical nonlinear stress-strain-strength behavior of soil manifests itself in the form of stiffness reduction under loading. Back analyses of 105 pile load tests combined with a knowledge of soil parameters at the site and pile geometries provide a framework for evaluation of operational stiffnesses at different levels of loading. This paper explains the framework for obtaining the operational stiffnesses from pile load tests and presents stiffness reduction curves (G/G_(max)) in terms of logarithm of pseudo-strain (w/d), where w = pile displacement and d = pile diameter. The result affords an approach to evaluating the nonlinear load-displacement response of piles without resort to evaluating the pile capacity. The framework utilizes the Randolph elastic pile model to generate stiffness reduction curves from top-down axial compression load tests, tension tests, and O-cell configurations.
机译:从基本的小应变剪切模量(G_(max))开始,土的机械非线性应力-应变-强度行为表现为在载荷作用下刚度降低的形式。对105个桩载荷测试的回溯分析,结合对现场土壤参数和桩几何形状的了解,为评估不同载荷水平下的工作刚度提供了一个框架。本文解释了从桩载荷测试中获得工作刚度的框架,并以拟应变的对数(w / d)表示刚度减小曲线(G / G_(max)),其中w =桩位移,d =桩直径。该结果为评估桩的非线性荷载-位移响应提供了一种方法,而不必依靠评估桩的承载力。该框架利用Randolph弹性桩模型通过自顶向下的轴向压缩载荷测试,拉伸测试和O形单元配置生成刚度减小曲线。

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