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Effects of Surface Roughness on Lateral Load-Carrying Capacities of Piles Embedded in Sand

机译:表面粗糙度对砂砂嵌入式侧向承载能力的影响

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摘要

In this study, the effect of pile surface roughness on the lateral load-carrying behavior of piles embedded in sand was investigated. Centrifuge tests were conducted on various model piles with different degrees of surface roughness. The effects of the pile surface roughness, given by the normalized roughness, R_n, on the lateral-load capacity and lateral displacement were analyzed. From the centrifuge tests, it was observed that the lateral-loading capacity markedly increased with the pile surface roughness. The effect was most significant within low degrees of surface roughness up to R_n of 0.024. Surface roughness parameters for the p-y method were proposed as a function of R_n, which could explain the effect of the pile surface roughness on calculated lateral load-displacement curves. Finite element analyses were performed to assess and compare the experimentally and numerically determined effects of the pile surface roughness. The numerical simulation of laterally loaded piles does not fully reproduce the experimental effect of surface roughness on the lateral-load response, which needs to be properly considered in the analysis.
机译:在这项研究中,研究了桩表面粗糙度对嵌入砂中堆积的堆的横向承载行为的影响。在具有不同表面粗糙度的各种模型桩上进行离心机测试。分析了由归一化粗糙度,R_n给出的桩表面粗糙度对横向载荷容量和横向位移的影响。从离心机测试中,观察到横向加载能力随着桩表面粗糙度显着增加。该效果在低的表面粗糙度低至0.024的r_n内最显着。提出了P-Y方法的表面粗糙度参数作为R_N的函数,这可以解释桩表面粗糙度对计算的横向载荷 - 位移曲线的影响。进行有限元分析以评估和比较实验和数值确定的桩表面粗糙度的效果。横向装载桩的数值模拟没有完全再现表面粗糙度对横向载荷响应的实验效果,这在分析中需要适当地考虑。

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