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A study on low strain integrity testing of platform-pile system using staggered grid finite difference method

机译:交错网格有限差分法进行平台桩系统低应变完整性测试的研究

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摘要

To study the three-dimensional characteristics of wave propagation in platform-pile system, a three-dimensional computation model for transient vibration of platform-pile-soil system is established. Based on initial and boundary conditions, the numerical solution of this model is obtained. A MATLAB program is compiled through using staggered grid finite difference method. The dynamic response of the integrate pile in platform-pile-soil system is got under vertical impact force, and the reliability and feasibility of the numerical simulation are corroborated by comparing calculation result with measured data of low strain integrity testing of platform-pile system. The optimal sensor location at platform top is studied. The results show the position distancing the pile center 0.5R similar to 0.6R (R is pile radius) is the optimal sensor location, which the line between sensor location and pile center parallels the short side. It plays a certain role in reducing three-dimensional interference through increasing shear wave velocity of surrounding soil and appropriately increasing the ratio of characteristic wavelength to pile radius. In addition, contact area has less influence on low strain integrity testing of platform-pile system. (C) 2014 Elsevier Ltd. All rights reserved.
机译:为了研究平台桩系统中波传播的三维特性,建立了平台桩土系统瞬态振动的三维计算模型。基于初始条件和边界条件,获得了该模型的数值解。通过使用交错网格有限差分法编译MATLAB程序。通过将计算结果与平台桩低应变完整性试验的实测数据进行比较,验证了平台桩-土体系在桩-土共同作用下的动力响应,并给出了数值模拟的可靠性和可行性。研究了平台顶部的最佳传感器位置。结果表明,使桩心0.5R偏离0.6R(R为桩半径)的位置是最佳传感器位置,传感器位置与桩心之间的线与短边平行。它通过增加周围土壤的剪切波速度并适当增加特征波长与桩半径之比,在减少三维干扰方面起一定作用。另外,接触面积对平台桩系统低应变完整性测试的影响较小。 (C)2014 Elsevier Ltd.保留所有权利。

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