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Modelling effects of pile diameter

机译:桩径建模效果

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The most commonly used program for the analysis of piles under static lateral loading is LPILE. The program uses the nonlinear Winkler springs recommended by the American Petroleum Institute (API) to model soil-pile interaction. The p-y (load-displacement) curves were developed from field tests, with pile diameters in the range 0.324-0.67 m. When these p-y curves are used to analyze load tests on piles with larger diameters, the computed load-deflection curves underestimate the stiffnesses of the test piles. This effect is referred to as the pile diameter effect. In this technical note, a very different approach is presented to evaluate the pile diameter effect. Both LPILE and a continuum-based finite element program VERSAT-P3D were calibrated to closely simulate the results of two lateral load tests on small-diameter piles at two different sites. VERSAT-P3D modelled the volume of the pile and LPILE did not. Each program was used to develop p-y curves for increasingly larger pile diameters up to 2.0 m. An important finding for practice is that there was no pile diameter effect for displacements up to 60 mm. LPILE can be used with confidence in practice in this displacement range. Thereafter, the load-deflection curves from LPILE became softer and the pile diameter effect became evident.
机译:LPILE是在静态侧向荷载下分析桩的最常用程序。该程序使用美国石油协会(API)推荐的非线性Winkler弹簧来模拟土-桩相互作用。 p-y(载荷-位移)曲线是通过现场测试得出的,桩直径在0.324-0.67 m范围内。当这些p-y曲线用于分析直径较大的桩的载荷试验时,计算出的载荷-挠度曲线会低估试验桩的刚度。该效应称为绒头直径效应。在本技术说明中,提出了一种非常不同的方法来评估桩直径的影响。对LPILE和基于连续体的有限元程序VERSAT-P3D都进行了校准,以紧密模拟在两个不同位置对小直径桩进行的两次侧向载荷测试的结果。 VERSAT-P3D对桩的体积进行建模,而LPILE则没有。每个程序都用于绘制p-y曲线,以增大直径达2.0 m的桩的直径。一个重要的实践发现是,对于最大60 mm的位移,桩直径没有影响。在此位移范围内,LPILE可以在实践中放心使用。此后,来自LPILE的荷载-挠度曲线变得更柔和,桩直径效应变得明显。

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