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A Direct Time-domain Integral Method and Its Implementation Based on Matlab

机译:基于MATLAB的直接时域积分方法及其实现

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The current equivalent linearization method for evaluation of seismic response of soil layers has been widely used by engineers, but it obviously has limits while considering severe earthquake action and dealing with extremely soft soil layers. Developing a direct time-domain integral method is essential. In this paper, a direct-domain integral method is proposed. In the method, the dynamic skeleton curve constitutive model is introduced and it can fit test results of dynamic shear modules ration curve and damping ratio curve simultaneously, central difference integration method is used to solve the dynamic equation, multi-transmitting artificial boundary condition has been conducted to consider the effect of energy transmission through bedrock boundary. In order to implement this method, a program called Dymatlab has been compiled, strong motion records got from the NGA data base for site effects on strong ground motion have been used to analysis the offshore engineering site with thick soft soil layers. The results show that this program can be applied as a reasonable and feasible method for nonlinear seismic response of soil layers.
机译:工程师的地震响应评价目前的等效线性化方法已被工程师广泛应用,但考虑严重地震作用和处理极其柔软的土壤层,显然有很大限制。开发直接时域积分方法是必不可少的。本文提出了一种直接域积分法。在该方法中,引入了动态骨架曲线本构模型,它可以同时安装动态剪切模块的测试结果和阻尼比曲线,中央差分集成方法用于解决动态方程,多传输人工边界条件已经存在进行以考虑能量传输通过基岩边界的影响。为了实现这种方法,已经编译了一个名为Dymatlab的程序,从NGA数据库获得了对现场效应的强大运动记录,用于分析厚软土层的海上工程部位。结果表明,该方案可作为土壤层非线性地震响应的合理及可行的方法。

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