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Application of simulated annealing to inversion of surface wave phase velocity

机译:模拟退火在表面波阶段速度反转中的应用

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Applicability of simulated annealing to inversion of surface wave phase velocity that is commonly used in microtremor array exploration is investigated in this study. Numerical experiments using a 4-layer model of sedimentary layers indicate that the inversion method is effective in the Rayleigh wave phase velocity inversion. We compare the performances of very fast simulated annealing (VFSA) inversion with another inversion method based on genetic algorithms (GA) by Yamanaka and Ishida (1995). The GA inversion can find near-optimal models with less computational costs than that required in the VFSA inversion. However, inverted model from the VFSA inversion has less error than that from the GA inversion. This means that the VFSA inversion can find models that are much closer to the global minimum solution because of high ability in global and local searches. We, then, apply the VFSA method to actual phase velocity data and determine S-wave profiles.
机译:在本研究中研究了模拟退火的适用性对常用于微调阵列勘探中常用的表面波阶段速度的反转。 使用4层沉积层模型的数值实验表明反演方法在瑞利波相速度反转中是有效的。 我们通过基于Yamanaka和Ishida(1995)的基于遗传算法(GA)的另一种反转方法,比较非常快速模拟退火(VFSA)反转的性能。 GA反转可以找到近最佳模型,而不是VFSA反转中的计算成本较少。 然而,来自VFSA反转的反相模型与GA反转的误差较少。 这意味着由于全局和本地搜索的能力很高,VFSA反转可以找到更接近全局最小解决方案的模型。 然后,我们将VFSA方法应用于实际相位速度数据并确定S波形谱。

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