地震荷载下集总土体模型的非线性动力分析

S. M. T. Rahman
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引用次数: 0

摘要

土的屈服机制和地震荷载反应是研究的重点领域。非线性分析揭示了土体的真实特性。一团泥土用于分析。在本研究中,有限元模型(FEM)构成了数学公式的基础。集中质量情况下的土体分析考虑了土体的一自由度、二自由度和多自由度。为了确定MDOF的土壤特性,必须使用土壤钻孔测井。在MDOF的例子中,土壤由12个不同的层组成。本研究采用SAP 2000进行非线性时程分析。非线性弹性、全柔性土的滞回线发生永久变形。因此,通过对集块土体的研究,可以深入了解土体在地震过程中的行为。采用多种线性完全塑性滞回线研究了土体的非线性特性。土壤特性在这方面是至关重要的。土壤刚度不足可能导致持续变形,进而导致结构倾斜。还注意到,靠近土壤表面,放大是最大的。
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Nonlinear Dynamic Analysis of Lumped Soil Mass Model against Seismic Loading
Soil yielding mechanisms and seismic load responses are the key areas of study. The true behavior of soil is revealed by nonlinear analysis. A clump of dirt is used for the analysis. In this study, the Finite Element Model (FEM) forms the basis for the mathematical formulas. Soil analysis in the case of a lumped mass takes into account the soil's one DOF, two DOF, and multi DOF degrees of freedom. In order to determine soil characteristics for MDOF, a soil bore log must be employed. In the instance of MDOF, the soil is composed of 12 distinct layers. SAP 2000 is used to conduct a nonlinear time-history analysis for this research. The hysteresis loops of nonlinear elastic, completely flexible soil undergo permanent deformation. Therefore, it is possible to get insight into the behavior of soil mass during an earthquake by studying lumped soil mass. The soil's nonlinear behavior is investigated using a variety of linear completely plastic hysteretic loops. Soil characteristics are shown to be crucial in this regard. Inadequate soil stiffness may result in persistent deformation, which in turn can lead structures to lean out of alignment. It is also noted that near the soil's surface, amplification is greatest.
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