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Nonlinear interaction behaviour of plane frame-layered soil system subjected to seismic loading

机译:地震作用下平面框架层状土体系的非线性相互作用行为

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摘要

The foundation of a tall building frame resting on settable soil mass undergoes differential settlements which alter the forces in the structural members significantly. For tall buildings it is essential to consider seismic forces in analysis. The building frame, foundation and soil mass are considered to act as single integral compatible structural unit. The stress-strain characteristics of the supporting soil play a vital role in the interaction analysis. The resulting differential settlements of the soil mass are responsible for the redistribution of forces in the superstructure. In the present work, the nonlinear interaction analysis of a two-bay ten-storey plane building frame- layered soil system under seismic loading has been carried out using the coupled finite-infinite elements. The frame has been considered to act in linear elastic manner while the soil mass to act as nonlinear elastic manner. The subsoil in reality exists in layered formation and consists of various soil layers having different properties. Each individual soil layer in reality can be considered to behave in nonlinear manner. The nonlinear layered system as a whole will undergo differential settlements. Thus, it becomes essential to study the structural behaviour of a structure resting on such nonlinear composite layered soil system. The nonlinear constitutive hyperbolic soil model available in the literature is adopted to model the nonlinear behaviour of the soil mass. The structural behaviour of the interaction system is investigated as the shear forces and bending moments in superstructure get significantly altered due to differential settlements of the soil mass.
机译:搁置在可固定土壤上的高大建筑框架的基础会经历不同的沉降,这会显着改变结构构件中的力。对于高层建筑,必须在分析中考虑地震力。建筑框架,地基和土壤质量被认为是单个整体兼容的结构单元。支撑土的应力应变特性在相互作用分析中起着至关重要的作用。产生的不同的土壤质量沉降是上层建筑中力的重新分布的原因。在目前的工作中,已经使用耦合有限元-无限元对两湾十层平面建筑物框架层状土体系在地震作用下的非线性相互作用进行了分析。框架被认为以线性弹性方式起作用,而土壤块以非线性弹性方式起作用。实际上,地下土壤以分层形式存在,并且由具有不同特性的各种土壤层组成。现实中的每个土壤层都可以视为非线性行为。整个非线性分层系统将经历微分沉降。因此,研究基于这种非线性复合层状土壤体系的结构的结构特性变得至关重要。采用文献中可用的非线性本构双曲线土模型来模拟土体的非线性行为。研究了相互作用系统的结构行为,原因是上部结构中的剪切力和弯矩由于土壤质量的不同沉降而发生了显着变化。

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