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Numerical analysis on interaction of frame-tube, raft foundation and ground

机译:框架管,筏板基础与地基相互作用的数值分析

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Based on real projects, a three-dimensional analysis model of 19 stories frame-tube superstructure, raft foundation and ground interaction system is established by the FEM software ANSYS to analyze the interaction characteristics under the vertical load. At the same time, the conventional analyse model is also established. The superstructure's and raft foundation's internal force, as well as foundation settlement, analyzed by the interaction model and the conventional model are compared. The influences of the variation of raft thickness and ground rigidity to the interaction system are investigated. The results show that obvious differences exist in the superstructure's and raft foundation's internal force and foundation settlement between the two models. The increase of raft thickness may reduce the differential settlement, but simultaneously increase the internal force of foundation. As the raft thickness increasing, its effects of reducing the additional force of superstructure become weaker and weaker. The effects of reducing the superstructure additional force by increasing ground rigidity are also limited.
机译:在实际工程的基础上,利用有限元软件ANSYS建立了19层框架-上部结构,筏板基础与地面相互作用系统的三维分析模型,以分析竖向荷载作用下的相互作用特性。同时,建立了常规分析模型。比较了相互作用模型和常规模型对上部结构和筏板基础的内力以及基础沉降的影响。研究了筏板厚度和地面刚度变化对相互作用系统的影响。结果表明,两种模型在上部结构和筏板基础的内力和基础沉降上存在明显的差异。筏板厚度的增加可能会减少差异沉降,但同时会增加基础的内力。随着木筏厚度的增加,其减小上部结构的附加力的作用变得越来越弱。通过增加地面刚度来减小上部结构附加​​力的效果也受到限制。

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