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首页> 外文期刊>Practice periodical on structural design and construction >Effects of Soil-Structure Interaction on Dynamic Response of Framed Machine Foundation Resting on Raft and Piles
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Effects of Soil-Structure Interaction on Dynamic Response of Framed Machine Foundation Resting on Raft and Piles

机译:土壤 - 结构相互作用对筏子和桩上框架机基础动态响应的影响

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摘要

Framed-foundations supporting rotary machines are either supported on a raft foundation or on a pile foundation, depending on the type of soil conditions, loadings, and other functioning requirements. Influence of soil-structure interaction (SSI) is either completely neglected or rigorously considered in the practice. Neglecting the SSI may not always be safe, and on the other hand, rigorous analyses are computationally expensive. In this paper, the SSI problem in the machine foundation is formulated using an analytical model with a lumped-mass approach and the results are compared with a three-dimensional (3D) finite-element (FE) model. The results obtained through the FE modeling technique are validated using existing results and then adopted in further analysis. From the results, it is found that simplified methods can be used for foundations resting on rock-to-dense-soil condition; however, the FE analysis is mandatory in the case of stiff-to-soft-soil conditions. It is also observed that the effects of SSI reduce the natural frequency significantly in the case of a raft-supported framed-foundation resting on soft soil strata. Pile-supported framed-foundations are considered to be a better solution in the case of soft soil conditions to control the vibrations of the framed-foundation in comparison with the raft foundations. The suitability of each foundation type for different soil conditions for limiting the displacement within the permissible values is also discussed.
机译:支撑旋转机器的框架基础支撑在木筏基础上或桩基上,取决于土壤条件,装载和其他功能要求的类型。土壤结构相互作用(SSI)的影响在实践中完全被忽视或严格考虑。忽视SSI可能并不总是安全的,另一方面,严格的分析是计算昂贵的。在本文中,使用具有集总质量方法的分析模型制定机基础中的SSI问题,并将结果与​​三维(3D)有限元(FE)模型进行比较。通过Fe模型技术获得的结果使用现有结果进行验证,然后在进一步的分析中采用。从结果中,发现简化的方法可用于基于岩石 - 致密土壤状态的基础;然而,在僵硬于软土地条件的情况下,Fe分析是强制性的。还观察到SSI的影响在软土层上休息的筏板支撑的框架基础的情况下显着降低了自然频率。桩支撑的框架基础被认为是在软土条件的情况下是更好的解决方案,以控制框架基础的振动与木筏基础相比。还讨论了用于限制允许值内的不同土壤条件的每个基础类型的适用性。

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