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Response of circular flexible foundations subjected to horizontal and rocking motions

机译:圆形柔性基础在水平和摇摆运动中的响应

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A methodology using modal analysis is developed to evaluate dynamic vertical displacements of a circular flexible foundation resting on soil media subjected to horizontal and rocking motions. The influence of the soil reaction forces on the foundation is considered by introducing modal impedance functions, which can be determined by an efficient procedure with ring elements. The displacements of the foundation can then be easily solved by modal superposition. Parametric studies for modal responses of the flexible foundation indicate that the coupled response of the foundation is significantly influenced by relative stiffness among the foundation and the soil medium, vibration frequency range, foundation mass, and boundary contact conditions. The welded boundary condition should be considered to predict the coupling response while the relaxed boundary condition may be used to predict approximately the vertical displacements. As a foundation with a relative stiffness ratio more than three, it is found that the foundation can be considered as rigid to calculate coupling displacements. For a slightly flexible foundation, considerations of three modes are sufficient enough to obtain accurate foundation responses. Moreover, at low frequencies, the coupling effect due to higher mode can be neglected. (C) 2014 Published by Elsevier Ltd.
机译:开发了一种使用模态分析的方法来评估圆形柔性地基在水平和摇摆运动下的土壤介质上的动态垂直位移。通过引入模态阻抗函数来考虑土壤反作用力对地基的影响,该模态阻抗函数可以通过使用环形单元的有效过程来确定。然后可以通过模态叠加轻松解决基础的位移。对柔性基础模态响应的参数研究表明,基础的耦合响应受基础与土壤介质之间的相对刚度,振动频率范围,基础质量和边界接触条件的影响很大。应考虑焊接边界条件以预测耦合响应,而松弛边界条件可用于近似预测垂直位移。作为具有大于3的相对刚度比的基础,可以发现该基础可以视为计算耦合位移的刚性。对于稍微灵活的基础,三种模式的考虑足以获得准确的基础响应。此外,在低频下,可以忽略由于较高模式引起的耦合效应。 (C)2014由Elsevier Ltd.出版

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