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Vibration analysis of steel frames with semi-rigid connections on an elastic foundation

机译:弹性基础上半刚性连接钢框架的振动分析

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摘要

An investigation on the combined effect of foundation type, foundation flexibility, axial load and PR (semi-rigid) connections on the natural frequencies of steel frames is presented. These effects were investigated using a suitable modified FE program for cases where the foundation flexibility, foundation connectivity, and semi-rigid connections could be treated as equivalent linear springs. The effect of axial load on the natural frequency of a structure was found to be significant for slender structures subjected to high axial loads. In general, if columns of medium slenderness are designed without consideration of axial load effects, the frequency of the structure will be overestimated. Studies on the 3-story Los Angeles PR SAC frame indicate that the assumption of rigid connections at beam-column and column-base interfaces, as well as the assumption of a rigid foundation, can lead to significant errors if simplified design procedures are used. These errors in an equivalent static analysis are expected to lead to even more serious problems when considering the effect of higher modes under a non-linear dynamic analysis.
机译:研究了地基类型,地基挠性,轴向载荷和PR(半刚性)连接对钢框架固有频率的综合影响。使用适合的改良有限元程序对这些影响进行了研究,以用于将基础柔性,基础连接性和半刚性连接视为等效线性弹簧的情况。发现轴向载荷对结构固有频率的影响对于承受高轴向载荷的细长结构非常重要。通常,如果设计中等细长的立柱而没有考虑轴向载荷影响,则结构的频率将被高估。对三层Los Angeles PR SAC框架的研究表明,如果使用简化的设计程序,则在梁柱和柱基界面处采用刚性连接的假设以及在基础上采用刚性的假设都可能导致重大错误。当考虑非线性动态分析下更高模式的影响时,等效静态分析中的这些错误预计会导致更严重的问题。

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