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Significance of non-classical damping in seismic qualification of equipment and piping

机译:非经典阻尼在设备和管道抗震鉴定中的意义

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摘要

This paper presents a discussion on the significance of non-classical damping in coupled primary-secondary systems such as building-equipment or building-piping. Closed-form expressions are used to illustrate that the effect of non-classical damping is significant in systems with tuned or nearly tuned uncoupled modes when the mass-interaction is sufficiently small. Further, simple primary-secondary systems are used to illustrate that composite modal damping is another form of classical damping for which the transformed damping matrix, obtained after pre- and post-multiplication of the damping matrix with the modal matrix, contains only diagonal terms. Both the composite and the classical damping give almost identical results that can be much different from the corresponding results for non-classical damping. Finally, it is shown that consideration of classical damping (ignoring the off-diagonal terms) can give excessively conservative results in nearly tuned primary-secondary systems. For perfectly tuned primary-secondary systems, however, classical damping can give responses that are much lower than what they should be. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文讨论了在诸如建筑设备或建筑管道系统之类的初级-次级系统中非经典阻尼的重要性。闭合形式的表达式用于说明当质量相互作用足够小时,非经典阻尼的影响在具有已调谐或近乎调谐的未耦合模式的系统中很明显。此外,简单的一次-二次系统用于说明复合模态阻尼是经典阻尼的另一种形式,为此,在将阻尼矩阵与模态矩阵进行预乘和后乘后获得的变换阻尼矩阵仅包含对角项。复合阻尼和经典阻尼都给出几乎相同的结果,这与非经典阻尼的相应结果有很大不同。最后,表明在经典调谐的初级-次级系统中考虑经典阻尼(忽略非对角线项)会产生过于保守的结果。但是,对于调谐良好的一次-二次系统,经典阻尼所产生的响应将大大低于其应有的响应。 (C)2017 Elsevier B.V.保留所有权利。

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