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Combination rules and critical seismic response of steel buildings modeled as complex MDOF systems

机译:建模为复杂MDOF系统的钢结构建筑物的组合规则和临界地震响应

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The Maximum seismic responses of steel buildings with perimeter moment resisting frames (MRF), modeled as complex MDOF systems, are estimated for several incidence angles of the horizontal components and the critical one is identified. The accuracy of the existing rules to combine the effects of the individual components is also studied. Two and three components are considered. The critical response does not occur for principal components and the corresponding incidence angle varies from one earthquake to another. The critical response can be estimated as 1.40 and 1.10 times that of the principal components, for axial load and interstory shears, respectively. The rules underestimate the axial load but reasonably overestimate the shears. The rules are not always inaccurate in the estimation of the combined response for correlated components. On the other hand, totally uncorrelated (principal) components are not always related to an accurate estimation. The correlation of the individual effects (rho) may be significant, even for principal components. The rules are not always associated to an inaccurate estimation for large values of rho, and small values of rho are not always related to an accurate estimation. Only for perfectly uncorrelated harmonic excitations and elastic analysis of SDOF systems, the individual effects of the components are uncorrelated and the rules accurately estimate the combined response. The degree of correlation of the components, the type of structural system, the response parameter under consideration, the location of the structural member and the level of structural deformation must be considered while estimating the level of underestimation or overestimation.
机译:对于水平分量的多个入射角,估计了以复杂的MDOF系统为模型的,具有抗弯矩框架(MRF)的钢结构建筑物的最大地震响应,并确定了关键的一个。还研究了现有规则结合各个组件的影响的准确性。考虑了两个和三个组成部分。对于主要成分不会发生临界响应,并且相应的入射角会因一次地震而发生变化。对于轴向载荷和层间剪力,临界响应可以分别估计为主要成分的1.40倍和1.10倍。规则低估了轴向载荷,但合理地高估了剪力。在估计相关组件的组合响应时,规则并非总是不准确。另一方面,完全不相关的(主要)成分并不总是与精确的估计相关。即使对于主要成分,各个效应(rho)的相关性也可能很重要。对于大的rho值,规则并不总是与不准确的估计相关,对于小数值的rho并不总是与准确的估计相关。仅对于完全不相关的谐波激励和SDOF系统的弹性分析,组件的各个作用是不相关的,并且规则可以准确地估计组合响应。在估计低估或高估水平时,必须考虑组件的相关程度,结构系统的类型,所考虑的响应参数,结构构件的位置以及结构变形的水平。

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