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A comprehensive study on the influence of strength and stiffness eccentricities to the on-plan rotation of asymmetric structure

机译:关于不对称结构强度和刚度偏心影响的综合研究

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All buildings are subjected to some degree of torsion which in turn changes the member torsional demands from that of translation only. Torsional effects on buildings subjected to earthquakes are not found directly in structural analysis unless full three-dimensional inelastic dynamic time history analysis is conducted. Since design is often conducted using two-dimensional analysis, these effects are not directly considered. There is currently an understanding on how different factors may influence torsion, however, the degree to which these factors influence torsion is relatively unknown. Slab rotation effect is considered a major response parameter to represent the severity of the torsional response of eccentric systems; hence, it is considered in this study. The centre of strength (CR) and centre of stiffness (CS) are the two main factors under considerations. A comprehensive analysis on eighty different CR and CS conditions are applied to a three-dimensional, asymmetric building and their influences to slab rotation are observed. The CR/CS conditions are applied by varying strength eccentricities (er) and stiffness eccentricities (es) using two condition models. Then, earthquake ground motions are applied in z-direction under elastic and inelastic conditions. The results interpreted using a simple approach shows important slab rotation behaviour that forms interesting findings from this study. The slab rotation demand is found to reduce as strength eccentricity moves away from the Centre of Mass (CoM) but is independent of the stiffness eccentricity. The study also confirms finding of previous works which states that stiffness eccentricity plays a minor role when assessing the torsional behaviour of a ductile systems. Results from inelastic analysis shows slab rotation demand increases as strength eccentricity is closer to the CoM but it remains constant for elastic analysis.
机译:所有建筑物都受到一定程度的扭转,反过来改变了只改变翻译的扭转需求。除非进行完整的三维非弹性动态动态时间历史分析,否则不会在结构分析中直接发现对受地震的建筑物的扭转效应。由于设计通常使用二维分析进行,因此不会直接考虑这些效果。目前有关于不同因素可能影响扭转的因素,这些因素影响扭转的程度是相对未知的。板坯旋转效应被认为是表示偏心系统的扭转响应的严重性的主要响应参数;因此,在这项研究中考虑。强度(Cr)和刚度中心(CS)是所考虑的两个主要因素。对八十不同CR和CS条件的综合分析应用于三维,非对称建筑物,并且观察到它们对平板旋转的影响。使用两个条件模型,通过改变强度偏心(ER)和刚度偏心(ES)来施加Cr / CS条件。然后,在弹性和非弹性条件下在Z方向上施加地震地面运动。使用简单方法解释的结果显示了从本研究中形成有趣的结果的重要组合旋转行为。发现板坯旋转需求减少,因为强度偏心远离质量(COM)移动而是独立于刚度偏心。该研究还证实了先前的作品,这些作品指出,在评估延性系统的扭转行为时,刚度偏心率在评估延性行为时起着次要作用。非弹性分析的结果显示平板旋转需求随着强度偏心越近于COM而且对弹性分析保持不变。

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