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Probabilistic evaluation of combination rules for seismic force demands from orthogonal ground motion components

机译:正交地震动分量对地震力需求的组合规则的概率评估

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摘要

A probabilistic approach to assessing the effectiveness of the rules used to combine demands from orthogonal ground motion components is developed. Full probability distributions of the ratio between the force demands obtained from nonlinear response history analyses using bidirectional loading, which are taken as the “true” demands, and rule-based combinations of the demands from unidirectional loading, are developed. For the percentage combination rules (100-p), a relationship is established between the value ofp(e.g.p = 30%for100–30rule) and the probability that the bidirectional loading demands exceed the rule-based combination of the unidirectional loading demands. Using this relationship, an appropriate value ofpbased on an acceptable exceedance probability is determined. The proposed framework is demonstrated using special concentric braced frames with biaxially loaded columns, which are shared by orthogonal braced frames. The combinatorial effect of the orthogonal responses is found to be influenced by several factors including the type of demand parameter (e.g. column axial forces versus stresses), demand level and building height.
机译:开发了一种概率方法来评估用于组合正交地面运动分量的需求的规则的有效性。从使用双向载荷的非线性响应历史分析获得的力需求之间的比率的比例的全概率分布(被视为“真实”需求),并开发了基于规则的来自单向载荷的需求组合。对于百分比组合规则(100-p),在p的值(例如对于100–30规则p = 30%)与双向载荷需求超出单向载荷需求的基于规则的组合的概率之间建立了关系。使用该关系,基于可接受的超出概率确定适当的p值。使用带有双轴加载柱的特殊同心支撑框架演示了所提出的框架,这些框架由正交支撑框架共享。发现正交响应的组合效果受几个因素的影响,包括需求参数的类型(例如,圆柱轴向力与应力),需求水平和建筑物高度。

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