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Numerical studies on the effect of plan irregularities in the progressive collapse of steel structures

机译:关于钢结构逐步崩溃效果的数值研究

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This research examines the effect of plan irregularities on the progressive collapse of four steel structures located in regions with different seismic activity. The plans of the first and second structure are irregular, whilst those of the third and fourth structures are regular. The collapse patterns of the four buildings are examined and compared under seven loading scenarios using non-linear dynamic and static analyses. In the non-linear dynamic analyses, node displacements above the removed columns and the additional force on the columns adjacent to them are discussed. Furthermore, the strength and capacities of the columns are compared to determine their susceptibility to collapse. In the non-linear static analyses, the pushdown curve and yield load factor of the structures are obtained after column removal. The results indicate that an irregular structure designed in site class C seismic zone, collapses in most of the column-removal scenarios. Moreover, when comparing regular and irregular structures designed in site class E seismic zone, the demand force to capacity ratio (D/C) of the columns in the irregular structures is on average between 1.5 and 2 times that of the regular ones.
机译:该研究探讨了计划不规则性对位于不同地震活动区域的四个钢结构的逐步崩溃的影响。第一和第二结构的计划是不规则的,而第三和第四结构的计划是常规的。使用非线性动态和静态分析,检查四个建筑物的崩溃模式,并在七种加载方案下进行比较。在非线性动态分析中,讨论了在移除的列上方的节点位移和与它们相邻的列上的附加力。此外,比较柱的强度和容量,以确定它们对塌陷的敏感性。在非线性静态分析中,在柱去除后获得结构的下推曲线和屈服载荷系数。结果表明,在现场C类地震区中设计的不规则结构,在大多数列移除场景中坍塌。此外,当比较现场C类地震区中设计的规则和不规则结构时,不规则结构中柱的柱子的需求力量(D / C)平均为常规的1.5至2倍。

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