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Analysis on dynamic failure behaviors of steel double-layer grids supported by tridimensional truss columns used in a gymnasium with the function of earthquake victims shelter under disaster earthquake

机译:灾难地震受害者避难所抗震桁架柱支护钢双层网格动态故障行为分析

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In this paper, the elasto-plastic dynamic analysis on dynamic failure behaviors of steel double-layer grids supported by tridimensional truss columns used in a gymnasium with the function of earthquake victims shelter under disaster earthquake is carried out under EL-centro wave with SAP2000, and the appraisal results on their anti-failure performances are presented under strong earthquake action based on the plastic-hinge theory. In the analyses, the geometric and material nonlinear effects are considered simultaneously based on the plastic-hinge theory. The plastic development level of the rod, the deformed shape and the failure type and the ductility are estimated by plastic hinge principle. The results show that the failure model of the structure under the earthquake wave action is the complicated combination of strength failure and elasto-plastic dynamic local buckling in deferent areas of the structure; When the structure reached its failure critical limit, the development of the plastic hinges is not sufficient and only 9.99% of the rods enter into their plastic stage; The ratio of its maximal failure node vertical displacement and its short span is 1/331, which can meet the need for flexible non-structural attachment; The ratio of its maximal failure node horizontal displacement and its columns is 1/166; Its critical failure peak acceleration of EL earthquake wave when applied in the combination of three directions is 602 gal, which is 1.5 times more than the official seismic fortification level of 8 degree (major earthquake, 0.2 g) and can be served as earthquake victims shelter in the area of 8 degree seismic fortification; Its displacement ductility coefficient is 5.65, which shows the structure owns good energy dissipation capacity.
机译:在本文中,在体育馆中使用的Tridimensional Truss柱支撑的钢双层网格动态故障行为的弹性塑料动力学分析在灾难地震下的抗震灾害下的避难所避难所下进行了SAP2000,基于塑料铰链理论,在强烈的地震行动下呈现了对抗失败表演的评估结果。在分析中,基于塑料铰链理论同时考虑几何和材料非线性效应。通过塑料铰链原理估算杆的塑料开发水平,变形的形状和破坏型和延展性。结果表明,地震波动作下结构的故障模型是结构的强度故障和弹塑性动态局部屈曲的复杂组合;当结构达到其故障临界限制时,塑料铰链的开发不足,只有9.99%的杆进入其塑料阶段;其最大故障节点垂直位移和其短跨度的比率为1/331,可以满足灵活的非结构附件的需求;其最大故障节点水平位移及其列的比率为1/166;其临界失效峰值加速EL地震波在三个方向的组合中施加的是602加仑,比官方地震强化水平超过8度的1.5倍(主要地震,0.2克),可以担任地震受害者庇护所在8度的地震抗救化面积;其位移延性系数为5.65,表示结构拥有良好的能量耗散能力。

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