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首页> 外文期刊>Journal of intelligent & fuzzy systems: Applications in Engineering and Technology >Spatial nonlinear simulation analysis of progressive collapse resistance of RC frame structure under different seismic precautionary
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Spatial nonlinear simulation analysis of progressive collapse resistance of RC frame structure under different seismic precautionary

机译:不同地震预防率下RC框架结构逐步塌陷抗性的空间非线性模拟分析

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Based on the 3D virtual laminated element and considering the beam-slab-column collaboration, this paper conducts the nonlinear infinite laminated element analysis of three reinforced concrete (R. C.) space frame structural models with different seismic precautionary, respectively, after single-column failure and collapse calculation analysis and method verification of a two-bay and four-floor R. C. space frame. Analysis results show that: 1) with the increase of the seismic precautionary intensity, the space stiffness of the frame structure when collapsing as a whole increases, and the collapse mode transfers from the "slow changing" to the "abrupt changing;" 2) the higher the seismic precautionary intensity is, the stronger the vertical progressive collapse resistance capability of the structure is; 3) the floorslab membrane effect can delay the appearance of the beam's catenary effect, but enhance the framed beam-to-floorslab membrane stress mechanism and the catenoid mechanism; the slab-framed beam collaboration can increase the vertical progressive collapse capability in the catenary (catenoid) period.
机译:基于3D虚拟层压元件并考虑光束平板柱协作,分别在单柱故障后分别具有不同地震预防措施的三种钢筋混凝土(RC)空间框架结构模型的非线性无限层压元件分析双托架和四层RC空间框架的折叠计算分析与方法验证。分析结果表明:1)随着地震预期强度的增加,框架结构的空间刚度随着整体塌陷时,塌陷模式从“缓慢变化”转移到“突然变化”。 2)地震预防强度越高,结构的垂直渐进塌陷能力越强; 3)煤层膜效果可以延迟梁的凸起效果的外观,但增强了框架梁 - 落地膜应力机构和裂缝机构;平板框架的光束协作可以增加囊网(Catenoid)期间的垂直渐进塌陷能力。

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