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Simulation procedure for the post-fire seismic analysis of reinforced concrete structural walls

机译:钢筋混凝土结构墙火灾后地震分析的模拟程序

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摘要

The impact of fire induced structural damage on the lateral load resistance of RC structures, particularly RC structural walls, is not well understood, but may be critical in the event of sequential fire-earthquake hazards. A simple verified simulation procedure for the post-fire seismic analysis of RC structural walls is necessary to advance the understanding of the post-fire seismic performance of RC structural walls. However, individual software programs which can do well in both thermal analysis and seismic analysis are not currently available. In this paper, a simulation procedure combining SAFIR and OpenSees is proposed for the post-fire seismic analysis of RC structural walls. The thermal analysis of a wall section is conducted in SAFIR while the seismic analysis of the fire-damaged wall is conducted in OpenSees based on the temperature data from SAFIR. The simulation method is verified by test data of RC walls under sequential fire-earthquake loads. The comparison of the numerical and experimental data demonstrated the capabilities of the simulation procedure to capture temperature distribution, stiffness and strength of flexure-controlled RC structural walls.
机译:火灾引起的结构破坏对RC结构(特别是RC结构墙)的侧向承载力的影响尚不十分清楚,但在连续发生火灾的情况下可能至关重要。一个简单的,经过验证的用于RC结构墙火灾后地震分析的模拟程序对于增进对RC结构墙火灾后地震性能的理解是必要的。但是,目前尚无法提供在热分析和地震分析中都能很好地完成的单独软件程序。本文提出了一种结合SAFIR和OpenSees的模拟程序,用于RC结构墙的火灾后地震分析。根据SAFIR的温度数据,在SAFIR中对墙段进行热分析,而在OpenSees中对火灾损坏的墙进行地震分析。通过连续地震荷载作用下钢筋混凝土墙的试验数据验证了该方法的正确性。数值和实验数据的比较表明,模拟程序能够捕获弯曲控制的RC结构墙的温度分布,刚度和强度。

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