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A simplified model for the post-fire earthquake flexural response of reinforced concrete walls with boundary elements

机译:具有边界元的钢筋混凝土墙火灾后地震响应的简化模型

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摘要

A potential multi-hazard scenario for buildings is the sequential occurrence of fire and earthquakes, with such a scenario possible if a fire is triggered by an initial seismic event and a subsequent aftershock occurs. With fire negatively influencing the stiffness, strength, and deformation capacity of structural components, the building may be at risk for local or global collapse. The key role of reinforced concrete (RC) walls as lateral load resisting components make them of particular importance in considering the post-fire earthquake performance of buildings. Since the risk of fire-earthquake hazards is low, simplified models are needed to efficiently evaluate building performance. In this paper, a framework for simplified nonlinear modeling of RC walls is presented. The models are defined by modification factors that account for the change in wall response relative to that of a wall without fire damage. Modification factors, established from the results of a parameter study of walls using a verified simulation method, are a function of fire damage indices that account for the effect of fire on the material properties of steel and concrete. The dependence of wall response on most wall characteristics is eliminated by use of the damage indices, with the recommended modification factors dependent on the fire damage index and axial load alone.
机译:建筑物潜在的多灾种情况是火灾和地震相继发生,如果最初的地震事件引发火灾并随后发生余震,则这种情况是可能的。由于火灾会对结构部件的刚度,强度和变形能力产生负面影响,因此建筑物可能会遭受局部或整体倒塌的危险。钢筋混凝土(RC)墙作为抗侧向荷载组件的关键作用使其在考虑建筑物的火灾后地震性能方面具有特别重要的意义。由于火灾的危险性很低,因此需要简化的模型来有效地评估建筑性能。本文提出了一种简化的RC墙非线性建模框架。这些模型是由修正因子定义的,这些修正因子说明了墙壁响应相对于没有火灾损坏的墙壁的响应的变化。修正系数是根据使用经过验证的模拟方法对墙进行的参数研究结果确定的,是火灾破坏指数的函数,该指数说明了火灾对钢材和混凝土材料性能的影响。墙体响应对大多数墙体特性的依赖性通过使用破坏指数消除,建议的修改因子仅取决于火灾破坏指数和轴向载荷。

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