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Modeling thermo-mechanical behavior of concrete-filled steel tube columns with solid steel core subjected to fire

机译:火灾下实心钢芯钢管混凝土柱的热力学行为建模

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Concrete-filled steel tube columns with solid steel core are increasingly used in high-rise building practice due to their high load-bearing capacity and exceptional structural fire behavior. Simulating the structural fire behavior of these innovative composite columns by means of advanced numerical models is a promising tool to achieve an enhanced understanding of the basic thermo-mechanical behavior observed in costly full-scale fire tests, and eventually, to partially replace them. Moreover, the data necessary for the development of a simplified fire design method can be compiled from a parametric study with such models. This paper presents an advanced nonlinear Finite-Element-Method model that incorporates complex experimental calibration data and therefore can robustly simulate various full-scale fire tests of this type of composite columns. Furthermore, tracking in the model the load share redistribution processes between the different components, confirms the innovative design concept of the structural fire behavior of this type of composite column. Finally, a simplified model version that qualifies for partial replacement of full-scale fire tests or use in both a parametric study and advanced structural design is presented and conditionally validated. (C) 2017 Elsevier Ltd. All rights reserved.
机译:具有实心钢芯的钢管混凝土柱由于其高承载能力和出色的结构防火性能而越来越多地用于高层建筑实践中。通过先进的数值模型模拟这些创新的复合材料柱的结构火灾行为是一种有前途的工具,可以帮助您更好地了解在昂贵的全面火灾测试中观察到的基本热机械行为,并最终部分替代它们。此外,可以从使用此类模型的参数研究中收集开发简化的消防设计方法所需的数据。本文提出了一种先进的非线性有限元方法模型,该模型结合了复杂的实验校准数据,因此可以稳健地模拟此类复合柱的各种全尺寸火灾测试。此外,在模型中跟踪不同组件之间的载荷分担重新分配过程,证实了这种类型的复合柱结构火灾行为的创新设计理念。最后,提出并有条件地验证了简化的模型版本,该模型版本有资格部分替换全面的耐火测试或用于参数研究和高级结构设计中。 (C)2017 Elsevier Ltd.保留所有权利。

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