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Analysis of restrained composite beams exposed to fire using a hybrid simulation approach

机译:混合仿真方法分析受约束的复合梁受火

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Obtaining an accurate simulation of the boundary conditions is very challenging but it is essential in order to represent the true behaviour of the whole structure in fire. In recent years, hybrid simulation has been emerging as an efficient and economical method for simulating realistic boundary conditions in the field of earthquake engineering. This technique can be used to study the load redistribution that may occur in a structural system as a result of locally elevated temperatures. In this paper, the fire-exposed element will be modelled in one analysis (a 3D model) and the rest of the structure in another analysis (a 2D model). This kind of sub-structuring enables the behaviour of the structural system as a whole to be studied. A hybrid simulation (HS) approach is presented and successfully implemented using the OpenFresco and OpenSees software. This approach enables the simulation of the correct restraint provided by the cold structure to the fire affected structural element. The HS analysis of a composite beam is compared with an unrestrained or simply supported version to highlight the difference in behaviour. Finally, the Cardington restrained beam test is modelled to demonstrate the potential of HS technique. Good agreement with the test results highlights that HS approach can be an effective method for studying the behaviour of the whole structural system.
机译:获得边界条件的准确模拟非常具有挑战性,但是对于表示整个结构在火灾中的真实行为,这是必不可少的。近年来,混合仿真已经成为一种在地震工程领域中模拟现实边界条件的有效且经济的方法。该技术可用于研究由于局部温度升高而在结构系统中可能发生的载荷重新分布。在本文中,将在一个分析(3D模型)中对火元素进行建模,而在另一分析(2D模型)中对结构的其余部分建模。这种子结构可以研究整个结构系统的行为。提出了一种混合仿真(HS)方法,并使用OpenFresco和OpenSees软件成功实现了该方法。这种方法能够模拟冷结构对火灾影响的结构元件提供的正确约束。将复合梁的HS分析与不受约束或仅受支持的版本进行比较,以突出表现方式上的差异。最后,对Cardington约束梁测试进行了建模,以证明HS技术的潜力。与测试结果的良好一致性表明,HS方法可以成为研究整个结构系统行为的有效方法。

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