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A method for hybrid fire testing: Development, implementation and numerical application

机译:一种混合火力测试方法:开发,实现和数值应用

摘要

Hybrid Fire Testing (HFT) is a technique that allows assessing experimentally the fire performance of a structural element under real boundary conditions that capture the effect of the surrounding structure. To enable HFT, there is a need for a method that is unconditionally stable, ensures equilibrium and compatibility at the interface and captures the global behaviour of the analysed structure. A few attempts at conducting HFT have been described in the literature, but it can be shown, based on the analytical study of a simple one degree-of-freedom elastic system, that the considered method was fundamentally unstable in certain configurations which depend on the relative stiffness between the two substructures, but which cannot be easily predicted in advance. In this paper, a new method is introduced to overcome the stability problem and it is shown through analytical developments and applicative examples that the stability of the new method does not depend on the stiffness ratio between the two substructures. The new method is applied in a virtual hybrid test on a 2D reinforced concrete beam part of a moment resisting frame, showing that stability, equilibrium and compatibility are ensured on the considered multiple degree-of-freedom system. Besides, the virtual HFT succeeds in reproducing the global behaviour of the analysed structure. The method development and implementation in a virtual (numerical) setting is described, the next step being its implementation in a real (laboratory) hybrid test.
机译:混合耐火测试(HFT)是一项技术,可以通过实验评估结构元素在捕获周围结构影响的真实边界条件下的耐火性能。为了实现HFT,需要一种无条件稳定的方法,确保界面处的平衡和兼容性,并捕获所分析结构的整体行为。在文献中已经描述了进行高频振动的一些尝试,但是基于对一个简单的单自由度弹性系统的分析研究,可以表明,所考虑的方法在某些构造上根本不稳定,具体取决于构造。两个子结构之间的相对刚度,但不能轻易预先预测。本文介绍了一种克服稳定性问题的新方法,并通过分析开发和应用实例表明,该方法的稳定性不取决于两个子结构之间的刚度比。将该新方法应用于抗弯框架的二维钢筋混凝土梁部分的虚拟混合试验中,表明在考虑的多自由度系统上可以确保稳定性,平衡性和相容性。此外,虚拟HFT成功地再现了所分析结构的全局行为。描述了在虚拟(数字)设置中的方法开发和实现,下一步是在实际(实验室)混合测试中的实现。

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