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Comparative study on the behaviour of Buckling Restrained Braced frames at fire

机译:火灾时屈曲约束支撑框架性能的比较研究

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In this paper, the use of Buckling Restrained Brace systems (BRBs) in preventing the progressive collapse of the structural frame against fire is investigated using the stiffness reduction technique. Four-storey steel structures fitted with different bracing configurations were modelled using the Vulcan programme. For comparative purpose, the efficiency of BRBs in preventing the progressive collapse of the structure is compared with the Ordinary Concentrically Brace systems (OCBs) in the presence of edge and central bay fire exposures. In order to consider the effect of bracing member stiffness on the collapse prevention of the frame and to provide a comprehensive scheme of progressive collapse mechanism under fire condition, several cross sections of BRBs under different fire scenarios are considered. The results indicate that BRBs provide a higher global collapse temperature for the frame, owing to a greater stiffness and more symmetrical performance offered as compared to OCBs, and thus providing better progressive collapse resistance. Moreover, it is observed that BRBs are stiff enough to redistribute the sustained load by heated columns to adjacent members without any buckling occurrence in the bracing member, maintaining the stability of the whole frame through both heating and cooling phases of fire.
机译:在本文中,使用刚度降低技术研究了屈曲约束支撑系统(BRB)在防止结构框架逐渐塌陷以防止火灾中的使用。使用Vulcan程序对装有不同支撑配置的四层钢结构进行了建模。为了进行比较,将BRB防止结构逐渐倒塌的效率与存在边缘和中央海湾火灾的普通同心支撑系统(OCB)进行了比较。为了考虑支撑构件刚度对框架防倒塌的影响,并提供一种在火灾条件下渐进倒塌机制的综合方案,考虑了在不同火灾情况下BRB的几个横截面。结果表明,与OCB相比,BRB具有更高的刚度和更对称的性能,从而为框架提供了更高的整体塌陷温度,从而提供了更好的渐进抗塌陷性。此外,可以观察到,BRB的刚度足以将受热柱子承受的载荷重新分配给相邻的构件,而在支撑构件中不会发生任何弯曲,从而在火的加热和冷却阶段都保持了整个框架的稳定性。

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