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首页> 外文期刊>Journal of Civil Engineering and Management >AN INVESTIGATION OF THE EFFECTIVENESS OF THE FRAMING SYSTEMS IN STEEL STRUCTURES SUBJECTED TO BLAST LOADING
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AN INVESTIGATION OF THE EFFECTIVENESS OF THE FRAMING SYSTEMS IN STEEL STRUCTURES SUBJECTED TO BLAST LOADING

机译:爆炸荷载作用下钢结构框架系统的效率研究

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摘要

The effectiveness of different framing systems for three seismically designed steel frame structures subjected to blast loading is investigated. The three faming systems considered are: a moment resisting frame (MRF), a concentrically braced frame (CBF) and an eccentrically braced frame (EBF). The blast loads are assumed to be unconfined, free air burst detonated 15 ft (4.572 m) from one of the center columns. The structures are modeled and analyzed using the Applied Element Method, which allows the structure to be evaluated during and through failure. Failure modes are investigated through a plastic hinge analysis and member failure comparison. Also, a global response analysis is observed through comparison of roof deflections and accelerations. A conclusion of this research is that braced frames provide a higher level of resistance to the blast loading scenario investigated in this research. Both the CBF and EBF had a smaller number of failed members and plastic hinges compared to the MRF. They also had smaller roof deflection and acceleration. The CBF yielded the fewest number of plastic hinges but the EBF had a slightly fewer number of failed members.
机译:研究了三种框架在爆炸荷载作用下抗震设计的不同框架系统的有效性。所考虑的三个框架系统是:抗弯框架(MRF),同心支撑框架(CBF)和偏心支撑框架(EBF)。假定爆炸载荷是不受限制的,自由空气爆发是从其中一根中柱引爆15英尺(4.572 m)。使用“应用元素方法”对结构进行建模和分析,该方法允许在故障期间和通过故障进行评估。通过塑性铰链分析和构件失效比较研究失效模式。此外,通过比较屋顶的挠度和加速度可以观察到整体响应分析。这项研究的结论是,支撑框架对本研究中所研究的爆炸载荷场景具有更高的抵抗力。与MRF相比,CBF和EBF的失效构件和塑料铰链数量更少。他们还具有较小的屋顶挠度和加速度。 CBF产生的塑料铰链数量最少,但EBF的失效构件数量略少。

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