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Membrane actions of RC slabs in mitigating progressive collapse of building structures

机译:RC平板在减轻建筑结构逐渐倒塌中的膜作用

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Potential for progressive collapse of RC buildings can be studied using sudden column loss scenarios. The loss of either a penultimate-internal (PI) column or a penultimate-external (PE) column is among the most critical scenarios since it leaves the associated beam-and-slab substructures laterally unrestrained. At large deformations, the membrane behaviour of the affected slabs, consisting of a peripheral compres-sive ring of concrete supporting tensile membrane action in the central region, represents an important line of defence against progressive collapse. In this paper, an advanced finite element model (FEM). which has been validated by available test data, is used to investigate the membrane behaviour in laterally unrestrained slabs associated with PI column loss in the presence of interior double-span beams, rotational restraints along the perimeter edges, and the slab top reinforcement. It has been shown that in the central region, greater tensile membrane forces are mobilised due to the participation of beam reinforcement and slab top reinforcement. In the outer region, the compressive ring of concrete is also strengthened by slab hogging moment. Hence, the overall load-carrying capacity of the affected structures can be enhanced significantly to sustain the gravity applied loads which are severely amplified by both double-span effect and dynamic effect.
机译:RC建筑物逐渐倒塌的可能性可以使用突然的柱损失场景进行研究。倒数第二个内部(PI)列或倒数第二个外部(PE)列的丢失是最关键的情况,因为它使相关的梁板基础结构横向不受约束。在大的变形下,受影响的平板的膜性能由在中心区域支持抗拉膜作用的混凝土外围压环组成,是抵抗渐进倒塌的重要防御线。本文提出了一种先进的有限元模型(FEM)。通过可用的测试数据进行了验证,该模型用于研究在存在内部双跨梁,沿周边边缘的旋转约束以及平板顶部钢筋的情况下,与PI柱损失相关的横向无约束平板的膜性能。已经表明,由于梁加强件和平板顶部加强件的参与,在中央区域动员了更大的拉伸膜力。在外部区域,板坯的弯矩也增强了混凝土的抗压强度。因此,可以显着增强受影响结构的整体承载能力,以承受重力施加的载荷,该载荷通过双跨度效应和动态效应而严重放大。

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