首页> 外文会议>35th International conference on ocean, offshore and arctic engineering 2016 >PROGRESSIVE COLLAPSE ANALYSIS OF A MEDIUM-RISE CIRCULAR RC BUILDING AGAINST BLAST LOADS
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PROGRESSIVE COLLAPSE ANALYSIS OF A MEDIUM-RISE CIRCULAR RC BUILDING AGAINST BLAST LOADS

机译:爆炸荷载作用下中型圆形钢筋混凝土建筑的渐进倒塌分析

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This paper investigates the vulnerability of a typical medium-rise circular RC building against progressive collapse as a result of blast generated waves. The building is an eight storied (including one story basement) commercial complex. The likely blast threat scenario was identified by qualitatively assessing the vulnerability of the critical elements of the structure. LS-DYNA was used for the finite element modelling of the structure. The study presents local model analysis of one of its circular columns for which fluid-structure interaction through Alternate Lagrangian Eulerian (ALE) element formulation has been employed. The concrete volume in the columns was modeled using 8-node reduced integration solid hexahedron elements. The global model analysis was carried out to examine the overall response of the structure due to the failure of one of the critical columns. The building was modeled using beam and shell elements. The 2-node axial beam elements with tension, compression, torsion, and bending capabilities were employed to represent the RC beams and columns, whereas the four node quadrilateral and three node triangular shell elements were used to represent the core wall, floor slabs, retaining walls and facade. The column bases of the building were fixed at the level of raft slab. The results of the study are proposed to be used to control or prevent progressive collapse of RC buildings.
机译:本文研究了典型的中层圆形RC建筑物抵御爆炸产生的波浪导致的逐步倒塌的脆弱性。该建筑是一个八层(包括一个地下室)的商业综合体。通过定性评估结构关键要素的脆弱性,确定了可能的爆炸威胁情景。 LS-DYNA用于结构的有限元建模。这项研究提出了一种圆形圆柱的局部模型分析,其中通过交替拉格朗日欧拉(ALE)元素配方进行了流固耦合。圆柱中的混凝土体积是使用8节点简化积分的固体六面体单元建模的。进行了全局模型分析,以检查由于关键列之一发生故障而导致的结构的整体响应。该建筑使用梁和壳单元进行建模。具有拉力,压缩,扭转和弯曲能力的2节点轴向梁单元用于表示RC梁和柱,而四节点四边形和三节点三角形壳单元用于表示核心墙,楼板,挡土墙墙壁和门面。建筑物的柱基固定在木筏板的高度。建议将研究结果用于控制或防止钢筋混凝土建筑物逐渐倒塌。

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