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A non-iterative progressive collapse design method for RC structures based on virtual thermal pushdown analysis

机译:基于虚拟热推动分析的RC结构的非迭代逐步折叠设计方法

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Disproportionate progressive collapse is a structural failure mode with low probability and high consequences. Due to this nature, progressive collapse design is usually treated as a secondary design; namely, a design check after the design for primary loadings. Various design procedures have been recommended, notably the alternate load path method through nonlinear pushdown analyses. However, most of these design procedures are iterative by nature to satisfy the design acceptable criteria. To improve the design efficiency, this study presented an innovative design technique that allows to directly determine the proper amount of reinforcement in beams and slabs of a reinforced concrete (RC) structure in order to withstand the gravitational loads under column removal scenarios. Inspired from fire-induced progressive collapse research, the proposed method employs a virtual thermal pushdown analysis, in which the temperature increase affects only the strength of reinforced steel. With carefully developed strength-temperature relationships of the rebars, the virtual thermal analysis produces a displacement-temperature curve that represents the genuine nonlinear relationship between the amount of reinforcement and structural performance (often represented by vertical displacement). This curve is then used to directly determine the amount of reinforcement at the prescribed performance target. Two beam-column sub assemblage examples and the Alfred P. Murrah Federal Building were analyzed and redesigned to demonstrate the effectiveness of the proposed method. All three examples showed that the proposal virtual thermal pushdown method can accurately determine the appropriate amount of reinforcements to meet the performance target.
机译:不成比例的逐渐崩溃是具有低概率和高后果的结构故障模式。由于这种性质,渐进式崩溃设计通常被视为二级设计;即,在主负载设计后设计检查。建议使用各种设计程序,特别是通过非线性推动分析的备用负载路径方法。但是,大多数设计程序都是迭代的,以满足设计可接受的标准。为了提高设计效率,本研究提出了一种创新的设计技术,允许直接确定钢筋混凝土(RC)结构的梁和板坯中的适当加固量,以便在列移除场景下承受重力载荷。灵感来自于消防渐进式崩溃研究,所提出的方法采用虚拟热推动分析,其中温度升高仅影响强化钢的强度。通过仔细开发钢筋的强度温度关系,虚拟热分析产生位移温度曲线,该曲线表示增强和结构性能的量(通常由垂直位移表示)之间的真正非线性关系。然后使用该曲线直接确定规定的性能靶标的增强量。分析了两个光束柱子组合例和Alfred P.Murrah联邦建筑并重新设计以证明该方法的有效性。所有三个例子表明,该提案虚拟热下推方法可以准确地确定适当的增强件,以满足性能目标。

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