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A practical methodology for optimum seismic design of RC frames for minimum damage and life-cycle cost

机译:RC框架最佳抗震设计的实用方法,可将损坏和生命周期成本降至最低

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摘要

The design criteria in current seismic design codes are mainly to control lateral displacements and provide adequate strength to sustain expected design load combinations. However, to achieve the most economic design solutions, the life-cycle total cost (TLCC), which includes both initial structural cost and expected damage cost, should be also considered for the probable earthquakes during the lifetime of the structure. In the present study, the TLCC of the buildings is used as the main objective function for optimum seismic design of reinforced concrete (RC) frames. First, it is demonstrated that the blind increase of the reinforcement ratios does not necessarily reduce the displacement demands and the damage costs. Subsequently, a practical methodology is developed for the optimum seismic design of RC frames based on the concept of uniform damage distribution (UDD). Using an adaptive iterative procedure, the distribution of inter-storey drifts and TLCC of the floors is modified along the height of the structure. To demonstrate the efficiency of the method, 5, 8 and 12 storey RC frames are optimized using the proposed algorithm. The results indicate that, while all predefined performance targets are satisfied, the maximum inter-storey drift ratio and TLCC of the frames are considerably reduced (up to 56% and 45%, respectively) only after a few steps. The proposed method should prove useful for more efficient performance-based design of RC frames in practice.
机译:当前地震设计规范中的设计标准主要是为了控制横向位移并提供足够的强度以承受预期的设计载荷组合。但是,为了获得最经济的设计解决方案,还应考虑结构寿命期间可能发生的地震的生命周期总成本(TLCC),其中包括初始结构成本和预期的破坏成本。在本研究中,建筑物的TLCC用作钢筋混凝土(RC)框架最佳抗震设计的主要目标函数。首先,证明了加强比的盲目增加并不一定减少位移需求和破坏成本。随后,根据均匀损伤分布(UDD)的概念,开发了一种用于RC框架最佳抗震设计的实用方法。使用自适应迭代过程,沿着结构的高度修改楼层间的漂移和TLCC的分布。为了证明该方法的有效性,使用所提出的算法优化了5、8和12层的RC帧。结果表明,在满足所有预定义的性能目标的同时,仅经过几步即可最大程度降低帧的最大层间漂移率和TLCC(分别高达56%和45%)。实践证明,所提出的方法对于基于RC框架的更有效的基于性能的设计很有用。

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