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Minimum life-cycle cost-based optimal design of yielding metallic devices for seismic loads

机译:基于最小生命周期成本的抗震载荷屈服金属装置的优化设计

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The yielding metallic devices have been used to improve the performance of building structures at design level intensities. They dissipate large levels of vibration energy through yielding of disposable steel plate elements but they may also enhance acceleration response related damage of mechanical and electrical components. This paper addresses the optimal design of these devices that minimizes the expected life cycle object cost considering the story drift and acceleration related damages over the entire spectrum of seismic intensities that can occur on a building site. Genetic algorithm is used to calculate the optimal design parameters of the devices. The uncertainties associated with the frequency of occurrence of earthquakes of different intensities and random characteristics of the structural response are included in the life-cycle failure cost and the object cost calculations. It shown that these devices can be used effectively to reduce the overall life-cycle object cost and can be considered as good protective investment for structural designs in seismic regions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:屈服的金属装置已被用于在设计水平强度下改善建筑结构的性能。它们通过产生一次性钢板元件来消散大量的振动能量,但它们也可能会增强与加速度响应相关的机械和电气组件的损坏。本文针对这些设备的最佳设计进行了考虑,考虑到在建筑工地上发生的整个地震烈度范围内的故事漂移和与加速度相关的损害,这些设备的最佳设计可将预期的生命周期目标成本降至最低。遗传算法用于计算设备的最佳设计参数。与不同强度地震发生频率有关的不确定性和结构响应的随机特征包括在生命周期破坏成本和目标成本计算中。结果表明,这些设备可以有效地减少整个生命周期内的对象成本,并可以视为地震地区结构设计的良好保护性投资。 (C)2017 Elsevier Ltd.保留所有权利。

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