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Life-cycle cost based optimal retrofitting of structures by fluid dampers

机译:基于生命周期成本通过流体阻尼器的结构最佳改造

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A simulation-based, probabilistic framework is discussed in this paper for design of viscous dampers based on life-cycle cost criteria. This framework allows for explicit consideration in the design process of all important nonlinearities for both the dampers and the structural behavior, as well as of all sources of uncertainty related to the seismic hazard. It is based on an assembly-based vulnerability approach for estimating earthquake losses, and on description of the earthquake hazard through stochastic ground motion models. In this setting, the life-cycle cost is quantified by its expected value over the space of the uncertain parameters for the structural and excitation models, and is estimated through stochastic simulation. For the design-optimization an algorithm appropriate for costly global optimization problems is adopted. An illustrative example is presented that considers the optimal life-cycle based design of fluid viscous dampers for retrofitting a three-story concrete structure.
机译:本文讨论了基于模拟的概率框架,用于基于生命周期成本标准设计粘性阻尼器。该框架允许在阻尼器和结构行为的所有重要非线性的设计过程中明确考虑,以及与地震危害相关的所有不确定性来源。它基于基于组装的脆弱性方法,用于估计地震损失,以及通过随机地面运动模型的地震危害的描述。在该设置中,通过其对结构和激励模型的不确定参数的空间来量化生命周期成本,并通过随机仿真估计。对于设计优化,采用适合昂贵的全局优化问题的算法。提出了一种说明性示例,其考虑了基于最佳的生命周期的流体粘性阻尼器的设计,以改造三层混凝土结构。

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