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首页> 外文期刊>Journal of structural engineering >Life-Cycle Cost Analysis of a Point-Like Structure Subjected to Tornadic Wind Loads
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Life-Cycle Cost Analysis of a Point-Like Structure Subjected to Tornadic Wind Loads

机译:点状结构在风速作用下的生命周期成本分析

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To quantify the monetary losses associated with damages induced by tornado wind storms, a numerical performance-based engineering framework complete with dynamic simulation of tornado-like wind fields, calculation of probabilities of structural performance for a point-like (monopole) structure and life-cycle cost analysis is presented. Within a Monte Carlo sampling environment, digitally simulated loads generated from five distinct tornado wind field models replicate aleatory and epistemic uncertainties concentrated in the aerodynamic load coefficients and turbulent wind velocities. Using random maximum displacements and base-bending moments as engineering demand parameters, the convolution of fragility functions with hazard curves for three intensity measures (maximum tangential velocity, core radius of the simulated tornado, and starting location of the tornado) yield probabilities of structural failure for selected limit states. The shapes of the integrand probability surfaces and the subsequent estimations of relative costs exhibit significant differences among the five models despite the parametrically equivalent simulations. This initial study, though limited through its case analysis of a point-like (monopole) structure, sets the stage for future investigations of life-cycle costs for other vertical structures (e.g., tall buildings) subjected to tornadic wind loads. (C) 2019 American Society of Civil Engineers.
机译:为了量化与龙卷风风暴造成的损害相关的金钱损失,一个基于数值性能的工程框架完成了龙卷风状风场的动态模拟,计算了点状(单极)结构的结构性能概率和寿命,介绍了周期成本分析。在蒙特卡洛采样环境中,由五个不同的龙卷风风场模型产生的数字化模拟负载复制了集中在空气动力学负载系数和湍流风速的不确定性和认知不确定性。使用随机最大位移和基弯矩作为工程需求参数,脆性函数与危险曲线的卷积函数进行三种强度测度(最大切向速度,模拟龙卷风的核心半径和龙卷风的起始位置)产生结构破坏的可能性对于选定的极限状态。尽管有参数等效的模拟,但在五个模型之间,被整数概率面的形状和相对成本的后续估计仍存在显着差异。这项最初的研究尽管受点状(单极)结构的案例分析的限制,但为将来研究承受风向风荷载的其他垂直结构(例如高层建筑)的生命周期成本奠定了基础。 (C)2019美国土木工程师学会。

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