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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Investigation on life-cycle damage cost of wind-excited tall buildings considering directionality effects
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Investigation on life-cycle damage cost of wind-excited tall buildings considering directionality effects

机译:考虑方向性效应的风力高层建筑生命周期损伤成本调查

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AbstractLife-cycle cost analysis (LCCA) can be efficiently used to quantify wind-induced damage on a tall building. The LCCA selects an “optimal” design solution by minimizing over structural lifetime the total cost (construction, maintenance and repair). Being based on thePacific Earthquake Engineering Researchequation, the LCCA relates the expected cost over the lifetime of the structure to the probability of exceeding specific damage levels. It also accounts for potential sources of uncertainty, such as variability in wind load intensity, directionality, structural properties, damage model estimation, etc. This paper proposes a LCCA methodology that evolves from the approach used in seismic engineering to numerically examine non-structural damage probability and predict maintenance costs on tall buildings by incorporating information on aerodynamic loads measured on a reduced-scale model in wind tunnel. The final objective is to provide an efficient simulation procedure, which simultaneously accounts for stochastic characterization of wind load intensity and direction.Highlights?A loss estimation model for wind-excited tall buildings is proposed.
机译:<![CDATA [ 抽象 可以有效地使用生命周期成本分析(LCCA)来量化在高层建筑上的风引起的损伤。通过通过结构寿命最小化总成本(构造,维护和维修),LCCA选择“最佳”设计解决方案。基于太平洋地震工程研究方程,LCCA将预期成本与结构的寿命相关,以超过特定损害水平的可能性。它还考虑了潜在的不确定性来源,例如风力负荷强度的可变性,方向性,结构性,损伤模型估计等。本文提出了一种来自地震工程中使用的方法的LCCA方法,以便在数值上检查非结构损伤概率和预测高层建筑物的维护成本通过纳入风隧道减小模型测量的空气动力学载荷的信息。最终目标是提供一种有效的模拟程序,它同时考虑风力负荷强度和方向的随机表征。 突出显示 提出了风力兴奋高层建筑的损耗估计模型。

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