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首页> 外文期刊>Journal of Structural Engineering >Inelastic Performance of High-Rise Buildings to Simultaneous Actions of Alongwind and Crosswind Loads
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Inelastic Performance of High-Rise Buildings to Simultaneous Actions of Alongwind and Crosswind Loads

机译:高层建筑对顺风荷载和侧风荷载同时作用的非弹性性能

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Current tall building design to ultimate wind loads is based on a linear elastic design framework. The adoption of a performance-based wind design framework for tall buildings explicitly requires evaluation of building performance under various levels of wind hazards, including inelastic response. This study presents a comprehensive characterization of inelastic response of tall buildings under simultaneous actions of both alongwind and crosswind loads using a fiber-based three-dimensional (3D) nonlinear finite-element (FE) model of a 60-story high-rise steel building. The statistics of inelastic responses in terms of building displacement, acceleration, interstory drift, and base bending moment and member forces are quantified through response history analysis at different wind speeds. The inelastic building responses under alongwind and crosswind loads acting separately are also calculated and compared. The inelastic response is also compared to the elastic response of the corresponding linear building model. The yielding causes building drift in the alongwind direction that leads to increasing time-varying mean displacement. The development of drift is affected by fluctuating alongwind and crosswind responses. The steady-state value of drift is determined by the mean load and second stiffness in the alongwind direction. On the other hand, the fluctuating alongwind and crosswind responses can be quantified regardless of the mean load and time-varying mean response. The yielding leads to a reduction of fluctuating responses due to additional hysteretic damping. The second-order P-Delta effect on both elastic and inelastic responses is also examined. Finally, the influence of material yield stress is investigated, and the inelastic response is discussed in nondimensional quantities. The results of this study reveal the importance of consideration of simultaneous actions of both alongwind and crosswind loads for inelastic response analysis. The inelastic crosswind response affects the alongwind inelastic response. It particularly results in increased time-varying mean alongwind displacement, which contributes to building collapse when the second-order P-Delta effect is considered.
机译:目前高层建筑设计到极限风荷载是基于线弹性设计框架。高层建筑采用基于性能的风设计框架明确要求评估建筑在各种风灾(包括非弹性响应)下的性能。本研究采用基于纤维的三维非线性有限元(FE)模型,对某60层高层钢结构建筑的顺风荷载和侧风荷载作用下高层建筑的非弹性响应进行了全面表征。通过不同风速下的响应历史分析,量化了建筑物位移、加速度、层间漂移、基础弯矩和杆件力等非弹性响应的统计。计算并比较了顺风荷载和侧风荷载作用下的非弹性建筑响应。还将非弹性响应与相应线性建筑模型的弹性响应进行了比较。屈服导致建筑物沿风方向漂移,导致时变平均位移增加。漂移的发展受到顺风和侧风响应波动的影响。漂移的稳态值由顺风方向的平均载荷和第二刚度决定。另一方面,无论平均荷载和时变平均响应如何,都可以量化随风和侧风的波动响应。由于额外的滞后阻尼,屈服导致波动响应减少。还研究了二阶P-Delta对弹性和非弹性响应的影响。最后,研究了材料屈服应力的影响,并讨论了非弹性响应的无量纲量。本研究结果揭示了考虑顺风荷载和侧风荷载同时作用在非弹性响应分析中的重要性。非弹性侧风响应影响顺风非弹性响应。它尤其会导致时变平均顺风位移增加,当考虑二阶 P-Delta 效应时,这会导致建筑物倒塌。

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