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Optimal wind-induced load combinations for structural design of tall buildings

机译:高层建筑结构设计的最佳风力诱导载荷组合

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Wind tunnel testing technique has been established as a powerful experimental method for predicting wind-induced loads on high-rise buildings. Accurate assessment of the design wind load combinations for tall buildings on the basis of wind tunnel tests is an extremely important and complicated issue. The traditional design practice for determining wind load combinations relies partly on subjective judgments and lacks a systematic and reliable method of evaluating critical load cases. This paper presents a novel optimization-based framework for determining wind tunnel derived load cases for the structural design of wind sensitive tall buildings. The peak factor is used to predict the expected maximum resultant responses from the correlated three-dimensional wind loads measured at each wind angle. An optimized convex hull is further developed to serve as the design envelope in which the peak values of the resultant responses at any azimuth angle are enclosed to represent the critical wind load cases. Furthermore, the appropriate number of load cases used for design purposes can be predicted based on a set of Pareto solutions. One 30-story building example is used to illustrate the effectiveness and practical application of the proposed optimization-based technique for the evaluation of peak resultant wind-induced load cases.
机译:已经建立了风洞测试技术作为预测高层建筑物上风引起的荷载的强大实验方法。准确评估在风洞测试的基础上,高层建筑的设计风重组合是一个极其重要和复杂的问题。用于确定风重载荷组合的传统设计实践部分依赖于主观判断,缺乏评估关键负载案例的系统和可靠的方法。本文提出了一种基于新的优化框架,用于确定风隧道衍生的负载箱,用于风敏高建筑物的结构设计。峰值因子用于预测来自在每个风角测量的相关的三维风力载荷的预期最大合成响应。进一步开发了一种优化的凸壳以用作设计包络,其中封装任何方位角的所得响应的峰值以表示临界风载情况。此外,可以基于一组Pareto解决方案来预测用于设计目的的适当数量的负载盒。一个30层构建例子用于说明所提出的基于优化技术的有效性和实际应用,以评估峰值得到的峰值诱导的负载载体。

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