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Equivalent static wind loads vs. database-assisted design of tall buildings: An assessment

机译:高层建筑的等效静风荷载与数据库辅助设计的评估

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Recent developments in pressure measurement technology, and unprecedented "big data" capabilities, have enabled the development of Database-Assisted Design (DAD), a powerful innovative approach to the design of tall buildings for wind. DAD eliminates unwieldy back-and-forth interactions between the wind and the structural engineer, needed in traditional practices if iterative designs are performed. Some structural engineers have shown interest in an alternative approach that uses equivalent static wind loads (ESWLs) in lieu of DAD. Such an approach is warranted if ESWLs induce in structural members demand-to-capacity indexes (DCIs) approximately equal to their peak counterparts obtained by DAD. This paper presents and assesses a simple procedure for calculating such ESWLs. The procedure uses an effective multiple points-in-time (MPIT) method for estimating combined peak wind effects, and accounts for wind directionality. A case study is presented that uses both the ESWL and DAD procedures, with the latter providing the requisite benchmark results. DCIs obtained from ESWLs based on the use of ten points-in-time (corresponding to 60 wind loading cases) were significantly closer to the benchmark DAD values than their counterparts based on the use of, e.g., four points-in-time (corresponding to 24 wind loading cases). For the building considered in this case study, ESWL-based design DCIs approximated to within approximately 3% the DCIs yielded by DAD. The approximation was found to be poorer for cases in which a single unfavorable wind direction is strongly dominant. The ESWL procedure is not applicable in its present form to structures with complex shapes. In all cases, the DAD procedure is the safest and most risk-consistent design option.
机译:压力测量技术的最新发展以及空前的“大数据”功能使数据库辅助设计(DAD)的开发成为可能,这是一种用于设计高层风能的强大创新方法。如果执行迭代设计,DAD消除了传统实践中风与结构工程师之间来回的繁琐交互。一些结构工程师对使用等效静态风荷载(ESWL)代替DAD的替代方法表现出了兴趣。如果ESWL在结构成员中诱导的需求容量指数(DCI)大约等于其DAD获得的峰值对应物,则需要这种方法。本文提出并评估了计算此类ESWL的简单程序。该过程使用有效的多时间点(MPIT)方法来估计组合的峰值风影响,并说明风向。提出了使用ESWL和DAD程序的案例研究,后者提供了必要的基准结果。基于使用十个时间点(对应于60个风荷载情况)从ESWL获得的DCI比基于使用四个时间点(对应于相应时间点)的对应物显着更接近基准DAD值。到24个风荷载箱)。对于本案例研究中考虑的建筑物,基于ESWL的设计DCI大约在DAD产生的DCI的3%之内。对于单个不利的风向强烈占优势的情况,发现近似值较差。 ESWL程序不适用于目前形状复杂的结构。在所有情况下,DAD程序都是最安全,最一致的设计方案。

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