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Modern reassessment of the Citicorp Building design wind loads. 花旗大厦设计风荷载的现代再评估。
Pub Date : 2020-01-01
Dat Duthinh

Following structural engineering practice of the 1970s, engineers designed the Citicorp Building for the action of wind in each of the structure's principal axes. One problem they faced was how to determine design values by combining simultaneous wind loads from the means and root mean squares of these loads. Given the technology available at the time, the simplifying assumption was made of decomposing the effects of a corner wind into the sum of the effects on two adjacent faces, as if these wind loads were static and perfectly correlated, which they are not. As a result of this assumption, the connections in the diagonal braces were deemed overstressed, and emergency repairs had to be performed on the just completed building. Nowadays, the Database-Assisted Design method and modern computer technology are capable of accounting for simultaneous dynamic loads properly, performing structural analyses for all time steps where measurements are available, and extrapolating to longer duration windstorms using extreme value distributions. Modern analysis thus determines design loads on a more rational basis and shows that the combinations of wind loads that caused such concern in 1978 do not need to be considered for mean recurrence intervals of practical interest.

根据20世纪70年代的结构工程实践,工程师们设计了花旗公司大楼,以考虑风在每个结构主轴上的作用。他们面临的一个问题是如何通过结合这些荷载的均方根和均方根的同时风荷载来确定设计值。考虑到当时可用的技术,简化的假设是将转角风的影响分解为相邻两个面影响的总和,就好像这些风荷载是静态的和完全相关的,但事实并非如此。由于这种假设,对角线支撑的连接被认为压力过大,必须对刚刚完工的建筑进行紧急维修。如今,数据库辅助设计方法和现代计算机技术能够正确地计算同时发生的动态载荷,在测量可用的所有时间步骤中执行结构分析,并使用极值分布推断持续时间更长的风暴。因此,现代分析在更合理的基础上确定设计荷载,并表明在1978年引起这种关注的风荷载组合不需要考虑实际关心的平均复发间隔。
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引用次数: 0
Blown away: Citicorp Center Tower repairs revisited. 震撼:花旗集团中心大厦的修复工作再次进行。
Pub Date : 2019-07-01
Dat Duthinh

Using Database-Assisted Design and the Tokyo Polytechnic University Aerodynamic Database, we show that face winds put more structural demand than corner winds do on the Citicorp Tower in Manhattan. This 59-story building, supported by four midside columns, famously had to undergo secret emergency strengthening shortly after its completion in the 1970s to withstand corner winds.

利用数据库辅助设计和东京理工大学空气动力学数据库,我们发现在曼哈顿的花旗公司大厦上,正面风比角风带来更多的结构需求。这座59层的建筑由中间的四根柱子支撑,在20世纪70年代完工后不久,为了抵御转角的风,它不得不进行秘密的紧急加固。
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引用次数: 0
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The engineers journal
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