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OPTIMAL COMPENSATION OF DIFFERENTIAL COLUMN SHORTENING IN HIGH-RISE BUILDINGS

机译:高层建筑中不同柱的优化补偿

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摘要

To avoid unexpected damage in structural and nonstructural elements, differential shortening between vertical members resulting from differing stress levels, loading histories, volume-to-surface ratios and other factors in a high-rise building must be properly considered in the design process. While research activity has been reported in the literature on the development of estimation algorithms or prediction procedures for the elastic and inelastic shortenings of vertical members, no algorithms or systematic methods for the compensation of the differential shortenings have been reported. In this paper, a compensation method for the differential column shortening in a high-rise building is formulated into an optimization problem. A simulated annealing algorithm is used to find optimal solutions. The proposed method is applied to the compensation of the differential shortening of the vertical members in two high-rise buildings, including one verifying example of a 70-storey building and a practical example of a 63-storey building. As demonstrated in the examples, the differential shortenings of the examples are effectively controlled by the optimal compensation method.
机译:为了避免结构和非结构元件的意外损坏,在设计过程中必须适当考虑高层建筑中不同应力水平,荷载历程,体积与表面积之比和其他因素导致的垂直构件之间的差异缩短。虽然在文献中已经报道了有关垂直构件的弹性和非弹性起酥油的估计算法或预测程序的发展的研究活动,但是还没有报道用于补偿差异起酥油的算法或系统方法。本文将高层建筑中差分柱缩短的补偿方法制定为优化问题。模拟退火算法用于找到最佳解。所提出的方法用于补偿两座高层建筑中竖向构件的差异缩短,其中包括一个验证实例为一栋70层建筑物和一个实例为63层建筑物。如实施例所示,通过最佳补偿方法有效地控制了实施例的差异缩短。

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