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Optimal Compensation of Axial Shortening in Tall Buildings by Differential Evolution
Differential axial shortening in a tall building can cause damages to structural and non-structural components. In this paper, an optimization approach for reducing the differential axial shortening is presented. The differential shortening among vertical members is controlled by means of a suitable compensation strategy. The differential evolution is utilized to determine the optimal compensation solution in a sequence of small optimization problems. The efficiency of the proposed method is demonstrated through an example of a 70-story building and its performance is compared with those of existing methods.
Optimal Compensation of Axial Shortening in Tall Buildings by Differential Evolution
Differential axial shortening in a tall building can cause damages to structural and non-structural components. In this paper, an optimization approach for reducing the differential axial shortening is presented. The differential shortening among vertical members is controlled by means of a suitable compensation strategy. The differential evolution is utilized to determine the optimal compensation solution in a sequence of small optimization problems. The efficiency of the proposed method is demonstrated through an example of a 70-story building and its performance is compared with those of existing methods.
Optimal Compensation of Axial Shortening in Tall Buildings by Differential Evolution
Lecture Notes in Civil Engineering
Reddy, J. N. (editor) / Wang, Chien Ming (editor) / Luong, Van Hai (editor) / Le, Anh Tuan (editor) / Nguyen, Duc-Xuan (author) / Pham, Hoang-Anh (author)
2020-07-28
8 pages
Article/Chapter (Book)
Electronic Resource
English
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