Optimum Design Of Elastic Continuous Foundations With The Artificial Bee Colony Method

Seda Turan, I. Aydogdu, Engin Emsen
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引用次数: 1

Abstract

The study presents the investigation of the elastic behavior of the soil in the optimal design of continuous foundations according to the rigid solid case. For the investigation, the optimization algorithm that can find optimal section and reinforcement details of continuous foundations has been developed. The developed algorithm uses one of the well-known meta-heuristic methods named the artificial Bee Colony method to find the optimal design. The Winkler spring hypothesis (analytic solution) is used to calculate internal forces and stresses in elastic continuous foundations. We used the real-size design example previously used in the literature to test the elastic soil effect and algorithm performance. The obtained results show that the current algorithm performs well, and lower cost values are obtained in the elastic design.
弹性连续地基的人工蜂群优化设计
本文根据刚性固体情况,对连续地基优化设计中土体的弹性特性进行了研究。针对这一问题,提出了求解连续地基最优截面和配筋细部的优化算法。该算法采用了一种著名的元启发式方法——人工蜂群法来寻找最优设计。采用温克勒弹簧假设(解析解)计算弹性连续地基的内力和应力。我们使用文献中已有的实际尺寸设计实例来测试弹性土效应和算法性能。仿真结果表明,该算法性能良好,在弹性设计中获得了较低的成本值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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