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Determination of Slope Safety Factor with Analytical Solution and Searching Critical Slip Surface with Genetic-Traversal Random Method

机译:解析法确定边坡安全系数遗传遍历随机法搜索临界滑移面

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摘要

In the current practice, to determine the safety factor of a slope with two-dimensional circular potential failure surface, one of the searching methods for the critical slip surface is Genetic Algorithm (GA), while the method to calculate the slope safety factor is Fellenius' slices method. However GA needs to be validated with more numeric tests, while Fellenius' slices method is just an approximate method like finite element method. This paper proposed a new method to determine the minimum slope safety factor which is the determination of slope safety factor with analytical solution and searching critical slip surface with Genetic-Traversal Random Method. The analytical solution is more accurate than Fellenius' slices method. The Genetic-Traversal Random Method uses random pick to utilize mutation. A computer automatic search program is developed for the Genetic-Traversal Random Method. After comparison with other methods like slope/w software, results indicate that the Genetic-Traversal Random Search Method can give very low safety factor which is about half of the other methods. However the obtained minimum safety factor with Genetic-Traversal Random Search Method is very close to the lower bound solutions of slope safety factor given by the Ansys software.
机译:在当前实践中,要确定具有二维圆形潜在破坏面的边坡的安全系数,关键滑动面的搜索方法之一是遗传算法(GA),而计算边坡安全系数的方法是Fellenius的切片方法。但是,GA需要通过更多的数值测试进行验证,而Fellenius的slices方法只是一种类似于有限元方法的近似方法。提出了一种确定最小边坡安全系数的新方法,即采用解析解确定边坡安全系数,并采用遗传遍历随机法搜索临界滑动面。分析解决方案比Fellenius的切片方法更准确。遗传遍历随机方法使用随机采摘来利用突变。为遗传遍历随机方法开发了一种计算机自动搜索程序。与斜率/ w软件等其他方法进行比较后,结果表明,遗传遍历随机搜索方法可以提供非常低的安全系数,大约是其他方法的一半。但是,通过遗传遍历随机搜索法获得的最小安全系数非常接近于Ansys软件给出的边坡安全系数的下限解。

著录项

  • 期刊名称 other
  • 作者

    Wen-jie Niu;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 950531
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-21 11:19:24

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