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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >PSO-based stability analysis of unreinforced and reinforced soil slopes using non-circular slip surface
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PSO-based stability analysis of unreinforced and reinforced soil slopes using non-circular slip surface

机译:非圆形滑动表面不合因和钢筋土坡的基于PSO的稳定性分析

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摘要

Slope stability analysis is one of the most intricate problems of geotechnical engineering because it is mathematically difficult to search the critical slip surface of earth slopes with complex strata owing to the involved multimodal function optimization problem. At present, a minimum factor of safety for a non-circular slip surface in a uniform and unreinforced earth slope can be calculated using several methods; however, for a reinforced soil slope, it cannot be easily calculated because of the additional effect of the reinforcement. One efficient method to search the critical slip surface is particle swarm optimization (PSO). PSO can solve complex non-differentiable problems, and its increasing ease of use has facilitated its application to multimodal function optimization problems in a variety of fields. However, the recommended PSO parameters to calculate the safety factors of unreinforced and reinforced soil slopes, namely the inertia and local and global best solution weighting coefficients, have not been sufficiently investigated. Moreover, the computational efficiency of PSO for safety factor calculation, including computational accuracy and time, has not been clarified. To calculate the unreinforced and reinforced soil slope safety factors, this study considers force and moment equilibriums, including the tensile force of the reinforcement. Firstly, the computational efficiency of the calculation process by PSO was shown to increase the maximum number of slip surface nodes in the calculation of the safety factor. Then, an analysis was carried out to investigate the safety factor sensitivity to the PSO parameters. Based on this analysis, appropriate PSO parameters for the safety factor calculation of unreinforced and reinforced soil slopes were proposed.
机译:边坡稳定性分析是岩土工程最复杂的问题之一,因为由于涉及的多模式函数优化问题,在数学上难以将地球斜坡的临界滑动表面搜索地球斜坡。目前,可以使用多种方法计算均匀和未原始的地球斜坡中的非圆形滑动表面的最小安全系数;然而,对于增强的土坡,由于增强件的额外效果,因此不能轻易计算。搜索关键滑动表面的一个有效方法是粒子群优化(PSO)。 PSO可以解决复杂的不可差异问题,而且其越来越易用的易用性已经促进了在各种领域中的多模式函数优化问题的应用。然而,推荐的PSO参数计算未粘接和钢筋土壤斜坡的安全因子,即惯性和局部和全球最佳解决方案加权系数,并未得到充分调查。此外,PSO对安全系数计算的计算效率,包括计算准确性和时间,尚未阐明。为了计算未成年的土壤斜坡安全因素,本研究考虑了力量和力矩平衡,包括增强件的拉伸力。首先,通过PSO计算计算过程的计算效率,示出了在计算安全因子的计算中增加了滑动表面节点的最大数量。然后,进行分析以研究对PSO参数的安全因子敏感性。基于该分析,提出了适当的PSO参数,用于安全系数计算未原始和加强土壤斜坡。

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