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Application of improved radial movement optimization for calculating the upper bound of ultimate bearing capacity of shallow foundation on unsaturated soil

机译:改进的径向运动优化算法在非饱和土浅基础极限承载力上限计算中的应用

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摘要

Considering engineering practices in terms of decrease in the matric suction of unsaturated soil with increasing embedded depth, this study, employing a new global optimization algorithm on the basis of radial movement optimization (RMO), focused on investigating the critical slip surface and ultimate bearing capacity of a rough strip footing on unsaturated soil subjected to vertical load. Based on upper-bound limit analysis theorem, an equation for calculating the ultimate bearing capacity of unsaturated soil has been established. The data structure of RMO was improved by considering self-feedback of the particles. The results show that the improved radial movement optimization can be successfully applied to accurately and stably search the critical slip surface and subsequently calculate the ultimate bearing capacity on unsaturated soil. It also found that, compared with no matric suction, the critical slip surface determined considering the matric suction of unsaturated soil is larger and deeper, and the corresponding ultimate bearing capacity is also significantly improved.
机译:考虑到工程实践,随着埋深的增加,非饱和土的基质吸力降低,本研究在径向运动优化(RMO)的基础上采用新的全局优化算法,重点研究临界滑动面和极限承载力条带基础在垂直荷载下对非饱和土壤的影响基于上限分析定理,建立了计算非饱和土极限承载力的方程。考虑到粒子的自我反馈,改进了RMO的数据结构。结果表明,改进的径向运动优化方法可以成功地应用于准确,稳定地搜索临界滑动面,并随后计算出对非饱和土的极限承载力。还发现,与没有基质吸力相比,考虑到非饱和土的基质吸力而确定的临界滑动面更大,更深,相应的极限承载力也得到了显着提高。

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