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Title

A RAPID OPTIMIZATION METHOD FOR SLIP SURFACE IN EARTH SLOPES USING GENETIC ALGORITHM

Pages

  93-112

Abstract

 This paper introduces an accurate, fast, and applicable method for slip surfaces in slopes. Using GENETIC ALGORITHM (GA) which is one of the modern and non-classic OPTIMIZATION methods, in conjunction with the well-known bishop applied method, the optimum slip surface in an slop is investigated and its corresponding lowest safety factor is determined. Investigation have shown that selection of variables to define and to solve the problem and determination of a good rang for these variables have a profound effect an the speed of convergence. In the present study, appropriate variables have been defined for solving the problem n a the number of repetitions required to reach convergence are considerably considerably reduced by up to 50% compared with other approaches. This has led to a drastic reduction in time and the memory required. The accuracy of the method is shown first by solving examples related to search for optimum failure surfaces of some homogenous and earth dam slopes and then by comparison of the present method in modern geotechnical engineering, a reinforced earth slope is studied and its failure surface is finally optimized.

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    APA: Copy

    BAGHERIPOUR, M.H., SHASAVAND, E., & MARANDI, S.M.. (2006). A RAPID OPTIMIZATION METHOD FOR SLIP SURFACE IN EARTH SLOPES USING GENETIC ALGORITHM. ESTEGHLAL, 25(2), 93-112. SID. https://sid.ir/paper/6029/en

    Vancouver: Copy

    BAGHERIPOUR M.H., SHASAVAND E., MARANDI S.M.. A RAPID OPTIMIZATION METHOD FOR SLIP SURFACE IN EARTH SLOPES USING GENETIC ALGORITHM. ESTEGHLAL[Internet]. 2006;25(2):93-112. Available from: https://sid.ir/paper/6029/en

    IEEE: Copy

    M.H. BAGHERIPOUR, E. SHASAVAND, and S.M. MARANDI, “A RAPID OPTIMIZATION METHOD FOR SLIP SURFACE IN EARTH SLOPES USING GENETIC ALGORITHM,” ESTEGHLAL, vol. 25, no. 2, pp. 93–112, 2006, [Online]. Available: https://sid.ir/paper/6029/en

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