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Reliability-based robust design for reinforcement of jointed rock slope

机译:基于可靠性的稳健设计用于节理岩质边坡加固

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摘要

Traditional reliability-based design methodologies often involve selection of design which is of lowest cost and satisfies safety requirements. But, this design is sensitive to variation in statistics of input parameters (noise parameters) and might become unsatisfactory if an underestimation of coefficient of variation of input parameters is made. A relatively new design methodology known as robust geotechnical design (RGD) is applied for the case of reinforcement of rock slope using end-anchored rock bolts. This ensures selection of a cost-effective and safe design for which probability of failure (Pf) of reinforced rock slope is least sensitive to the noise parameters. Reliability-based RGD approach involves evaluation of P_f for each design with different possible noise parameters. Finding P_f for the complex geotechnical structure is computationally expensive, and thus an augmented radial basis function-based response surface is used as a surrogate to the finite element model of rock slope. This response surface, being very efficient, also performs well for a range of values of noise parameters. Later, minimum distance algorithm is applied to obtain a cost-effective and robust design. Finally, a comparison is made in the costs between two robust designs obtained for different target probability of failure for the same rock slope.
机译:传统的基于可靠性的设计方法通常涉及成本最低且满足安全要求的设计选择。但是,该设计对输入参数(噪声参数)的统计变化敏感,并且如果对输入参数的变化系数进行低估,可能会变得不令人满意。在使用端锚式岩石锚杆加固岩石边坡的情况下,采用了一种相对较新的设计方法,称为稳健岩土设计(RGD)。这样可以确保选择一种经济有效且安全的设计,对于该设计,加筋岩石边坡的破坏概率(Pf)对噪声参数的敏感性最低。基于可靠性的RGD方法涉及对每个设计的P_f进行评估,并采用不同的可能噪声参数。为复杂的岩土结构找到P_f的计算量很大,因此,基于增强的基于径向基函数的响应面被用作岩石边坡有限元模型的替代。该响应面非常有效,对于一系列噪声参数值也表现良好。后来,应用最小距离算法来获得具有成本效益的稳健设计。最后,比较了在相同岩石坡度下针对不同目标破坏概率获得的两种稳健设计之间的成本。

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