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Reliability-based design of rock slopes - A new perspective on design robustness

机译:基于可靠性的岩质边坡设计-设计稳健性的新视角

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Traditional reliability-based rock slope designs, in which the lowest-cost design is selected from all designs meeting target reliability requirements, are often sensitive to variations in noise factors such as rock shear properties. Consequently, a design that was initially judged acceptable may not satisfy reliability requirements if the variation of rock properties has been greatly underestimated. The authors present a Robust Geotechnical Design (RGD) approach for purposes of addressing this dilemma, by considering the robustness explicitly in the design process. In the context of rock slope design, this proposed RGD approach aims to make the response (i.e., failure probability) of a rock slope system insensitive to, or robust against, the variation of rock shear properties by adjusting design parameters (i.e., such as slope angle and height). Compared to traditional reliability-based design, the RGD approach adds design robustness as one of its design objectives. Thus, multi-objective optimization, considering both cost and robustness, is needed to select optimal designs in the acceptable design space where safety is guaranteed by a constraint on the reliability. In this paper, the concept of the Pareto Front, a collection of optimal designs that reflect the trade-off between cost and robustness, is implemented in the RGD approach. The proposed RGD approach is demonstrated with an example of a rock slope design.
机译:传统的基于可靠性的岩质边坡设计通常会从满足目标可靠性要求的所有设计中选择成本最低的设计,这些设计通常对噪声因素(如岩石剪切特性)的变化敏感。因此,如果岩石特性的变化被大大低估了,那么最初被认为可以接受的设计可能无法满足可靠性要求。为了解决这个难题,作者提出了一种健壮的岩土工程设计(RGD)方法,方法是在设计过程中明确考虑其稳健性。在岩质边坡设计的背景下,这种建议的RGD方法旨在通过调整设计参数(例如,坡度和高度)。与传统的基于可靠性的设计相比,RGD方法将设计稳健性作为其设计目标之一。因此,需要同时考虑成本和鲁棒性的多目标优化,以在可接受的设计空间中选择最佳设计,在该设计空间中,通过对可靠性的约束来保证安全性。在本文中,RGD方法实现了Pareto Front的概念,Pareto Front是反映成本和鲁棒性之间最佳平衡的最佳设计的集合。以岩石边坡设计为例演示了建议的RGD方法。

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