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Reliability-based design of tunnelling problems and insights for Eurocode 7

机译:基于可靠性的Eurocode 7隧道问题设计和见解

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The partial factor design approach has been suggested to replace the factor of safety design in geotechnical practice, such as the Eurocode 7 (EC7) for European countries and the load and resistance factor design (LRFD) for the North America. However, these design codes cover little about rock engineering principles and rock engineers snuggle with the application of the partial factor design to rock engineering problems. This paper presents how reliability-based design (RBD) can provide insights to and help the evolution of the partial factor design approach for tunnelling problems. Compared with other reliability methods, the first-ceder reliability method (FORM) is consistent for different but mathematically equivalent limit state functions. The intuitive expanding ellipsoid perspective and the constrained optimization method for FORM help overcome the conceptual and computational banters for practitioners. Three case studies are presented to show that RBD via FORM can determine the role (resistance or load factor) of input parameters on a case-by-case basis in ways that prescribed partial factors cannot, including a symmetrical roof wedge above a tunnel, a lined circular tunnel under non-hydrostatic in situ stresses and a circular tunnel reinforced by rockbolts considering multiple failure modes.
机译:有人建议采用局部因素设计方法来代替岩土工程实践中的安全设计因素,例如针对欧洲国家的欧洲法规7(EC7)和针对北美的荷载和阻力因素设计(LRFD)。但是,这些设计规范几乎没有涉及岩石工程原理,并且岩石工程师对将局部因子设计应用于岩石工程问题感到困惑。本文介绍了基于可靠性的设计(RBD)如何提供洞​​见,并帮助解决隧道问题的局部因素设计方法的发展。与其他可靠性方法相比,第一级可靠性方法(FORM)对于不同但在数学上等效的极限状态函数是一致的。直观的椭圆形扩展视角和FORM的约束优化方法帮助克服了从业人员的概念和计算障碍。进行了三个案例研究,表明通过FORM进行的RBD可以以个案的方式确定输入参数的作用(电阻或负载系数),而规定的局部因素则不能,包括隧道上方的对称屋顶楔,非静水现场应力作用下的带衬砌圆形隧道,以及考虑多种破坏模式的用锚杆加固的圆形隧道。

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