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Calibration concepts for load and resistance factor design (LRFD) of reinforced soil walls

机译:加筋土墙的荷载和阻力系数设计(LRFD)的校准概念

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摘要

Reliability-based design concepts and their application to load and resistance factor design (LRFD or limit states design ( LSD) in Canada) are well known, and their adoption in geotechnical engineering design is now recommended for many soil-structure interaction problems. Two important challenges for acceptance of LRFD for the design of reinforced soil walls are (i) a proper understanding of the calibration methods used to arrive at load and resistance factors, and (ii) the proper interpretation of the data required to carry out this process. This paper presents LRFD calibration principles and traces the steps required to arrive at load and resistance factors using closed-form solutions for one typical limit state, namely pullout of steel reinforcement elements in the anchorage zone of a reinforced soil wall. A unique feature of this paper is that measured load and resistance values from a database of case histories are used to develop the statistical parameters in the examples. The paper also addresses issues related to the influence of outliers in the datasets and possible dependencies between variables that can have an important influence on the results of calibration.
机译:基于可靠性的设计概念及其在载荷和阻力系数设计(加拿大的LRFD或极限状态设计(LSD))中的应用是众所周知的,现在建议将其用于岩土工程设计中以解决许多土-结构相互作用问题。接受LRFD用于加筋土墙设计的两个重要挑战是(i)正确理解用于得出载荷和阻力系数的校准方法,以及(ii)正确解释执行此过程所需的数据。本文介绍了LRFD校准原理,并针对一种典型的极限状态(即,在加筋土墙的锚固区域中拔出钢筋元件),使用封闭形式的解决方案来跟踪得出载荷和阻力因子所需的步骤。本文的独特之处在于,可以使用案例历史数据库中测得的负载和电阻值来开发示例中的统计参数。本文还讨论了与异常值在数据集中的影响以及可能对校准结果产生重要影响的变量之间可能的依存关系有关的问题。

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