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Uncertainty in differential settlements of bridge foundations and retaining walls

机译:桥梁基础和挡土墙差动定居点的不确定性

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In the bridge design specifications of the American Association of State Highway and Transportation Officials (AASHTO) using the Load and Resistance Factor Design (LRFD) method, the loads and resulting force effects are given two-letter designations, e.g. "SE" for "force effects due to settlement". The SE load factor is used to develop factored values of the induced force effects such as moments and shears in a bridge structure due to foundation movements. In 2018 AASHTO committees voted to adopt calibrated values of the SE load factors that account for the uncertainty in predicted foundation movements from different analytical methods. However, additional uncertainty can occur in the differential settlements. This paper explores the additional uncertainty in differential settlements of bridge foundations and retaining walls using the datasets for two analytical methods that were used by AASHTO to develop the SE load factors for foundation settlement. Normalised probability exceedance charts (NPECs), that integrate the concept of reliability index and data correlation, have been developed and their application in bridge and wall design process is discussed for a variety of scenarios. Guidance is provided for the practical implementation of differential settlement in bridge analysis through an example problem.
机译:在桥梁设计规范的美国国家公路和运输官员(AASHTO)使用负载和电阻因子设计(LRFD)方法,负载和产生的力量效应是给予两个字母的指定,例如, “SE”为“沉降导致的力量”。由于基础运动,SE负载因子用于开发诱导力效应的诱导力效应的因子值,例如桥梁结构中的矩和剪切。 2018年,AASHTO委员会投票采用SE负载因子的校准价值,该因素从不同的分析方法的预测基础运动中占据了不确定性。然而,差别定居点可能发生额外的不确定性。本文探讨了桥梁基础和挡土墙的额外不确定性,使用AASHTO使用的两种分析方法的数据集来开发基础结算的SE负载因子。已经开发了归一化的概率超字符(NPEC),其集成了可靠性指数和数据相关性的概念,并讨论了各种场景的桥梁和墙面设计过程中的应用。通过示例问题提供了用于桥梁分析中差动结算的实际实施的指导。

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