Development of Strain Demand and Capacity Distributions to Use in Limit States Design for Geotechnical Loads

S. Koduru, M. Nessim
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引用次数: 2

Abstract

A limit states design approach for onshore pipelines has been developed as part of a multi-year joint industry project (JIP). As part of this project, reliability-based design rules were developed for geotechnical loads, including landslides, slope creep, seismic loads, frost heave and thaw settlement. In consideration of the modelling complexity of the soil movement mechanisms and pipe-soil interaction, and to allow for flexibility to incorporate future model developments, the design rule formulation is directly based on the distribution parameters of the strain demand and capacity of the pipeline. This paper describes the approach used to develop the strain demand and capacity distributions that are required to apply the design rules, as well as the applicable range of distribution parameters. Slope creep was selected as a basis for demonstrating the proposed process, as this loading mechanism occurs more frequently and the data to characterize the necessary uncertainties is available. General guidance related to the development of the strain demand distribution parameters for other geotechnical loads is also provided.
土工荷载极限状态设计中应变需求和能力分布的发展
作为一个多年联合工业项目(JIP)的一部分,开发了一种陆上管道的极限状态设计方法。作为该项目的一部分,针对岩土荷载,包括滑坡、边坡蠕变、地震荷载、冻胀和融化沉降,制定了基于可靠性的设计规则。考虑到土壤运动机制和管道-土壤相互作用的建模复杂性,并考虑到未来模型发展的灵活性,设计规则的制定直接基于应变需求和管道容量的分布参数。本文描述了用于开发应用设计规则所需的应变需求和容量分布的方法,以及分布参数的适用范围。选择斜坡蠕变作为演示所建议过程的基础,因为这种加载机制发生得更频繁,并且表征必要不确定性的数据是可用的。还提供了与其他岩土荷载应变需求分布参数的发展有关的一般指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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