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RISK-INFORMED LOAD AND RESISTANCE FACTOR DESIGN (LRFD) METHODS FOR PIPING

机译:管道的风险承担载荷和抵抗因素设计(LRFD)方法

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摘要

The main objective of structural design is to insure safety, functional, and performance requirements of a structural system for selected target reliability levels, for specified period of time and for a specified environment. As this must be accomplished under conditions of uncertainty, risk and reliability analyses are deemed necessary in the development of such methods as risk-informed load and resistance factor design for piping. This paper provides a summary of the methodology and technical basis for reliability-based, load and resistance factor design suitable for the ASME Section III, Class 2/3 piping for primary loading, i.e., pressure, deadweight and seismic. The methodology includes analytical procedures, such as the First-Order Reliability Method (FORM) for calculating the LRFD-based partial safety factors for piping. These factors were developed in this paper for demonstration purposes, and they can be used ultimately in LRFD design formats to account for the uncertainties in strength and in the load effects. The technical basis provided in the paper is suitable for a proof-of-concept in that LRFD can be used in the design of piping with consistent reliability levels. Also, the results from additional projects in this area, including future research for piping secondary loads, will form the basis for future code cases.
机译:结构设计的主要目标是针对选定的目标可靠性水平,指定的时间段和指定的环境,确保结构系统的安全性,功能和性能要求。由于必须在不确定性条件下完成此操作,因此在开发此类方法(如基于风险的负载和管道阻力系数设计)时,必须进行风险和可靠性分析。本文概述了适用于ASME第三节第2/3类主要载荷(即压力,静载和地震)的基于可靠性的载荷和阻力系数设计的方法和技术基础。该方法包括分析程序,例如用于计算基于LRFD的管道局部安全系数的一阶可靠性方法(FORM)。这些因素在本文中出于演示目的而开发,最终可以用于LRFD设计格式中,以解决强度和载荷效应中的不确定性。本文提供的技术基础适用于概念验证,因为LRFD可用于设计具有一致可靠性级别的管道。同样,该领域其他项目的结果,包括对管道次级负荷的未来研究,将构成未来规范案例的基础。

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