首页> 外文期刊>International Journal of Pressure Vessels and Piping >Shakedown analysis of a torispherical head with a piping nozzle under combined loads by the stress compensation method
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Shakedown analysis of a torispherical head with a piping nozzle under combined loads by the stress compensation method

机译:用应力补偿法在载荷组合载荷下用管道喷嘴进行跳闸分析

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摘要

Shakedown assessment is an important task in determining the load-bearing capacity of structures and evaluating their safety. The traditional shakedown analyses, which are based on the upper or lower bound shakedown theorem to establish the mathematical programming formulation and solve an optimisation problem, are difficult to apply in engineering practice owing to limitations of the computing scale and computational efficiency. In this study, a numerical shakedown analysis using the recently developed stress compensation method (SCM) is performed for a torispherical head with a piping nozzle, which is a typical structural component of pressure vessel equipment. The loads applied to the structural component include an internal pressure, axial force, twisting moment, out-of-plane and in-plane bending moments, and thermal loading, all of which vary independently of each other. Two- and three-dimensional strict shakedown boundaries for the torispherical head under different combinations of these loads are presented and analysed. In addition, the effect of a temperature dependent yield strength on the shakedown domain is also investigated. These investigations demonstrate that the proposed SCM is capable of solving the practical shakedown problem for structures under complicated combined loads in industrial applications. The obtained results can provide guidance for the safe structural design of torispherical heads with piping nozzles.
机译:Shakedown评估是确定结构承载能力和评估其安全性的重要任务。传统的Shakedown分析,基于上限或下限的Shakedown定理,以建立数学规范制定和解决优化问题,由于计算规模和计算效率的局限性,难以适用于工程学实践。在该研究中,使用最近开发的应力补偿方法(SCM)进行数值升起分析,用于用管道喷嘴进行扭音锤,这是压力容器设备的典型结构部件。施加到结构部件的载荷包括内部压力,轴向力,扭转力矩,平面外和面内弯曲的时刻,以及热负荷,所有这些都可以彼此独立变化。提出并分析了在不同组合下的Torispherical头部的两个和三维严格的严格横向边界。此外,还研究了温度依赖性屈服强度对志同阵结构域的影响。这些调查表明,所提出的SCM能够解决工业应用中复杂组合负载下结构的实际展示问题。所获得的结果可以为带有管道喷嘴的Torispherical头部的安全结构设计提供指导。

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