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A new stress analysis procedure for piping with refractory lining

机译:耐火材料衬里管道应力分析的新程序

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摘要

In designs for piping with refractory lining used in Residue Fluid Catalytic Cracking Process (RFCC) and Fluid Catalytic Cracking Process (FCC) of a refinery, no influential design factors are considered, such as the effects of lining stiffinessand the difference of themal expansion between pipe and lining.However, influences of lining due to its stiffness and the difference of themal expansion between pipe and lining would not be negligibly small. This paper proposes a new stress analysis method for piping with lining. The analysis is performed by a piping stress analysis program.The pipe and lining are modeled by beam elements. This method applies a modified flexibility factor and a modified stress intensification factor for pipe and lining respectively. These two kinds of factors are individually obtained by comparing theresults of FEManalysis using 3D shell/solid elements with the results of piping analysis by beam theory. The experiments for piping without lining and piping with lining were carried out at room temperature, and the validity and accuracy of the proposedmethod were verified by comparing the experimental results.
机译:在炼油厂的残余流体催化裂化工艺(RFCC)和流体催化裂化工艺(FCC)中使用的带有耐火衬里的管道设计中,没有考虑任何影响设计因素,例如衬里刚度的影响以及管道之间的热膨胀差异但是,由于衬里的刚度以及管与衬里之间的热膨胀差异,衬里的影响不会小到可以忽略不计。本文提出了一种新的衬砌管道应力分析方法。通过管道应力分析程序进行分析,并通过梁单元对管道和衬砌进行建模。该方法分别对管道和衬里应用了修改后的柔韧性因子和修改后的应力增强因子。通过将使用3D壳/固体单元进行的有限元分析结果与通过梁理论进行管道分析的结果进行比较,可以单独获得这两种因素。在室温下进行了无衬砌管道和有衬砌管道的实验,通过比较实验结果验证了所提方法的有效性和准确性。

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