Brittle Fracture Assessments on Piping Systems: MSOT Curves

I. Chakraborty, K. Subramanian, J. Penso
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Abstract

Brittle fracture assessments (BFAs) of pressure vessels based on API 579-1/ASME FFS-1, Section 3 procedures are frequently easier and more straightforward to implement in comparison to the BFAs on piping systems. Specifically, the development of the MSOT curves. This is due to the complexities involved in the piping systems due to the branch piping interactions, end conditions of piping systems such as nozzle flexibilities at the pressure vessel connections, temperature changes in the length of piping especially when the piping is significantly long as seen in flare header piping systems. MSOT curves that are alternatively used for MAT curves provide a better picture to the plant personnel in understanding the safe operating envelope. Development of MSOT curves is an iterative process and therefore involves significant number of piping stress analyses during their development. In this paper, an approach to develop the MSOT curves is discussed with two case studies that are of relevance to olefin plants.
管道系统脆性断裂评价:MSOT曲线
与管道系统的脆性断裂评估相比,基于API 579-1/ASME FFS-1, Section 3的压力容器脆性断裂评估(BFAs)程序通常更容易、更直接地实施。具体来说,是MSOT曲线的发展。这是由于管道系统的复杂性,包括分支管道的相互作用,管道系统的末端条件,如压力容器连接处的喷嘴灵活性,管道长度的温度变化,特别是当管道非常长时,如在火炬集管系统中所见。MSOT曲线可替代MAT曲线,为工厂人员更好地了解安全操作范围提供了更好的图像。MSOT曲线的开发是一个迭代过程,因此在其开发过程中涉及大量的管道应力分析。本文通过两个与烯烃装置相关的实例,讨论了MSOT曲线的绘制方法。
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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