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PRACTICAL CONSIDERATIONS WHEN CONDUCTING A TRANSIENT ANALYSIS OF A HEAT EXCHANGER TUBE RUPTURE

机译:进行换热器管断裂的瞬态分析时的实际考虑

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As part of operations, petrochemical and process plants sometimes require the exchange of heat between a high pressure fluid and a lower pressure fluid in shell-and-tube heat exchangers. In most cases, the high pressure fluid exists on the tubeside and the lower pressure is on the shellside. While rare, it is possible for a tube inside the exchanger shell to rupture suddenly, releasing the high pressure fluid into the shellside. If the pressure of the high pressure fluid exceeds the design pressure of the low pressure shell or its attached piping, it might be possible for the resulting pressure in the low pressure side to exceed permitted values. In such cases, API 521 provides guidance on assuring that sufficient pressure relief is available to limit the pressures on the heat exchanger(s)' low pressure side. An overpressure analysis per API 521 can include both steady-state and transient analysis methods for determining that the pressures remain within acceptable levels. In situations where a large pressure differential exists between the high and low pressure sides of the exchanger, the transient, hydraulic analysis of the tube rupture event can be used as a tool to help mitigate over pressure. After briefly discussing the analysis methodology, this paper discusses some of the practical considerations and decisions that normally go into conducting the analysis.
机译:作为操作的一部分,石化和加工厂有时需要在管壳式换热器中的高压流体和低压流体之间进行热交换。在大多数情况下,高压流体存在于管侧,而低压则存在于壳侧。尽管很少见,但换热器壳内的管可能会突然破裂,从而将高压流体释放到壳侧。如果高压流体的压力超过低压壳体或其附属管道的设计压力,则低压侧的合成压力可能会超过允许值。在这种情况下,API 521提供了有关确保有足够的压力释放来限制热交换器低压侧压力的指南。根据API 521的超压分析可以包括稳态和瞬态分析方法,用于确定压力保持在可接受的水平内。在交换器的高压侧和低压侧之间存在较大压差的情况下,可以将对管道破裂事件进行的瞬态液压分析用作帮助缓解超压的工具。在简要讨论了分析方法之后,本文讨论了通常用于进行分析的一些实际考虑因素和决策。

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