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Dynamic behaviour of a three fluid heat exchanger subjected to step change in inlet temperature of hot and cold fluids

机译:三流体热交换器在热流体和冷流体入口温度变化时的动态特性

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Purpose - The purpose of this paper is to analyse the dynamic behaviour of a three-fluid heat exchanger subjected to a step change in the temperature and velocity of the fluids at the inlet. Design/methodology/approach - The analysis is carried out using the finite element methodology, adopting the Galerkin's approach, using implicit method for transient behaviour. Findings - The effect of step changes in the inlet temperature of hot and cold fluids show that an increase in the fluid inlet temperatures leads to increased outlet temperatures of all fluids and decreased hot fluid effectiveness. The exit temperatures of the fluids do not show any response initially for a certain period of time with the step changes. The time to reach steady state is independent of the step change in inlet temperature of the hot and the cold fluids. Research limitations/implications - The findings of this paper is limited to constant property situations. Practical implications - The findings will be useful in designing control and regulation systems of heat exchangers used in different industrial processes and operations, such as in nuclear reactors, cryogenic and petrochemical process plants. Social implications - The analysis provides a time frame in which the controls and regulation systems work, so that the necessary safety precautions for the people working in the surrounding area can be taken care of. Originality/value - As per the best knowledge of the authors, none of the papers so far have discussed the effect of the change in the inlet temperature and velocity of both the fluids. Performance parameters such as effectiveness, time to reach steady state, etc. have not been studied so far.
机译:目的-本文的目的是分析在入口处的流体温度和速度变化时,三流体热交换器的动态行为。设计/方法/方法-使用有限元方法进行分析,采用Galerkin方法,使用隐式方法进行瞬态行为。研究结果-冷热流体入口温度阶跃变化的影响表明,流体入口温度的升高会导致所有流体出口温度升高,而热流体效率会降低。最初,随着阶跃变化,流体的出口温度在一段时间内未显示任何响应。达到稳态的时间与热流体和冷流体的入口温度的阶跃变化无关。研究的局限性/意义-本文的研究结果仅限于不变性质的情况。实际意义-研究结果对于设计用于不同工业过程和操作(例如核反应堆,低温和石化过程工厂)的热交换器的控制和调节系统很有用。社会影响-分析提供了控制和调节系统起作用的时间范围,以便可以照顾到在周边地区工作的人们所必需的安全预防措施。原创性/价值-根据作者的最佳知识,到目前为止,没有论文讨论两种流体的入口温度和速度变化的影响。到目前为止,尚未研究诸如有效性,达到稳定状态的时间等性能参数。

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