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Experimental transient response of a minichannel heat exchanger with step flow variation

机译:逐步流动变化的迷你扬声器热交换器的实验瞬态响应

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Highlights?Hot fluid with different mass flow rate step changes are considered.?A comparison with the limited experimental work from the literature is made.?The liquid outlet temperature response time is presented as the mass flow changes.?The cold fluid exhibits a faster response time than that of the hot fluid.AbstractHeat exchangers are essential components of many systems and their use is extended to include various industrial, chemical, and automotive applications. Heat exchanger behavior affects the total performance of a thermal system. Enhancing this critical component leads to improving the system overall performance and thus its energy efficiency. Since a heat exchanger operates in conjunction with other process equipment, its evaluation under a transient condition is crucial. A transient response of heat exchangers is necessary to evaluate the exchanger performance when subjected to a change in its conditions. The scarcity of experimental data on a transient response of heat exchangers in general and minichannel exchangers in particular is the main motivation for this research. This work is an investigation of an experimental characterization of the transient response of a cross flow liquid-air heat exchanger subjected to step changes in liquid mass flow rate. Hot fluid mass flow rate step changes of 0.5, 0.8, 1.5, and 2.0 are considered and the liquid outlet temperature response time is presented. The results are compared with the limited experimental work from the literature. While the outlet temperatures of both fluids do not respond instantaneously to the step change in the primary fluid mass flow rate, the cold fluid exhibits a faster response time than that of the hot fluid. The step variation increases the Reynolds number which results in a longer hot fluid response time to reach the steady state. The outcome of this work is valuable in the design, selection, and analysis of heat exchangers. The experimental data provided in this work can be used to establish a database for future advances in research. It also provides an overview of the characteristic behavior of certain parameters such as fluid temperatures, response time, and residence time when the heat exchanger is subjected to a change in the hot fluid mass flow rate.]]>
机译:<![cdata [ 亮点 考虑了不同质量流量步骤变化的热流体。 与有限的实验工作相比来自文献。 液体出口温度响应时间作为质量流量变化呈现。 <标签> 冷流体表现出比TH更快的响应时间热流体。 抽象 热交换器是许多系统的基本组件,其使用扩展到包括各种工业,化学和汽车应用。热交换器行为影响热系统的总性能。增强此关键组件导致提高系统整体性能,从而提高其能效。由于热交换器与其他工艺设备一起操作,因此在瞬态条件下的评估至关重要。热交换器的瞬态响应是在经受其条件的变化时评估交换器性能的必要条件。特别是一般和迷你交换机的热交换器瞬态响应的实验数据的稀缺性是这项研究的主要动机。该工作是对经历液体质量流量的步骤变化的交叉流动液 - 空气热交换器的瞬态响应的实验表征的研究。考虑热流体质量流速步长0.5,0.8,1.5和2.0,并呈现液体出口温度响应时间。结果与文献的有限实验工作进行了比较。虽然两种流体的出口温度不会瞬间效应初级流体质量流量的步进变化,但是冷流体表现出比热流体的响应时间更快。步骤变化增加雷诺数,导致较长的热流体响应时间以达到稳态。这项工作的结果在热交换器的设计,选择和分析中具有重要价值。本工作中提供的实验数据可用于建立一个数据库,以备将来的研究进展。它还概述了某些参数的特征行为,例如流体温度,响应时间和在热流体质量流量的变化时的响应时间和停留时间。 ]]>

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