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首页> 外文期刊>International Journal of Heat and Mass Transfer >Analysis of the heat transfer in the asynchronous intermittent laminar flow for mini channels in the recuperator for micro swing engines
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Analysis of the heat transfer in the asynchronous intermittent laminar flow for mini channels in the recuperator for micro swing engines

机译:微型回转发动机换热器中微型通道异步间歇性层流中的传热分析

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A numerical investigation into conjugate heat transfer for a double-tube heat exchanger in mini-scale was conducted, with an asynchronous intermittent laminar flow imposed at the inlets. As a basic component of the micro recuperator for a micro swing engine, a mini double-tube exchanger under the same flow conditions was chosen as the physical model with consideration of variable fluid properties. Results indicate that, for the asynchronous intermittent pulsed flow, the axial wall heat conduction is much more serious and the periodic fluctuation of the solid wall temperature further worsens the heat transfer efficiency. Two dimensionless numbers R* and (C) over bar* are proposed to evaluate the two adverse effects. Then, two key parameters involved in the design of the micro recuperator for the micro swing engine are studied, namely, wall thickness ratio delta/D-c and flow frequency. For certain flow frequencies, as the value of delta/D-c increases, the axial heat conduction is enhanced while the wall temperature fluctuation is reduced. For a given delta/D-c, the flow frequency dually affects the heat exchanger efficiency and the optimum frequency exists. The optimal value increases with the wall thickness ratio. These results lay a good foundation of the micro recuperator design for the micro swing engine. (C) 2019 Elsevier Ltd. All rights reserved.
机译:进行了小规模双管换热器共轭传热的数值研究,并在入口处施加了间歇性的间歇性层流。作为用于微型回转发动机的微型换热器的基本组件,考虑了可变流体特性,选择了在相同流量条件下的微型双管交换器作为物理模型。结果表明,对于异步间歇脉冲流,轴向壁热传导更加严重,固体壁温度的周期性波动进一步恶化了传热效率。建议使用bar *上的两个无因次数R *和(C)来评估这两个不利影响。然后,研究了用于微回转发动机的微型换热器设计的两个关键参数,即壁厚比delta / D-c和流动频率。对于某些流动频率,随着delta / D-c值的增加,轴向导热增强,而壁温波动减小。对于给定的delta / D-c,流动频率会双重影响热交换器的效率,并且存在最佳频率。最佳值随壁厚比增加。这些结果为微型回转发动机的微型换热器设计奠定了良好的基础。 (C)2019 Elsevier Ltd.保留所有权利。

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