Heat Transfer Analysis of Supercritical Methane in Microchannels with Different Geometric Configurations On High Power Electromechanical Actuator

IF 2.2 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Z. Gao, Tianhu Wang, Yuxin Yang, Xiaolong Shang, Junhua Bai, Peng Li
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引用次数: 2

Abstract

The issue of regenerative cooling is one of the most important key technologies of flight vehicles, which is applied into both the engine and high-power electrical equipment. One pattern of regenerative cooling channels is the microchannel heat sinks, which are thought as a prospective means of improving heat removal capacities on electrical equipment of smaller sizes. In this paper, three numerical models with different geometric configurations, namely straight, zigzag, and sinusoid respectively, are built to probe into the thermal hydraulic performance while heat transfer mechanism of supercritical methane in microchannel heat sinks for the heat removal of high-power electromechanical actuator is also explored. In addition, some crucial influence factors on heat transfer such as inlet Reynolds number, operating pressure and heating power are investigated. The calculation results imply the positive effect of wavy configurations on heat transfer and confirm the important effect of buoyancy force of supercritical methane in channels. The heat sinks with wavy channel show obvious advantages on comprehensive thermal performance including overall thermal performance parameter ? and thermal resistance R compared with that of the straight one. The highest Nu and average heat transfer coefficient am appear in the heat sink with zigzag channels, but the pumping power of the heat sink with sinusoidal channels is lower due to the smaller flow loss.
超临界甲烷在大功率机电执行器上不同几何结构微通道中的传热分析
蓄热冷却问题是飞行器最重要的关键技术之一,在发动机和大功率电气设备中都有应用。再生冷却通道的一种模式是微通道散热器,这被认为是提高小尺寸电气设备的散热能力的一种有前途的手段。本文分别建立了直线型、之字形型和正弦型三种不同几何构型的数值模型,探讨了超临界甲烷在大功率机电致动器散热微通道散热器中的热液性能,探讨了超临界甲烷在大功率机电致动器散热微通道散热器中的传热机理。此外,还对进口雷诺数、工作压力和加热功率等影响传热的关键因素进行了研究。计算结果表明,波浪构型对换热有积极的影响,并证实了通道内超临界甲烷浮力的重要作用。波浪形通道散热器在综合热性能指标上具有明显的优势。与直管相比,热阻R。锯齿形通道的散热器Nu和平均换热系数am最高,而正弦通道的散热器由于流动损失较小,泵送功率较低。
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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来源期刊
Journal of Electronic Packaging
Journal of Electronic Packaging 工程技术-工程:电子与电气
CiteScore
4.90
自引率
6.20%
发文量
44
审稿时长
3 months
期刊介绍: The Journal of Electronic Packaging publishes papers that use experimental and theoretical (analytical and computer-aided) methods, approaches, and techniques to address and solve various mechanical, materials, and reliability problems encountered in the analysis, design, manufacturing, testing, and operation of electronic and photonics components, devices, and systems. Scope: Microsystems packaging; Systems integration; Flexible electronics; Materials with nano structures and in general small scale systems.
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