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An improving performance evaluation plot (PEP) for energy management in microchannel heat sinks by using nanofluids

机译:通过使用纳米流体改善微通道散热器中的能源管理性能评价情节(PEP)

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摘要

Based on previous works, a performance evaluation plot (PEP) is presented to theoretically evaluate the techniques used in the determination of various thermophysical properties of fluids in energy saving. From it, PEP is divided into "three lines and four zones". Zone-1 indicates enhanced heat transfer without energy-saving, and enhanced heat transfer are in Zone-2, Zone-3 and Zone-4 with energy-saving for a fixed pumping power, pressure drop and flow rate, respectively. Then, microchannel heat sinks (MCHS) with cavities and different ribs arrangements were designed and simulated by using water-Al_2O_3 nanofluids. Based on the estimation indicators of comprehensive thermal performance (PEP and the thermal enhancement factor rfj, all working points located in the Zone-3 and 4 indicate that the increase in the heat transfer ratio is higher than that in the friction factor. The maximum enhancement of η is 2.2517 and it is measured in an odd-symmetric ribs structure (Channel D) with Reynold number equal to 582. The reasons are that the arrangement of odd-symmetric ribs continuously interrupts the development of the flow and thermal boundary layers. Moreover, cavities facilitate the full mixing of cold and hot fluids and reduce pressure drop.
机译:基于以前的作品,提出了一种性能评估曲线(PEP),理论上评价了在节能中测定流体中各种热神经性质的技术。从它来看,PEP分为“三行和四个区域”。 ZONE-1表示没有节能的增强的热传递,并且增强的传热分别在区域-2,ZONE-3和区域4中,分别为固定的泵送电源,压降和流量节省。然后,通过使用水 - Al_2O_3纳米流体设计和模拟具有空腔和不同肋条布置的微通道散热器(MCH)。基于综合热性能(PEP和热增强因子RFJ的估计指示器,位于区3和4中的所有工作点表明传热比的增加高于摩擦系数中的增加。最大增强η是2.2517,它在奇数对称肋结构(通道D)中测量,雷诺数等于582.原因是奇数对称肋的布置连续地中断流动和热边界层的开发。此外,空腔有助于冷热流体的全部混合,减少压降。

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  • 来源
    《International Communications in Heat and Mass Transfer》 |2020年第10期|104808.1-104808.13|共13页
  • 作者单位

    State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization Kunming University of Science and Technology Yunnan 650093 China;

    State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization Kunming University of Science and Technology Yunnan 650093 China;

    State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization Kunming University of Science and Technology Yunnan 650093 China;

    State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization Kunming University of Science and Technology Yunnan 650093 China;

    State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization Kunming University of Science and Technology Yunnan 650093 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MCHS; Performance evaluation plot; Cavity and rib; Nanofluids; CFD;

    机译:MCHS;绩效评估情节;腔和肋骨;纳米流体;差价合约;

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