首页> 外文期刊>International Journal of Heat and Mass Transfer >Enhancing heat transfer in air-cooled heat sinks using piezoelectrically-driven agitators and synthetic jets
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Enhancing heat transfer in air-cooled heat sinks using piezoelectrically-driven agitators and synthetic jets

机译:使用压电驱动的搅拌器和合成射流增强风冷散热器中的热传递

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摘要

Air-cooled heat sinks are widely used for microelectronics cooling. Piezoelectrically-driven agitators and synthetic jets(syn-jets)have been reported as good options in enhancing heat transfer on nearby surfaces. This study proposes that agitators and syn-jets be integrated within air-cooled heat sinks to significantly augment heat transfer performance. The proposed integration is investigated experimentally and computationally in a single-channel heat sink with one agitator and two syn-jet arrays. The study of a single channel between two fins is a precursor to the design of a full scale, multi-channel heat sink. The agitator and syn-jet arrays are separately driven by three piezoelectric stacks operating at their individual resonant frequencies to actively disrupt and mix the bulk air flow within the channel. The experiments show that the combination of the agitator and syn-jets raises the heat transfer coefficient of the channel by 82.4%, compared with a same channel having channel flow only. The computations show similar rises that agree well with the experiments. The numerical simulations attribute the active heat transfer enhancement to the turbulence introduced in the channel flow near the tips of the fins which constitute the channel walls by the syn-jets and the vortices introduced in the channel flow near the side and base of the channel walls by the agitator plate. Heat transfer enhancement by the agitator and synjets increases as their amplitude or frequency increases, but the increase percentage by these active components decreases as the channel flow velocity increases. A correlation between the average Nusselt number for the channel walls and the Reynolds numbers for the channel flow, agitator, and syn-jet is established.
机译:风冷散热器广泛用于微电子冷却。压电驱动的搅拌器和合成射流(syn-jets)据报道是增强附近表面传热的良好选择。这项研究建议将搅拌器和同步喷射器集成在风冷散热器中,以显着提高传热性能。在具有一个搅拌器和两个syn-jet阵列的单通道散热器中,对所提出的集成进行了实验和计算研究。对两个散热片之间的单个通道的研究是全面多通道散热器设计的前提。搅拌器和syn-jet阵列由三个压电堆栈分别驱动,这三个压电堆栈以其各自的共振频率工作,以主动破坏和混合通道内的大量空气。实验表明,与仅具有通道流的相同通道相比,搅拌器和同步喷嘴的组合使通道的传热系数提高了82.4%。计算表明类似的上升与实验吻合得很好。数值模拟将主动传热的增强归因于在翼片的尖端附近的通道流中引入的湍流,这些湍流通过合成射流和在通道壁的侧面和底部附近的通道流中引入的涡流构成通道壁。通过搅拌盘。搅拌器和synjet的传热增强随着振幅或频率的增加而增加,但是这些有效成分的增加百分比随通道流速的增加而减小。在通道壁的平均努塞尔数与通道流量,搅拌器和同步喷射的雷诺数之间建立了相关性。

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  • 作者单位

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street SE, Minneapolis, MN 55455, USA;

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street SE, Minneapolis, MN 55455, USA;

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street SE, Minneapolis, MN 55455, USA;

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street SE, Minneapolis, MN 55455, USA;

    Thermacore Inc., Lancaster, PA 17601, USA;

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street SE, Minneapolis, MN 55455, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Active heat transfer; Heat sink; Flow agitation; Synthetic jet; Electronics cooling;

    机译:主动传热;散热器;流动搅拌;合成射流电子冷却;

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