首页> 外文会议>ASME international technical conference and exhibition on packaging and integration of electronic and photonic microsystems >SMALL-SCALE VORTICITY INDUCED BY A SELF-OSCILLATING FLUTTERING REED FOR HEAT TRANSFER AUGMENTATION IN AIR COOLED HEAT SINKS
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SMALL-SCALE VORTICITY INDUCED BY A SELF-OSCILLATING FLUTTERING REED FOR HEAT TRANSFER AUGMENTATION IN AIR COOLED HEAT SINKS

机译:自振颤振簧片引起的小规模涡度,用于空气冷却传热的传热增强

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Heat transfer in a high aspect ratio, rectangular mm-scale channel that models a segment of a high-performance, air-cooled heat-sink is enhanced by deliberate formation of unsteady small-scale vortical motions. These small-scale motions are induced by self-fluttering, cantilevered planar thin-film reeds that are placed along the channel's centerline. Heat transfer is enhanced by significant increases in both the local heat transfer coefficient at the fins surfaces, and in the mixing between the thermal boundary layers and the cooler core flow. The present investigation characterizes the thermal performance enhancement by reed actuation compared to the base flow (in the absence of the reeds) in terms of increased power dissipation over a range of flow rates, along with the associated fluid power. It is shown that because the cooling flow rate that is needed to sustain a given heat flux at a given surface temperature is almost two times higher than in the presence of the reeds, the reeds lead to a four-fold increase in thermal performance (as measured by the ratio of power dissipated to fluid power). The thermal effectiveness of the reeds is tested in a multi-channel heat sink, and it is shown that the improvement in heat transfer coefficient of the base flow is similar to that of the single channel.
机译:通过故意形成不稳定的小规模涡旋运动,可以增强高纵横比矩形毫米尺度通道中的热传递,该通道模拟了高性能的风冷散热器的一部分。这些小范围的运动是由沿着通道中心线放置的自振,悬臂式平面薄膜芦苇引起的。翅片表面的局部传热系数以及热边界层和冷却器芯流之间的混合都显着增加,从而增强了传热。本研究的特征在于,与基本流(在没有芦苇的情况下)相比,通过芦苇致动可提高热性能,这是在一定流速范围内增加的功率耗散以及相关的流体动力方面。结果表明,由于在给定的表面温度下维持给定的热通量所需的冷却流量几乎是存在芦苇时的两倍,因此,芦苇的热性能提高了四倍(因为用耗散功率与流体功率之比来衡量)。在多通道散热器中测试了芦苇的热效率,结果表明,基流的传热系数改进与单通道相似。

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