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Heat transfer enhancement due to pulsating flow in a microchannel heat sink

机译:微通道散热器中的脉动流增强了传热

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Heat sinks with liquid forced convection in microchannels are targeted for cooling microelectronic devices with a high dissipated power density. Given the inherent stability problems associated with two-phase microchannel heat transfer, this paper investigates experimentally the potential for enhancing single-phase convection cooling rates by applying pulsating flow. To this end, a pulsator device is developed which allows independent continuous control of pulsation amplitude and frequency. For a single microchannel geometry and a range of parameters (steady and pulsating Reynolds number, Womersley number), experimental results are presented for the overall heat transfer enhancement compared to the steady flow case. Enhancement factors up to 40% are observed for the investigated parameter range (50 ≪ Re ≪ 400, 35 ≪ Rep ≪ 225,2 ≪ Wo ≪ 17).
机译:在微通道中具有液体强制对流的散热器的目标是用于冷却具有高耗散功率密度的微电子设备。考虑到与两相微通道传热相关的固有稳定性问题,本文实验研究了通过施加脉动流来提高单相对流冷却速率的潜力。为此,开发了一种脉动器设备,其允许独立连续地控制脉动幅度和频率。对于单个微通道几何结构和一系列参数(稳态和脉动雷诺数,Womersley数),与稳态流动情况相比,整体传热增强的实验结果已经给出。对于所研究的参数范围,可以观察到高达40%的增强因子(50≪ Re≪ 400、35≪ Re p ≪ 225,2≪ Wo≪ 17)。

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