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Suppression of Two-Phase Flow Instabilities in Parallel Microchannels by Using Synthetic Jets

机译:使用合成射流抑制平行微通道中的两相流动不稳定性

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Two-phase flow instabilities in microchannels exhibit pressure and temperature fluctuations with different frequencies and amplitudes. An active way to suppress the dynamic instabilities in the boiling microchannels is to introduce synthetic jets into the channel fluid. Thus, the bubbles can be condensed before they clog the channel and expand upstream causing flow reversal. The present work experimentally investigated the effects of synthetic jets on microchannel flow boiling. An array of synthetic jets was introduced into the microchannel flow. The strength and frequency of the jets were controlled by changing the driving signals of the piezoelectric driven jet actuator. It is found that the bubbles were effectively condensed inside the jet cavity. The boiling flow reversals were notably delayed by the synthetic jets. Meanwhile, the pressure fluctuation amplitudes were suppressed to some extent. It was also observed that synthetic jets can help to uni-formize the heat sink temperature distribution.
机译:微通道中的两相流不稳定性表现出不同频率和幅度的压力和温度波动。抑制沸腾微通道中动态不稳定性的积极方法是将合成射流引入通道流体中。因此,气泡可以在它们阻塞通道并向上游膨胀之前引起流动逆转之前被冷凝。本工作通过实验研究了合成射流对微通道流动沸腾的影响。将一系列合成射流引入微通道流中。通过改变压电驱动射流致动器的驱动信号来控制射流的强度和频率。发现气泡在喷射腔内有效地冷凝。合成射流显着延迟了沸腾逆流。同时,在某种程度上抑制了压力波动幅度。还观察到合成射流可以帮助使散热器温度分布均匀。

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