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Investigation of the Temperature Fluctuation of Single-Phase Fluid Based Microchannel Heat Sink

机译:单相流体基微通道散热器温度波动研究

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摘要

The temperature fluctuation in a single-phase microchannel heat sink (MCHS) is investigated using the integrated temperature sensors with deionized water as the coolant. Results show that the temperature fluctuation in single phase is not negligible. The causes of the temperature fluctuation are revealed based on both simulation and experiment. It is found that the inlet temperature fluctuation and the gas bubbles separated out from coolant are the main causes. The effect of the inlet temperature fluctuation is global, where the temperatures at different locations change simultaneously. Meanwhile, the gas bubble effect is localized where the temperature changes at different locations are not synchronized. In addition, the relation between temperature fluctuation and temperature gradient is established. The temperature fluctuation increases with the temperature gradient accordingly.
机译:使用具有去离子水作为冷却剂的集成温度传感器来研究单相微通道散热器(MCH)中的温度波动。结果表明,单相的温度波动不可忽略不可规集。基于模拟和实验,揭示了温度波动的原因。发现入口温度波动和从冷却剂分离出的气泡是主要原因。入口温度波动的影响是全球性的,其中不同位置的温度同时变化。同时,气泡效应是本地化的,其中不同位置处的温度变化不同步。此外,建立了温度波动和温度梯度之间的关系。温度波动随温度梯度而增加。

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