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Experimental Study of Ageing Effect in Pool Boiling Heat Transfer

机译:池沸腾换热中老化效应的实验研究

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In recent years, there is an increasing need for better cooling solutions to maintain a uniform and low temperature in high power density electronic devices. With much research effort devoted to it, pool boiling has been identified as a promising method to remove heat with less moving parts and high efficiency. The phase change during pool boiling can absorb large amount of heat and the nucleating bubbles can evacuate into the liquid pool automatically due to buoyance force, thereby assuring liquid rewetting of the heat sink surface and lower its working temperature. For the utilization of pool boiling heat sinks in industries like power generation plants, data centers and military systems, heat sinks are expected to operate consistently with high performance. Therefore, the effect of aging on heat sink performance needs to be evaluated closely. In this study, pool boiling experiments have been conducted with plain and finned heat sinks each for several times with a certain gap up to the highest heat flux and the ageing problem have been examined for the influence in heat transfer performance and heat sink surface characteristics. The main reasons for ageing have been identified as oxidation and deposition and chrome plating has been proved to be a possible solution to alleviate the ageing problem. Also the significance of accounting for ageing effect in reporting for research results and designing pool boiling heat sinks have been discussed.
机译:近年来,对在高功率密度电子设备中保持均匀且低温的更好的冷却解决方案的需求不断增长。经过大量的研究工作,池沸腾已被认为是一种有希望的方法,它以较少的运动部件和较高的效率去除热量。池沸腾过程中的相变会吸收大量热量,并且由于浮力,成核气泡会自动排入液池,从而确保散热器表面的液体重新润湿并降低其工作温度。为了在发电厂,数据中心和军事系统等行业中利用池沸腾散热器,散热器应始终保持高性能。因此,老化对散热片性能的影响需要仔细评估。在这项研究中,已经对平面散热片和散热片散热片进行了几次沸腾实验,每个散热片都有一定的间隙,直至达到最高的热通量,并且研究了老化问题对传热性能和散热片表面特性的影响。已经确定了老化的主要原因是氧化和沉积,业已证明镀铬是减轻老化问题的可能解决方案。还讨论了在报告研究结果和设计池沸腾散热器中考虑老化效应的重要性。

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