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Heat transfer enhancement of round pin heat sinks using N-eicosane as PCM: an experimental study

机译:使用正二十烷作为PCM增强圆针型散热器的传热:实验研究

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摘要

This experimental work investigates the combination of phase change material (PCM) with thermal storage units to combat excessive heat generation in high application hand-held conveniences. Four heat sink configurations including a no fin and three pin-fin arrays having pin diameters of 2mm, 3mm and 4mm respectively are tested using four discreet volume fractions (0.0, 0.3, 0.6, 0.9) of n-eicosane as PCM under heavy usage power levels of 5-7W. Round pins, made in aluminum, are incorporated in 9% volume percentage of sink's bulk to act as thermal conductivity enhancer (TCE) in heat sinks. Parametric probe involved the impact of n-eicosane volume fractions, spatial variation of temperature, Fourier number (Fo), enhancement ratio, Modified Stephan number (Ste*), heat capacity as well as thermal conductance to provide for insights on superior thermal performance for distinct operating conditions of the hand-held. The outturns proclaimed that increasing volume fractions of PCM result in increased service time of the heat sinks. Effect of pin-fin configurations were found to be negligible on spatial temperature variation. Amongst all heat sinks, 3mm pin-fin arrangement resulted in highest enhancement ratio, heat capacity & thermal conductance for all volume fractions of n-eicosane, thereby, demonstrated best thermal conduct of all four sink arrays.
机译:这项实验性工作研究了相变材料(PCM)与蓄热单元的组合,以解决在手持式便利应用中产生过多热量的问题。在高使用功率下,使用四个离散体积分数(0.0、0.3、0.6、0.9)的正二十烷作为PCM,测试了包括无鳍的三个散热器配置和分别具有2mm,3mm和4mm引脚直径的三个pin-fin阵列级别为5-7W。铝制的圆形销钉以9%的体积计纳入散热器的体积中,用作散热器中的导热系数(TCE)。参数探头涉及正二十烷体积分数,温度的空间变化,傅立叶数(Fo),增强比,改良斯蒂芬数(Ste *),热容量和热导率的影响,以提供有关以下方面的卓越热性能的见解:手持式的独特操作条件。结果表明,PCM体积分数的增加会导致散热器的使用寿命增加。发现针翅结构对空间温度变化的影响可忽略不计。在所有散热器中,3 mm的针鳍式布置导致正二十烷的所有体积分数具有最高的增强比,热容量和热导率,从而证明了所有四个散热器阵列的最佳导热性。

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