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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >An experimental study of the latent functionally thermal fluid with micro-encapsulated phase change material particles flowing in microchannels
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An experimental study of the latent functionally thermal fluid with micro-encapsulated phase change material particles flowing in microchannels

机译:具有微囊化相变材料颗粒在微通道中流动的功能性潜热流体的实验研究

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Phase change material holds a good promise as a media of thermal energy storage and intensive heat flux removal. In this context, experiments were conducted to investigate the hydrodynamic and thermodynamic properties of a latent thermal fluid, which consisted of water and well dispersed micro-encapsulated phase change material (MEPCM) particles, flowing in parallel microchannels. It is suggested that MEPCM particles loading induces much higher pressure drop, which is very sensitive to temperature. Compared against water, the heat transfer performance of MEPCM slurry performs much better owing to particles aggregation, collision and micro-convective around the particles. Besides these, latent heat absorbed during phase change process makes the key contribution. It is found that with melting occurrence, Nusselt number of the slurry with only 2% MEPCM particles would increase remarkably and achieves 1.36 times as that of pure water, which is very benefit to the thermal management system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:相变材料作为热能存储和大量热通量去除的媒介具有良好的前景。在这种情况下,进行了实验以研究潜热流体的水动力和热力学性质,该潜热流体由水和分散良好的微囊化相变材料(MEPCM)颗粒组成,并在平行的微通道中流动。有人认为,MEPCM颗粒的负载会引起更高的压降,这对温度非常敏感。与水相比,由于颗粒聚集,碰撞和颗粒周围的微对流,MEPCM浆料的传热性能要好得多。除此之外,相变过程中吸收的潜热也是关键因素。结果发现,随着熔融的发生,仅含2%MEPCM颗粒的浆液的Nusselt数将显着增加,达到纯水的1.36倍,这对热管理系统非常有利。 (C)2016 Elsevier Ltd.保留所有权利。

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