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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >An experimental study on heat transfer characteristics of paraffin wax in horizontal double pipe heat latent heat storage unit
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An experimental study on heat transfer characteristics of paraffin wax in horizontal double pipe heat latent heat storage unit

机译:卧式双管蓄热式储热装置中石蜡的传热特性的实验研究

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摘要

An experimental study is conducted to investigate the melting and solidification processes of paraffin wax as a phase change material (PCM) in horizontal double pipe heat latent heat storage unit. The present work on phase change process includes study of temperature variations along the axial distances in PCM, determination of heat transfer coefficient as well as the heat flow rate. A series of experiments was conducted to investigate the effect of increasing the inlet temperature and the mass flow rate of the heat transfer fluid (HTF) both on the charging and discharging processes of the PCM. The experimental results show that the PCM melts and solidifies congruently, and the melting front moves from the left to right side of the PCM container whereas the solidification front moves from right to the left along the axial distances in the PCM container. The results indicate that natural convection dominates the melting process in the liquid phase due to buoyancy effects. On the other hand, the solidification process is dominated by conduction. The flow rate and inlet temperature of the HTF in the experiment range has a significant effect on the phase change processes. The results also indicate that the heat transfer coefficient between the HTF and the PCM was affected by the Reynolds number more during the melting process than during the solidification process. Heat flow rate during the melting and solidification process increased by 25% and 11%, respectively, in the case of increase or decrease by 2 ℃ of the inlet HTF temperature. The results of this study show that by increasing the inlet water temperature from 70 ℃ to 74 ℃, total melting time can be decreased by 31%.
机译:进行了一项实验研究,以研究石蜡作为相变材料(PCM)在卧式双管热潜热装置中的熔化和固化过程。目前有关相变过程的工作包括研究沿PCM中沿轴向距离的温度变化,确定传热系数以及热流率。进行了一系列实验,以研究增加入口温度和传热流体(HTF)的质量流率对PCM的充放电过程的影响。实验结果表明,PCM完全融化并凝固,熔化前沿从PCM容器的轴向距离从PCM容器的左侧移动到右侧,而凝固前沿从右向左移动。结果表明,由于浮力作用,自然对流主导着液相的熔化过程。另一方面,凝固过程主要由传导引起。在实验范围内,HTF的流速和入口温度对相变过程有重要影响。结果还表明,在熔化过程中,与凝固过程相比,HTF和PCM之间的传热系数受雷诺数的影响更大。在入口HTF温度升高或降低2℃的情况下,熔融和凝固过程中的热流率分别增加25%和11%。研究结果表明,通过将进水温度从70℃提高到74℃,总熔化时间可以减少31%。

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