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Effects of thermal conductivity and density on phase change materials-based thermal energy storage systems

机译:导热系数和密度对基于相变材料的热能存储系统的影响

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This research systematically studies the impacts of thermal conductivity and density of phase change materials (PCM) on the characteristics of PCM-based thermal energy storage systems (TES). We show that the eutectic PCM, owing to its high thermal conductivity, has more stable temperature evolution than that of paraffin wax during both heat charging and discharging processes. The paraffin wax has an enhanced charging rate, when the heat is applied at the bottom, as a result of convection driven by the obvious temperature-dependent density of liquid paraffin wax. The convection and orientation effects are significant in the charging process of paraffin wax, but insignificant for eutectic PCM, which are further confirmed by visualization and numerical studies. Specifically, a gap forms between the covered plate wall and the solid paraffin wax after discharging process. This gap significantly inhibits the charging process in a heat charging and discharging cycle. We also observed that the charging efficiency of the paraffin wax is substantially reduced by its high contact thermal resistance, which is 2-3 orders of magnitude higher than that of eutectic PCM. This shows that rapid thermal energy charging/discharging rates, a highly desirable stable working temperature, and orientation-insensitivity of TES can be achieved using PCM with a high thermal conductivity and a temperature-independent density. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究系统地研究了相变材料(PCM)的导热系数和密度对基于PCM的热能存储系统(TES)的特性的影响。我们表明,在热充放电过程中,共晶PCM由于其高导热性,比石蜡具有更稳定的温度变化。当底部加热时,由于明显的温度相关液体蜡密度引起对流,因此石蜡具有较高的带电率。对流和取向效应在石蜡的装料过程中很重要,但对共晶PCM却不重要,这已通过可视化和数值研究得到进一步证实。具体地,在排出过程之后,在覆盖的板壁和固体石蜡之间形成间隙。该间隙显着地抑制了热充放电循环中的充电过程。我们还观察到,石蜡的高接触热阻大大降低了石蜡的充电效率,该接触热阻比共晶PCM高2-3个数量级。这表明,使用具有高导热率和与温度无关的密度的PCM可以实现快速的热能充电/放电速率,非常理想的稳定工作温度以及TES的取向不敏感性。 (C)2019 Elsevier Ltd.保留所有权利。

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