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Analysis of heat and mass transfer mechanism during thermal energy storage and temperature regulation

机译:热能储存温度调节过程中的热和传质机制分析

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摘要

To strengthen the heat and mass transfer capacity and improve the temperature regulation rate, potential storage is taken as the research object in this research to study the heat energy storage of the battery in the low temperature environment. Lattice Boltzmann method is adopted to study the heat energy storage influence mechanism of the temperature regulation system of the low temperature phase-change materials. In addition, the influence of different physical parameters (thermal conductivity and latent heat of phase change) on the thermal insulation of the system in the process of temperature control is revealed. The results show that the mechanism of heat and mass transfer in the process of heat storage and temperature control is related to the different physical properties of phase change materials. The decrease of thermal conductivity and the increase of latent heat of phase change materials will greatly increase the effect of heat energy storage. Therefore, under the action of phase change latent heat, phase change material can effectively extend the holding time of the battery in the low temperature environment.
机译:为了加强热量传递能力,提高温度调节率,潜在的储存作为本研究中的研究对象,以研究低温环境中电池的热能存储。采用格子Boltzmann方法来研究低温相变材料温度调节系统的热能储存机理。另外,揭示了不同物理参数(相变)对温度控制过程中系统的隔热性的不同物理参数(相变潜热热)的影响。结果表明,热储存过程中的热量和传质机制与相变材料的不同物理性质有关。导热率的降低和相变材料的潜热的增加将大大增加热能储存的效果。因此,在相变潜热的作用下,相变材料可以有效地延长电池在低温环境中的保持时间。

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