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An investigation on the thermal energy storage in an enclosure packed with micro-encapsulated phase change material

机译:用微封装相变材料填充外壳热能储存的研究

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This study aims to focus on the unsteady heat storage in an air-saturated container filled with micro-encapsulated phase change material (MEPCM) particles. Based on the obtained results, the use of the phase change capsules would increase the thermal storage rate in the cavity and prevent its loss. As indicated by the obtained findings, the temperature of the cold-surface has a significant influence on the heat transfer behavior so that in the case without phase change, the heat is transferred from the cold- and hot-surfaces via the convection and conduction mechanisms until it reaches a steady-state value. On the other hand, in the case of phase change material, a portion of the heat transferred from the hot surface to the cold surface is spent on the phase change process due to the latent heat of melting and yields a higher value of the net thermal storage in the cavity. The time needed for the stabilization of the container during the heat storage process, Foss, increases with decreasing the temperature difference between the hot and cold surfaces. In addition, it takes longer time for the stabilization of the container as the temperatures of the hot and cold surfaces decreases.
机译:本研究旨在专注于填充有微封装的相变材料(Mepcm)颗粒的空气饱和容器中的不稳定蓄热。基于所获得的结果,使用相变胶囊将增加空腔中的热储存速率并防止其损耗。如所得发现所示,冷表面的温度对传热行为产生了显着影响,使得在没有相变的情况下,通过对流和传导机构从冷和热表面传递热量直到它达到稳态值。另一方面,在相变材料的情况下,由于熔化的潜热,从热表面传递到冷表面的一部分从热表面传递到冷表面的热量,并产生较高的净热量值储存在腔内。随着炎热和冷表面之间的温差,在蓄热过程中稳定容器所需的时间随着炎热和冷表面之间的温差而增加。另外,随着热和冷表面的温度降低,容器稳定需要更长的时间。

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