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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Heat and Mass Transfer of Droplet Vacuum Freezing Process Based on Dynamic Mesh
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Heat and Mass Transfer of Droplet Vacuum Freezing Process Based on Dynamic Mesh

机译:基于动态网状的液滴真空冷冻过程的热量和传质

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摘要

A numerical simulation using dynamic mesh method by COMSOL has been developed to model heat and mass transfer during vacuum freezing by evaporation of a single droplet. The initial droplet diameter, initial droplet temperature, and vacuum chamber pressure effect are studied. The surface and center temperature curve was predicted to show the effect. The mass transfer rate and radius displacement were also calculated. The results show the dynamic mesh shows well the freezing process with the radius reduction of droplet. The initial droplet diameter, initial droplet temperature, and vacuum pressure have obvious effect on freezing process. The total freezing time is about 200 s, 300 s, and 400 s for droplet diameter 7.5 mm, 10.5 mm, and 12.5 mm, respectively. The vacuum pressure less than 200 Pa is enough for the less time to freezing the droplet, that is, the key point in freezing time. The initial droplet temperature has obvious effect on freezing but little effect on freezing temperature.
机译:使用动态网格法通过COMSOL的数值模拟真空由单个微滴的蒸发在冷冻过程中已经发展到模型传热和传质。研究了初始液滴直径,初始液滴温度和真空室压力效应。预测表面和中心温度曲线显示效果。还计算了传质速率和半径位移。结果表明动态网格显示了液压液体的半径减少的冷冻过程。初始液滴直径,初始液滴温度和真空压力对冷冻过程具有明显的影响。冻结时间大约200  s,300  s,和400  s,液滴直径7.5  mm,10.5  mm,12.5  mm 。真空压力小于200  PA足够少的时间来冻结液滴,即冰冻时间的关键点。初始液滴温度对冷冻但对冷冻温度的影响很小。

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