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Heat and Mass Transfer of the Droplet Vacuum Freezing Process Based on the Diffusion-controlled Evaporation and Phase Transition Mechanism

机译:基于扩散控制蒸发和相变机理的液滴真空冷冻过程的传热传质

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摘要

A frozen phase transition model is developed to investigate the heat and mass transfer of a single water droplet during the vacuum freezing process. The model is based on the diffusion-controlled evaporation mechanism and phase transition characteristics. The droplet vacuum freezing process can be divided into three stages according to the droplet states and the time order. It includes the evaporation freezing stage, the isothermal freezing stage and the sublimation freezing stage. A numerical calculation is performed, and the result is analysed. The effects of the vacuum chamber pressure, initial droplet diameter and initial droplet temperature on the heat and mass transfer characteristics at each stage are studied. The droplet experiences supercooling breakdown at the end of the evaporation freezing stage before the isothermal freezing stage begins. The temperature is transiently raised as a result of the supercooling breakdown phenomenon, whose effects on the freezing process and freezing parameters are considered.
机译:建立了冷冻相变模型,以研究真空冷冻过程中单个水滴的传热和传质。该模型基于扩散控制的蒸发机理和相变特性。根据液滴的状态和时间顺序,液滴的真空冷冻过程可分为三个阶段。它包括蒸发冷冻阶段,等温冷冻阶段和升华冷冻阶段。进行数值计算,并对结果进行分析。研究了真空室压力,初始液滴直径和初始液滴温度对每个阶段的传热和传质特性的影响。在等温冷冻阶段开始之前,液滴在蒸发冷冻阶段结束时经历过冷分解。由于过冷分解现象,温度暂时升高,考虑了其对冷冻过程和冷冻参数的影响。

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