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Analysis of Heat Transfer Mechanism for Shelf Vacuum Freeze-Drying Equipment

机译:架子真空冷冻干燥设备的传热机理分析

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Vacuum freeze-drying technology is applicable to the process of high heat-sensitive products. Due to the long drying period and extremely low processing temperature and pressure, the uniform and efficiency of heat transfer fluid temperature in shelf are critical for product quality. Therefore, in this study, the commercial computer fluid dynamics (CFD) software, FLUENT, was utilized for three-dimension numerical simulation of the shelf vacuum freeze-drying process. The influences of different inlet and outlet positions for shelves on the uniformity of the flow rate and temperature were discussed. Moreover, it explored the impacts on the temperature gradient of shelves after heat exchange of different flow rates and low temperature materials. In order to reduce the developing time and optimize the design, the various secondary refrigerants in different plies of shelves were investigated. According to the effect of heat exchange between different flow rates and low temperature layer material shelves on the temperature gradient of shelves surface, the minimum temperature gradient was 20 L/min, and the maximum was 2.5 L/min.
机译:真空冷冻干燥技术适用于对高热敏感产品的加工。由于干燥时间长,加工温度和压力极低,因此货架中传热流体温度的均匀性和效率对产品质量至关重要。因此,在这项研究中,商用计算机流体动力学(CFD)软件FLUENT被用于架子真空冷冻干燥过程的三维数值模拟。讨论了搁板的不同进,出口位置对流速和温度均匀性的影响。此外,它还探讨了不同流速和低温材料进行热交换后,对货架温度梯度的影响。为了减少开发时间并优化设计,研究了不同层架上的各种二次制冷剂。根据不同流量与低温层物料架之间的热交换对货架表面温度梯度的影响,最小温度梯度为20 L / min,最大温度梯度为2.5 L / min。

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