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Model of Mass and Heat Transfer during Vacuum Freeze-Drying for Cornea

机译:基角膜真空冷冻干燥过程中的质量和传热模型

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摘要

Cornea is the important apparatus of organism, which has complex cell structure. Heat and mass transfer and thermal parameters during vacuum freeze-drying of keeping corneal activity are studied. The freeze-drying cornea experiments were operated in the homemade vacuum freeze dryer. Pressure of the freeze-drying box was about 50 Pa and temperature was about −10°C by controlled, and operating like this could guarantee survival ratio of the corneal endothelium over the grafting normal. Theory analyzing of corneal freeze-drying, mathematical model of describing heat and mass transfer during vacuum freeze-drying of cornea was established. The analogy computation for the freeze-drying of cornea was made by using finite-element computational software. When pressure of the freeze-drying box was about 50 Pa and temperature was about −10°C, time of double-side drying was 170 min. In this paper, a moving-grid finite-element method was used. The sublimation interface was tracked continuously. The finite-element mesh is moved continuously such that the interface position always coincides with an element node. Computational precision was guaranteed. The computational results were agreed with the experimental results. It proved that the mathematical model was reasonable. The finite-element software is adapted for calculating the heat and mass transfer of corneal freeze-drying.
机译:角膜是具有复杂的细胞结构的重要组织的重要装置。研究了保持角膜活性的真空冷冻干燥过程中的热量和传质和热参数。将冷冻干燥角膜实验在自制真空冷冻干燥器中操作。冷冻干燥箱的压力约为50Pa,通过受控温度约-10℃,如此操作可以保证角膜内皮的存活率在接枝正常上。建立了角膜冻干的理论分析,建立了基角膜真空冷冻干燥过程中的热量和传质的数学模型。通过使用有限元计算软件制备了角膜冻干的类比计算。当冷冻干燥箱的压力约为50Pa和温度约-10℃时,双侧干燥时间为170分钟。本文使用了移动栅有限元方法。连续跟踪升华界面。有限元网格连续移动,使得接口位置总是与元素节点重合。计算精度得到保证。计算结果与实验结果同意。事实证明,数学模型是合理的。有限元软件适用于计算角膜冷冻干燥的热量和传质。

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