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Freeze-drying modeling via multi-phase porous media transport model

机译:多相多孔介质传输模型冷冻干燥建模

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摘要

A multi-phase porous media transport model is built using distributed sublimation front approach and fixed grid meshing in order to simulate the freeze drying process. The model is tested numerically in multi-dimensions using 1D, 2D and 3D models. Models are solved for different aspect ratios with different heating methods like surface radiation, surface conduction and volumetric (microwave) heating. The involved critical parameters are discussed comprehensively in the results such as the maximum operating temperature, the maximum sublimation pressure, the total drying time and the overall power consumption. The results show that at low aspect ratios in surface heating technique, the 3D model is mandatory due to the large deviation in the drying time, maximum temperature and maximum pressure with both 2D and 1D models. Comparison between the present model and previous experimental and numerical works has been executed and good agreement has been observed.
机译:使用分布式升华前进方法和固定网格啮合构建多相多孔介质传输模型,以模拟冷冻干燥过程。 使用1D,2D和3D模型,在数值上以多维进行测试。 用不同的加热方法如表面辐射,表面传导和体积(微波)加热等不同的宽高比来解决模型。 涉及的临界参数在最大工作温度,最大升华压力,总干燥时间和整体功耗之类的结果中综合讨论。 结果表明,在表面加热技术的低纵横比下,由于干燥时间的偏差,具有2D和1D模型的较大偏差,3D模型是强制性的。 已经执行了本模型与先前实验和数值作品之间的比较,并且已观察到良好的一致性。

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