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Computational Fluid Dynamics data for improving freeze-dryers design

机译:用于改善冻干机设计的计算流体动力学数据

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Computational Fluid Dynamics (CFD) can be used to simulate different parts of an industrial freeze-drying equipment and to properly design them; in particular data concerning the freeze-dryer chamber and the duct connecting the chamber with the condenser, with the valves and vanes eventually present are given here, and can be used to understand the behavior of the apparatus allowing an improved design. Pilot and large scale freeze-drying chambers have been considered; data of a detailed simulation of a complete pilot scale apparatus, including duct and condenser, are included. Data on conductance of an empty duct with different L/D ratio, on disk valves with different geometry, and on mushroom valve are presented. Velocity, pressure, temperature and composition fields are reported on selected planes for chambers and valves. Results of dynamic simulations are also presented, to evaluate possible performance of monitoring devices in the chamber. Some further data, with detailed interpretation and discussion of the presented data can be found in the related research article by Barresi et al. and Marchisio et al. .
机译:计算流体动力学(CFD)可用于模拟工业冷冻干燥设备的不同部位,并适当地设计它们;特别是在这里给出了与冷凝器连接腔室的冻干机和连接腔室的管道的数据,并且在此处提供阀门和叶片,并且可用于理解允许改进的设计的装置的行为。考虑了飞行员和大型冷冻干燥室;包括一个完整的导频尺度装置的详细模拟的数据,包括管道和冷凝器。提出了关于具有不同几何形状的磁盘阀和蘑菇阀的磁盘阀的空管的电导数据。报告速度,压力,温度和成分领域在腔室和阀门的选定平面上报告。还提出了动态仿真的结果,以评估腔室中的监测装置的可能性能。一些进一步的数据,具有详细的解释和讨论所呈现的数据,可以在Barresi等人的相关研究文章中找到。和marchisio等。 。

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