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Computer-Aided Framework for the Design of Freeze-Drying Cycles: Optimization of the Operating Conditions of the Primary Drying Stage

机译:冷冻干燥循环设计的计算机辅助框架:优化初级干燥阶段的操作条件

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This paper deals with the freeze-drying process and, in particular, with the optimization of the operating conditions of the primary drying stage. When designing a freeze-drying cycle, process control aims at obtaining the values of the operating conditions (temperature of the heating fluid and pressure in the drying chamber) resulting in a product temperature lower than the limit value of the product, and in the shortest drying time. This is particularly challenging, mainly due to the intrinsic nonlinearity of the system. In this framework, deep process knowledge is required for deriving a suitable process dynamic model that can be used to calculate the design space for the primary drying stage. The design space can then be used to properly design (and optimize) the process, preserving product quality. The case of a product whose dried layer resistance, one of the key model parameters, is affected by the operating conditions is addressed in this paper, and a simple and effective method to calculate the design space in this case is presented and discussed.
机译:本文涉及冷冻干燥过程,尤其是初步干燥阶段操作条件的优化。在设计冷冻干燥循环时,过程控制旨在获得操作条件的值(加热流体的温度和干燥室中的压力),从而使产品温度低于产品的极限值,并在最短的时间内干燥时间。这特别具有挑战性,主要是由于系统固有的非线性。在此框架中,需要深入的过程知识才能得出合适的过程动力学模型,该模型可用于计算初级干燥阶段的设计空间。然后,可以使用设计空间来适当地设计(和优化)过程,从而保持产品质量。本文讨论了一种产品的情况,该产品的干层电阻是模型的关键参数之一,它受工作条件的影响,并提出并讨论了一种简单有效的方法来计算设计空间。

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