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Mathematical modeling of an aqueous film coating process in a Bohle Lab-Coater: Part 2: Application of the model

机译:Bohle Lab-Coater中水膜涂布过程的数学模型:第2部分:模型的应用

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摘要

For the prediction of the air and product temperatures, the product moisture, and the air humidity during a coating process in a Bohle Lab-Coater, a model was developed. The purpose of this work was to determine the limit moisture, the critical moisture, and the constant for the exchange rate between both zones and to use these values for other sets of experiments to test the model. The adaptation of the 3 parameters (limit moisture, critical moisture, and exchange rate constant), was done by calculation of the product temperature in both zones for several sets of parameters in order to minimize the sum of square deviation between the calculated and the measured product temperatures. This set of parameters was used to test the validity of the model. By applying the model, the product temperature could be predicted based on the product, process, and equipment-related parameters. Hence, the model can be used to theoretically investigate the influence of different process paramaters. The mean difference between the predicted, and measured product temperatures in the steady state is ≈2 up to 3 K using the determined parameter set for the limit moisture, the critical moisture, and the exchange rate constant. The model is useful for the prediction of the air and product temperatures, the product moisture, and air humidity during a coating process in the Bohle Lab-Coater using round, biconvex tablets.
机译:为了预测Bohle Lab-Coater涂布过程中的空气和产品温度,产品湿度和空气湿度,开发了一个模型。这项工作的目的是确定两个区域之间的极限水分,临界水分和交换速率常数,并将这些值用于其他组实验以测试模型。通过计算两个区域中几组参数的产品温度,可以对3个参数(极限水分,临界水分和交换速率常数)进行调整,以最大程度地减少计算值和测量值之间的平方偏差之和。产品温度。这组参数用于测试模型的有效性。通过应用该模型,可以根据产品,过程和设备相关的参数预测产品温度。因此,该模型可用于理论上研究不同过程参数的影响。使用为极限水分,临界水分和交换速率常数确定的参数集,稳态下预测和测量的产品温度之间的平均差为≈2到3K。该模型可用于预测在Bohle Lab-Coater中使用圆形双凸片剂进行包衣过程中的空气和产品温度,产品湿度和空气湿度。

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