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MODELLING THE MIXING PROCESS OF LIQUIDS WITH CONCENTRATES IN CAPSULES

机译:用胶囊中的浓缩液模拟液体的混合过程

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In food industry mixing of concentrates contained in capsules with liquids such as milk or water for the production of warm drinks is becoming common practice the last couple of years. This process is characterized by complicated physical phenomena: the concentrates' viscosity is temperature dependent, the liquid is non-Newtonian and the mixing process is turbulent. The industrial objective at the end of the process is a uniform liquid end product with as little as possible left over concentrate in the capsule. The optimization of the mixing process is typically done by trial and error in laboratories, which is time consuming and expensive. Computer models can significantly reduce the manufacturing costs associated with laboratory optimization and give a better insight of the process. The objective of this paper is to create a computer simulation model that is able to capture the physical processes occurring during the production of warm drinks using finite elements. The model should be able to correctly represent the mixing of the solid concentrate with the liquid injected inside the capsule compartment. Finite element method is used to solve the flow, heat exchange and concentration problem. In the paper different shapes of the capsule and how they influence the mixing are compared and their suitability for industry according to the amount of concentrate left in the capsule at the end of the process are assessed.
机译:在食品工业中,将胶囊中所含浓缩物与牛奶或水等液体混合以生产热饮已成为近几年的普遍做法。该过程的特征是复杂的物理现象:精矿的粘度与温度有关,液体为非牛顿流体,混合过程为湍流。在该过程结束时的工业目标是均匀的液体终产物,其中胶囊中残留的浓缩物尽可能少。混合过程的优化通常是通过实验室的反复试验来完成的,这既耗时又昂贵。计算机模型可以大大降低与实验室优化相关的制造成本,并可以更好地了解过程。本文的目的是创建一个计算机仿真模型,该模型能够使用有限元捕捉生产热饮过程中发生的物理过程。该模型应该能够正确表示固体浓缩物与胶囊舱内注入的液体的混合情况。有限元法被用来解决流动,热交换和集中的问题。在纸中,比较了胶囊的不同形状以及它们如何影响混合,并根据过程结束时残留在胶囊中的浓缩物的量,评估了它们在工业上的适用性。

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