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食品干燥的多尺度模型:现状与挑战。

Multi-scale model of food drying: Current status and challenges.

机构信息

a School of Chemistry, Physics and Mechanical Engineering , Faculty of Science and Engineering, Queensland University of Technology , Brisbane , Queensland , Australia.

b Department of Mechanical Engineering , Dhaka University of Engineering & Technology , Gazipur , Bangladesh.

出版信息

Crit Rev Food Sci Nutr. 2018 Mar 24;58(5):858-876. doi: 10.1080/10408398.2016.1227299. Epub 2017 Jul 5.

Abstract

For a long time, food engineers have been trying to describe the physical phenomena that occur during food processing especially drying. Physics-based theoretical modeling is an important tool for the food engineers to reduce the hurdles of experimentation. Drying of food is a multi-physics phenomenon such as coupled heat and mass transfer. Moreover, food structure is multi-scale in nature, and the microstructural features play a great role in the food processing specially in drying. Previously simple macroscopic model was used to describe the drying phenomena which can give a little description about the smaller scale. The multiscale modeling technique can handle all the phenomena that occur during drying. In this special kind of modeling approach, the single scale models from bigger to smaller scales are interconnected. With the help of multiscale modeling framework, the transport process associated with drying can be studied on a smaller scale and the resulting information can be transferred to the bigger scale. This article is devoted to discussing the state of the art multi-scale modeling, its prospect and challenges in the field of drying technology. This article has also given some directions to how to overcome the challenges for successful implementation of multi-scale modeling.

摘要

长期以来,食品工程师一直在努力描述食品加工过程中发生的物理现象,特别是干燥过程。基于物理的理论建模是食品工程师减少实验障碍的重要工具。食品干燥是一种多物理现象,如耦合的传热和传质。此外,食品结构具有多尺度的性质,微观结构特征在食品加工中特别是在干燥中起着重要作用。以前,简单的宏观模型被用来描述干燥现象,这些模型可以对较小的尺度进行一些描述。多尺度建模技术可以处理干燥过程中发生的所有现象。在这种特殊的建模方法中,从较大尺度到较小尺度的单一尺度模型相互连接。借助多尺度建模框架,可以在较小的尺度上研究与干燥相关的传输过程,并将所得信息传递到较大的尺度。本文致力于讨论多尺度建模的最新技术状态、其在干燥技术领域的前景和挑战。本文还为如何克服多尺度建模的挑战以实现成功实施提供了一些方向。

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