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A CONTINUUM MODEL FOR AIRFLOW, HEAT AND MASS TRANSFER IN BULK OF CHICORY ROOTS

机译:烟根块体中流,热和质传递的连续模型

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摘要

This article presents a transient 3D CFD model of heat and mass transfer in bulks of chicory roots. The model consists of the system of conservation equations of momentum, energy, and mass for the air phase, and the energy and mass for the product phase without considering the internal gradient in temperature and moisture in the product phase. The interaction between the airflow and the porous media is described by an Ergun-type equation based on experimental data. Heat of respiration is included in the model as an empirically derived function of temperature. A finite volume code is used to solve the model equations. The results show a good agreement between the model and the experiments. Differences between predicted and measured weight loss only amount to a maximum 10% after the initial cooling period. The non-ideal experimental conditions (high velocity, low relative humidity of the air), the various sizes of the products, the small scale of the porous region compared to the size of the product, and the estimation of transfer correlations contribute to the observed differences between experiment and simulation. The model can be applied to study the cooling process in an industrial cold store to find the optimal process settings to improve product quality and reduce product weight loss
机译:本文介绍了菊苣根中大量传热和传质的瞬态3D CFD模型。该模型由空气动量,能量和质量守恒方程组以及产品相的能量和质量守恒方程组组成,而没有考虑产品相中温度和水分的内部梯度。气流和多孔介质之间的相互作用由基于实验数据的Ergun型方程式描述。呼吸热作为经验导出的温度函数包含在模型中。有限体积代码用于求解模型方程。结果表明该模型与实验结果吻合良好。在最初的冷却期之后,预计的重量损失和测量的重量损失之间的差异最大为10%。非理想的实验条件(高速,空气相对湿度低),产品的各种尺寸,与产品尺寸相比较小的多孔区域尺寸以及传递相关性的估算有助于观察到实验与模拟之间的差异。该模型可用于研究工业冷库中的冷却过程,以找到最佳过程设置,以提高产品质量并减少产品重量损失

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