Evaluation, Monitoring, and Improving the Airflow and Heat Transfer in a Cold Storage of Foodstuffs, CFD Simulation and Experimental Investigation

Zhilwan Majed, Sherko Flamarz
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Abstract

Freshness and quality of fruits and vegetables as well as product saleable weight depend on heat and moisture transfer rate during air-cooling in the cool storages. The main objective of this study was to evaluate and develop a validated CFD model for predicting the temperature and velocity fields in a cold storage. In this study the air temperature, velocity, and non-uniform airflow in cold storage have been studied experimentally and numerically. Experimental and numerical models were employed to investigate cold storage's airflow field, flow pattern, and temperature field. The temperature and the velocity fields were measured in the cold storage filled with two potato pallets by using a hot wire anemometer and thermocouple with a programmable data logger computer. The experimental data was recorded at 60 points of temperature, and 27 points of velocity from three levels; high, middle, and bottom. Numerically the SB (Solid Block) technique was used to assess four turbulence models (Standard k-ε, Realizable k-ε, Standard k-ω, and SST k-ω) to compare with the experimental results for validation. The results of the validation were agreed with the experimental. The comparisons between the numerical results and experimental results revealed that the Shear Stress Transport (SST k-ω) model shows the best performance with the smallest absolute errors for temperature and velocity respectively. As well as the results revealed that the bottom and the top of the room was subjected to fresher and cooler air with relatively higher velocity. According to the study validation and finding, using the SST k-ω model is the best model for investigation in a cold storage, and for the improvement and evaluation of more complex cold storage, to achieve the balance distributions of air velocity, air temperature, and other heat transfer phenomena.
食品冷库中气流与传热的评估、监测与改进,CFD模拟与实验研究
水果和蔬菜的新鲜度和质量以及产品的销售重量取决于冷库中空气冷却过程中的热量和水分传递速率。本研究的主要目的是评估和开发一个有效的CFD模型来预测冷库中的温度和速度场。本文对冷库内的温度、速度和不均匀气流进行了实验和数值研究。采用实验模型和数值模型对冷库的气流场、流型和温度场进行了研究。利用热丝风速仪和热电偶,结合可编程数据记录仪,对装有两个马铃薯托盘的冷库中的温度场和速度场进行了测量。实验数据在60点温度和27点速度下从三个水平记录;高,中,底。采用固体块(Solid Block)技术对四种湍流模型(Standard k-ε、Realizable k-ε、Standard k-ω和SST k-ω)进行数值模拟,与实验结果进行对比验证。验证结果与实验结果一致。数值结果与实验结果的比较表明,剪切应力输运(SST k-ω)模型在温度和速度上的绝对误差最小,表现出最好的性能。结果还表明,房间的底部和顶部受到相对较高速度的新鲜空气和较冷空气的影响。根据研究验证和发现,使用SST k-ω模型是在冷库中进行调查的最佳模型,对于更复杂的冷库进行改进和评估,以实现风速,空气温度和其他传热现象的平衡分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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