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Effect of fluctuation in inlet airflow temperature on CFD simulation of air-blast chilling process

机译:进气温度波动对鼓风冷却过程CFD模拟的影响

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摘要

Setting the boundary condition of airflow temperature is an important factor affecting the predicting accuracy during the simulation of air-blast chilling process. In this study, numerical simulations using computational fluid dynamics (CFDs) were conducted to predict a coupled heat and mass transfer during chilling of a cooked ham. Based on the experimental airflow tem- perature data, a mathematical formula expressing the fluctuation of airflow temperature with the cooling time was incorporated into the CFD USER FORTRAN code to specify the inlet airflow boundary condition. Comparing with the results predicted by using a constant inlet airflow temperature, influence of the fluctuating inlet airflow temperature on the predicted heat transfer coefficient, surface and core temperatures and weight loss of the ham was examined.
机译:设置气流温度的边界条件是影响鼓风冷却过程模拟过程中预测精度的重要因素。在这项研究中,进行了使用计算流体力学(CFD)的数值模拟,以预测在熟火腿冷却过程中热量和质量的耦合传递。根据实验的气流温度数据,将表示气流温度随冷却时间波动的数学公式合并到CFD USER FORTRAN代码中,以指定入口气流边界条件。与使用恒定入口气流温度预测的结果进行比较,研究了波动的入口气流温度对预测的传热系数,表面和核心温度以及火腿重量损失的影响。

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