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首页> 外文期刊>日本食品科学工学会誌 >Heat-induced flow and temperature distribution in canned foods containingliquid and particles [Japanese]
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Heat-induced flow and temperature distribution in canned foods containingliquid and particles [Japanese]

机译:含有液体和颗粒的罐头食品中的热诱导流量和温度分布[日语]

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摘要

Natural convection heat transfer was experimentally investigated in a cylindrical can packed with liquid and particles. White ceramic particles were used as a model tracer to observe the flow of the content easily. Flow visualization of the tracer and temperature measurement for this system were carried out to make clear the natural convection mechanism. According to the observation of natural convection, axisymetric flow could be assumed; three-dimensional problem could be reduced to two dimensions. Darcy's number, which was calculated from the size of the can and the permeability of the porous medium, indicated that Darcy's law could be applicable to the flow analysis in this system. A mathematical model was developed for predicting flow patterns and temperature profiles during heating of canned foods containing liquid and particles. The calculated temperature profile agreed closely with the experimental one.
机译:在装有液体和颗粒的圆柱形罐中,对自然对流换热进行了实验研究。将白色陶瓷颗粒用作模型示踪剂,以轻松观察内容物的流动。对该系统进行示踪剂流动可视化和温度测量,以弄清自然对流机理。根据自然对流的观测,可以假定为轴流。三维问题可以简化为二维。由罐的大小和多孔介质的渗透率计算出的达西数表明,达西定律可适用于该系统中的流动分析。建立了数学模型,以预测加热包含液体和颗粒的罐头食品期间的流动模式和温度曲线。计算得出的温度曲线与实验曲线非常吻合。

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