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首页> 外文期刊>International Journal of Refrigeration >Analysis of an internal structure for refrigerated container: Improving distribution of cooling capacity
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Analysis of an internal structure for refrigerated container: Improving distribution of cooling capacity

机译:冷藏集装箱内部结构分析:提高冷却能力分布

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摘要

An improved internal structure is proposed to improve the distribution of cooling capacity in refrigerated container. Firstly, a computational fluid dynamics model was established and the fruit stacks was simplified to be porous medium. The flow resistance coefficient was obtained by combining theory and numerical simulation and then verified. Secondly, three baffles were added to reduce the loss of cold airflow by blocking the airflow through air-gaps. The velocity and temperature of the previous refrigerated container and the improved refrigerated container were obtained and compared. The cold airflow distribution in the improved refrigerated container is more uniform. The improvement of vertical velocity in all stacks is in the range of 5.24% - 425.04%. The cooling performance of the two refrigerated containers were also obtained. The variation of temperature distribution is within +/- 1 degrees C and the cooling time is also reduced by at least 22.9% in the improved refrigerated container. Finally, the proposed structure showed good applicability for different fruits and vegetables. For all produce tested, the decrease ratio of temperature rise in the improved refrigerated container relative to the previous refrigerated container ranges from 34.0% to 59.5%. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:提出了一种改进的内部结构,以改善冷藏容器中的冷却能力分布。首先,建立了计算流体动力学模型,简化了水果堆叠是多孔介质。通过组合理论和数值模拟来获得流动性系数,然后验证。其次,添加了三个挡板以通过通过空气间隙阻挡气流来减少冷气流的损失。获得并比较了先前冷藏容器和改进的冷藏容器的速度和温度。改进的冷藏容器中的冷气流分布更均匀。所有堆叠中的垂直速度的改善在5.24% - 425.04%的范围内。还获得了两个冷藏容器的冷却性能。温度分布的变化在+/- 1摄氏度内,冷却时间在改进的冷藏容器中也减少了至少22.9%。最后,拟议的结构对不同的水果和蔬菜表现出良好的适用性。对于所有测试的产生,改进的冷藏容器相对于先前的冷藏容器中的温度升高的降低比率为34.0%至59.5%。 (c)2020 Elsevier Ltd和IIR。版权所有。

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