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Thermal uniformity and rapid cooling inside refrigerators

机译:冰箱内部的热均匀性和快速冷却

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摘要

The authors developed a new air-supply system for improving the thermal uniformity and the cooling rate inside a fresh food cabinet of a household refrigerator. For these purposes, we added a blower and jet slots to a conventional cooled air supply system. The jet slots circulate the air inside the cabinet at a higher velocity to optimize airflow velocity and its distribution. The jet stirs the air inside the cabinet and improves thermal uniformity, which resulted in half the temperature deviation in the cabinet as that of the conventional systems. The jet also improves the heat transfer on the surface of foods. We achieved a four times higher cooling rate with the new system than that with the conventional ones. In order to cut down the development period, we applied computational fluid dynamics to study air distribution inside the cabinet with the new system. We also derived the model of the cooling process by the jet using theoretical and empirical equations and applied it to decide the jet velocity for the rapid cooling.
机译:作者开发了一种新的供气系统,用于改善家用冰箱保鲜柜内的热均匀性和冷却速度。为此,我们在传统的冷却空气供应系统中增加了鼓风机和喷射槽。喷射槽使柜体内的空气以较高的速度循环,以优化气流速度及其分布。射流可搅动机柜内的空气并提高热均匀性,这导致机柜内温度偏差是传统系统的一半。射流还改善了食物表面上的热传递。新系统的冷却速度是传统系统的四倍。为了缩短开发周期,我们使用计算流体动力学来研究新系统在机柜内部的空气分布。我们还使用理论和经验公式推导了射流冷却过程的模型,并将其用于确定快速冷却的射流速度。

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