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NUMERICAL INVESTIGATION OF THE FLOW FIELDS AND THERMAL PATTERNS IN A LARGE COLD STORE (Ⅰ)

机译:大型冷库流域和热图案的数值研究(Ⅰ)

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Refrigeration for the cold storage of perishable foods has been utilized for more than a century. The need for refrigerated storage grows with hot weather. The frozen food industry expanded many times in freezer storage in a few decades after World War Ⅱ. Cold storage facilities are also significant energy consumers that call for attention to thermal behavior as it greatly influences the cost. Proper design to improve thermal behavior of a refrigerated space requires the knowledge of air distribution and thermal conditions within the space. The frozen food quality is sensitive to both storage temperature and fluctuation in temperature. The present work made use of a computational fluid dynamics technique to adequately predict the cold storage airflow pattern variations within the cold room under various evaporator's arrangements of sizes, numbers and positions. Design parameters included local temperatures and velocity distributions inside a large cold store using standard k-e model with mesh element 5,400,000 tetrahedral cells. Different optional designs utilizing different number of evaporators were investigated as well as the locations of these evaporators according to load estimation of the cold store.
机译:易腐食品冷藏的制冷已被利用超过一个世纪。对冷藏储存的需求随着炎热的天气而生长。第二十年后,冷冻食品产业在冰柜储存中扩大了多次冰箱Ⅱ。冷藏设施也是显着的能源消费者,可以提请注意热行为,因为它会影响成本。适当的设计,提高冷藏空间的热行为需要在空间内的空气分配和热条件的知识。冷冻食品质量对储存温度和温度波动敏感。本作采用计算流体动力学技术在各种蒸发器的尺寸,数量和位置的布置下充分预测冷室内的冷藏气流图案变化。设计参数包括使用标准K-E型号的大型冷库内的局部温度和速度分布,其中具有网元元素5,400,000四面体电池。根据冷库的负载估计,研究了利用不同数量的蒸发器的不同可选设计,以及这些蒸发器的位置。

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