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Portable forced-air tunnel evaluation for cooling products inside cold storage rooms

机译:便携式强制通风隧道评估,用于冷藏室内的冷却产品

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摘要

Freezing process efficiency is affected by the required conditions to keep the air flow and temperature at the product surface. The objective of this work was to obtain results on comparative studies with air exhaustion and blowing using an experimental portable forced-air freezing tunnel. The device was designed to improve cooling rates inside storage room without the need for a cooling/freezing tunnel. A heterogeneity factor was proposed for air circulation evaluation and compared with convective heat transfer coefficient (h_(ef)) values. Lower modules of heterogeneity factor values represent smaller temperature differences among samples. Comparing two different air flow processes, heterogeneity factor values were similar for regions where the cooling air could flow without obstructions. However, larger differences were observed for regions with hampered air circulation. Results indicated that the air distribution, as well as the heat transfer, occurs more uniformly around the products in the exhausting process than in the blowing system.
机译:冷冻过程的效率受保持空气流动和温度在产品表面所需条件的影响。这项工作的目的是通过使用实验性便携式强制空气冷冻隧道进行排气和吹气的比较研究获得结果。该设备旨在提高储藏室内的冷却速度,而无需冷却/冷冻通道。提出了一种非均匀性因子用于空气循环评估,并将其与对流传热系数(h_(ef))值进行了比较。异质性因子值的较低模块表示样品之间的温度差异较小。比较两个不同的气流过程,对于冷却空气可以畅通无阻的区域,异质因子值相似。但是,在空气流通受阻的区域观察到较大的差异。结果表明,在排气过程中,产品周围的空气分布以及传热比在吹塑系统中更为均匀。

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