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CFD Characteristics of Refrigerated Trailers and Improvement of Airflow for Preserving Perishable Foods

机译:冷藏拖车的CFD特性及其改进气流,用于保存易腐食品

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When preserving perishable goods, maintaining a constant temperature over the cold supply chain is essential. Therefore, refrigerated vehicles are an important part of the cold supply chain system. However, many traditional refrigerated cargo systems are not designed to support the homogeneity of the temperature inside cargo trailers. Indeed, refrigerating equipment is usually placed on one side of transportation systems as this is considered to be more practical. Such a configuration thus leads to significant temperature differences in the two distinct parts of a refrigerated cargo trailer, which might affect the quality, safety, and shelf life of perishable foods. This research aims to improve the temperature distribution of refrigerated trailers. In this study, it is highlighted that in the most commonly used traditional refrigerated trailer models, lower air velocity and higher product temperature are observed at the rear. There is also a partial product chilling risk at the front of the refrigerated trailer. This study investigates and reports significant differences among the three airflow design models of refrigerated cargo systems by applying turbulence flow, heat, and mass transfer models. The analyses of these three models reveal that significant improvement could be achieved by applying the proper arrangements of inlets on the ceiling of the trailer body.
机译:在保持易腐货物时,保持对冷供应链的恒温是必不可少的。因此,冷藏车辆是冷供应链系统的重要组成部分。然而,许多传统的冷藏货物系统不设计用于支持货物拖车内部温度的均匀性。实际上,制冷设备通常被放置在运输系统的一侧,因为这被认为是更实用的。因此,这种结构导致冷藏货物拖车的两个不同部分中的显着温差,这可能会影响易腐食品的质量,安全性和保质期。该研究旨在改善冷藏拖车的温度分布。在这项研究中,突出显示,在最常用的传统冷藏拖车模型中,在后部观察到较低的空气速度和更高的产品温度。在冷藏拖车的前部还有一部分令人不寒而栗的风险。本研究通过施加湍流流动,热量和传质模型来调查并报告冷藏货物系统三个气流设计模型之间的显着差异。这三种模型的分析表明,通过在拖车身体的天花板上的正确布置,可以实现显着的改进。

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