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Exploring ambient loading of citrus fruit into reefer containers for cooling during marine transport using computational fluid dynamics

机译:利用计算流体力学探索在冷藏船中将柑桔类水果放入冷藏箱的环境负荷,以在海上运输期间进行冷却

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摘要

A promising cold-chain protocol is explored as an alternative to the commonly-used forced-air pre-cooling (FAC) of citrus fruit prior to shipping: ambient loading of fruit in reefer containers for cooling during long-haul marine transport. Despite the multiple logistical and economical savings it provides, the potential of "ambient loading" of fruit in reefer containers has been left largely unexplored. The present study targets this practice, but also cooling by vertical airflow in general. Computational fluid dynamics (CFD) is used to identify differences in cooling rate and uniformity between individual boxes at different heights on a pallet and between individual fruit within a single box. Simulations show that low airflow rates, typical for refrigerated containers, do not only induce slower fruit cooling, compared to FAC airflow rates, but also the cooling heterogeneity between different layers of boxes (in height) and between individual fruit in a single box is larger. In addition, the presence of gaps between pallets invokes airflow short-circuiting, leading to highly reduced fruit cooling rates. Finally, strategies for future improvement of the ambient loading protocol are proposed, which in the first place should target faster and more uniform cooling. (C) 2015 Elsevier B.V. All rights reserved.
机译:探索了一种有前途的冷链规程,以替代装运前通常使用的柑橘类水果的强制空气预冷(FAC):在冷藏箱中向周围环境装载水果,以便在长途海上运输中进行冷却。尽管它提供了多种后勤和经济上的节省,但冷藏库中“环境装载”水果的潜力尚未得到充分挖掘。本研究的目标是这种做法,但通常也要通过垂直气流进行冷却。计算流体动力学(CFD)用于识别托盘上不同高度的单个盒子之间以及单个盒子内单个水果之间的冷却速率和均匀性差异。仿真表明,与FAC空气流量相比,低速空气流量(通常用于冷藏容器)不仅会导致水果冷却变慢,而且不同层的箱子之间(高度)以及单个箱子中单个水果之间的冷却异质性也更大。 。此外,托盘之间存在间隙会引起气流短路,从而大大降低了水果的冷却速度。最后,提出了未来改善环境负荷协议的策略,这些策略首先应针对更快,更均匀的冷却。 (C)2015 Elsevier B.V.保留所有权利。

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