用于储存季节性流感疫苗的冷却系统的CFD建模和仿真

J. Valle-Hernández, Joanna Díaz-Monroy, Britania Junery Lozano-Olmedo, Apolo Rojas-Ávila
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引用次数: 0

摘要

在我国边缘地区开展疫苗接种运动是非常重要的,因为这些地区更容易感染疾病,但需要做适当的容器,以便他们带着财产到达并保护每个人。季节性流感疫苗在2°C和8°C的便携式冰箱中运输,第一次储存时间在3和7天内,第二次储存时间在12到36小时内。本文介绍了用计算流体动力学(CFD)对热电电池储存流感疫苗的冷藏系统进行建模和仿真。结果显示了冷藏系统内的温度分布和每个容器元件的热量传递,以及使每种疫苗保持在最佳储存温度的最合适安排。能够依靠便携式系统,以最佳方式运送持续冷藏的疫苗,将对生活在边缘地区的人们的健康产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelado y simulación CFD de un sistema de refrigeración para el almacenamiento de vacunas contra la Influenza Estacional
It is very important to carry out vaccination campaigns in the marginalized areas of our country, because they are more vulnerable to contracting diseases, but to do the appropriate containers are needed so that they arrive with their properties and to protect each person. The Seasonal Influenza vaccine is transported in portable refrigerators at a temperature of 2 and 8 ° C, and the storage time is within 3 and 7 days for the first and 12 to 36 hours for the second. This paper presents the modeling and simulation by Computational Fluid Dynamics (CFD) of a refrigerated system, from thermoelectric cells, for the storage of influenza vaccines. The results show the temperature distribution within the refrigerated system and the transfer of heat in each container element, as well as the most appropriate arrangement to keep each vaccine to the optimal storage temperature. Being able to count on portable systems that allow the optimal transfer of vaccines keeping refrigerated in a constant way would have a positive impact on the health of people who live in marginalized areas.
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