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Portable Vapor-Compression Solar Refrigeration System for use in the Agricultural Harvesting Site
Journal of Scientific & Industrial Research ( IF 0.6 ) Pub Date : 2021-07-12
Daniel Silva Cruz, José de Jesús Pérez Bueno, José Abel Paredes, Arnulfo Terán López, Yunny Meas Vong

There is a growing interest in implementing sustainable technologies within reach of the population to cover the need for the rational energy consumption of refrigeration systems. Therefore, this work shows the design and simulation of a cooling chamber, which will be part of a vapor-compression solar cooling system, useful for the agro-industrial sector to conserve perishable products directly at the harvesting site. This portable system uses photovoltaic panels as a source of motive power. The above was developed from the knowledge of the fruit to be conserved for its modeling and subsequent simulation. In this case the fruit is guava. Also, a photovoltaic analysis was carried out. It is possible to obtain a cooling capacity for the chamber of 183.10 W and a heat loss of 6.85 W. Detailed data of the formulas used for designing and simulating the chamber, its isolation calculus, the guavas and their wooden boxes, and the Photovoltaic panels, were provided to clarify the procedure for the proposed prototype.

中文翻译:

用于农业收割地的便携式蒸汽压缩太阳能制冷系统

人们越来越有兴趣在人们可以接触到的范围内实施可持续技术,以满足对制冷系统合理能源消耗的需求。因此,这项工作展示了冷却室的设计和模拟,该冷却室将成为蒸汽压缩太阳能冷却系统的一部分,有助于农业工业部门直接在收获现场保存易腐烂的产品。这种便携式系统使用光伏板作为动力源。上述内容是根据要保存的水果知识发展而来的,以用于其建模和后续模拟。在这种情况下,水果是番石榴。此外,还进行了光伏分析。可以获得 183.10 W 的腔室冷却能力和 6.85 W 的热损失。
更新日期:2021-07-12
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