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Techno-economic analysis of off-grid solar-driven cold storage systems for preventing the waste of agricultural products in hot and humid climates

机译:散流太阳能驱动冷藏系统技术经济分析,防止潮湿气候浪费农产品浪费

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The spoilage of agricultural products during the post-harvesting process in countries with hot and humid climate is a very serious challenge. The high volume of fruits produced in the hottest months of the year in a short period causes a high percentage of fruit rot. This is, especially, more challenging for countries with low quality electricity grids, e.g. India. This study proposes the use of in-site off-grid solar-driven cold storage systems integrated with an auxiliary heater for year-round storage of agricultural products (potato in an Indian farming area, just as a reference case). The purpose of the research is to assess which type of solar collector is the best solution from the energy and economic point of view. For this, the required annual cooling load of a 5 TR cold storage of potato is calculated and then, the effect of different types of collectors in heat provision on the performance of the cold supply unit is investigated. The results show that when the system is integrated with PTCs, the performance of the system is much less effective compared to when integrated with ETCs and FPCs. From an energy point of view, FPC, ETC performed at the higher energy efficiency, while in the economic assessments, considering the technical effectiveness of different configurations, an ETC-integrated arrangement reveals the best economical solution with a payback period of 11 years with the storage of 20 tonnes of potato. With the usage of the proposed system, the amount of CO2 production decreases by up to 53% compared to a system of absorption chiller working with natural gas. (C) 2020 Elsevier Ltd. All rights reserved.
机译:农产品在炎热和潮湿气候的国家后的农产品腐败是一个非常严峻的挑战。在短期内最热的月份生产的大量水果会导致高比例的水果腐烂。特别是对具有低质量电网的国家更具挑战性,例如,更具挑战性的国家。印度。本研究提出了使用内部的离网太阳能驱动的冷库系统,该冷藏系统与辅助加热器集成在全年储存农产品(印度农业区土豆,就像参考案例)。该研究的目的是评估哪种类型的太阳能收集器是能源和经济的最佳解决方案。为此,计算了5 TR冷储存的土豆储存的年冷却负荷,然后研究了不同类型收集器在热量提供冷水供应单元的性能中的影响。结果表明,当系统与PTC集成时,与ETCS和FPC集成时,系统的性能无效。从能量的角度来看,FPC等以更高的能效进行,而在经济评估中,考虑到不同配置的技术效果,等等综合布置揭示了11年的回报率的最佳经济解决方案储存20吨土豆。随着所提出的系统的使用,与使用天然气的吸收冷却器的系统相比,二氧化碳产量的量减少至53%。 (c)2020 elestvier有限公司保留所有权利。

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