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Solar thermal-photovoltaic powered potato cold storage - Conceptual design and performance analyses

机译:太阳能热光伏马铃薯冷藏库-概念设计和性能分析

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Wastage of food crops due to the dearth of proper cold storage facilities is a huge problem in underdeveloped and developing countries of the world. Conceptual design of a potato cold storage is presented here, along with performance appraisal over a calendar year. The microclimate inside the cold storage is regulated using a water-lithium bromide absorption system. Proposed system utilizes both solar thermal and photovoltaic generated electrical energy for its operation. A suitable operation strategy is devised and the performance of the integrated system is analyzed from energy and exergy point of view to identify the required numbers of thermal collectors and photovoltaic modules. The proposed system is found to provide a net surplus of about 36 MW h energy over a calendar year, after meeting the in-house requirements. A rudimentary economic analysis is also performed to check the financial viability of the proposed system. Both the thermal and photovoltaic components are found to have payback periods less than four years. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在世界上欠发达国家和发展中国家,由于缺乏适当的冷藏设施而导致粮食作物的浪费是一个巨大的问题。此处介绍了马铃薯冷藏库的概念设计,以及历年的绩效评估。使用水-溴化锂吸收系统调节冷藏库内的微气候。所提出的系统利用太阳热能和光伏产生的电能两者来进行操作。设计了合适的操作策略,并从能源和火用的角度分析了集成系统的性能,以确定所需数量的集热器和光伏模块。在满足内部需求后,建议的系统在一个日历年内可提供约36 MW h的能源净过剩。还进行了基本的经济分析,以检查所提议系统的财务可行性。热和光伏组件的投资回收期均少于四年。 (C)2015 Elsevier Ltd.保留所有权利。

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