用于偏远地区食品保鲜的混合能源制冷系统

E. Mohan, Saranya Nair Mohan, Joseph Sekhar Santhappan
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引用次数: 1

摘要

牛奶加工和保存在发展中国家是一项快速增长的业务,由于使用传统能源的高能源成本和环境问题,它面临着问题。由于原料和转换技术的选择,适当的研究必须实施以可再生能源为基础的技术,以促进能源服务的不断流动。在本章中,重点是实施冷却技术,使用当地可用的能源,如生物质,沼气,全球天然气,这将在不久的将来流行。可再生能源可单独或组合使用,以运行蒸汽吸收系统的发电机。混合能源系统还没有得到充分的研究,本研究的重点是结合当地可用的能源。因此,需要进行系统的分析,找到各种可再生能源的适当混合,以满足任何地区的制冷需求,以实现完整的可再生能源制冷系统。研究了可再生能源组合变化对整个系统COP的影响。以系统性能最大化和经济性能最佳为目标,预测了不同区域的最佳组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Energy-Based Chilling System for Food Preservation in Remote Areas
The milk processing and preservation is a fast growing business in developing countries and it is facing problems due to high energy cost and environmental concerns in using conventional energy sources. Since the selection of feedstock and conversion technologies, appropriate research must implement renewable energy-based technologies to promote a constant flow of energy services. In this chapter, the focus is on implementing cooling technologies, using locally available energy sources such as biomass, biogas, gobar gas, which is going to be popular in the near future. The renewable energy sources can be used alone or in combination to run the generator of the vapor absorption system. Sufficient study is not available for hybrid energy systems, with the combination of locally available energy sources, focused in this study. Therefore a systematic analysis is needed to find the appropriate mixing of various renewable energy sources to meet the cooling requirements in any region to implement the complete renewable energy-based cooling system. The effect of variations in the combination of renewable energy sources on the overall system COP has been studied. Based on the maximum system performance and best economic performance, suitable combinations that can be preferred in various regions are predicted.
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