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Techno- Economic evaluation of milk chilling unit retrofitted with hybrid renewable energy system in coastal province

机译:沿海省份混合可再生能源系统改造牛奶冷却机组的技术经济评价

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Renewable energy based hybrid energy cooling system is an economic and convenient option for rural milk preservation in remote coastal province in southern part of India. In this work, a model is presented for the techno-economic evaluation of hybrid renewable energy operated chilling system to fulfil the preservation requirements of isolated coastal sites where the bio resources and solar energy are plenty available. A milk chilling plant operated by vapour absorption cooling system which obtains thermal energy from various combinations of existing renewable energy sources has been studied and to predict the effect of different energy proportions of existing renewable energy resources on the overall system performance and economical parameters. From the analysis, it can be concluded that the Gobar gas/Biomass/Biogas/Solar (0.5:0.25:0.125:0.125) has been recommended for the suitable combination. The analysis reveals that the proposed hybrid renewable energy based chilling system can show the overall system performance as 0.18-0.19 with lowest Payback period (4 years 6 months to 5 years 3 months), life cycle cost (INR 16.8-19.5 million) and positive net present value. The sensitivity analysis show that the energy conversion efficiency and interest rate significantly influences the overall COP and capital cost, running cost and payback period. (C) 2018 Elsevier Ltd. All rights reserved.
机译:基于可再生能源的混合能源冷却系统是印度南部偏远沿海省份农村牛奶保存的一种经济便捷的选择。在这项工作中,提出了一个模型,用于对混合可再生能源制冷系统进行技术经济评估,以满足生物资源和太阳能充足的孤立沿海地区的保存要求。已经研究了通过蒸气吸收冷却系统运行的牛奶冷却设备,该设备从现有的可再生能源的各种组合中获取热能,并预测现有可再生能源的不同能量比例对整体系统性能和经济参数的影响。从分析中可以得出结论,建议将Gobar气体/生物质/生物气/太阳能(0.5:0.25:0.125:0.125)用作合适的组合。分析显示,拟议中的基于混合可再生能源的制冷系统可显示整体系统性能为0.18-0.19,投资回收期最低(4年6个月至5年3个月),生命周期成本(16.8-1950万印度卢比)为正净现值。敏感性分析表明,能量转换效率和利率显着影响整体COP和资本成本,运行成本和投资回收期。 (C)2018 Elsevier Ltd.保留所有权利。

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