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首页> 外文期刊>Renewable energy >A new flexible geothermal based cogeneration system producing power and refrigeration, part two: The influence of ambient temperature
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A new flexible geothermal based cogeneration system producing power and refrigeration, part two: The influence of ambient temperature

机译:一种新的灵活的基于地热的热电联产系统,用于发电和制冷,第二部分:环境温度的影响

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摘要

A novel combined cooling/power cogeneration system, including a modified Kalina cycle and an absorption refrigeration cycle is proposed. The cycle uses ammonia-water as working fluid and is driven by geothermal energy. The cycle is flexible for producing different ratios of power to cooling capacities. It is observed that the ambient temperature and the split mass flow ratio at the condenser exit play major roles on the system performance. The results show that in summer time a better economic performance and also a higher cooling to power ratio is achieved. It is also seen that the overall system exergy efficiency is maximized at a specific value of the split mass flow ratio and that the total product unit cost is minimized at some specific values of the generator temperature and split mass flow ratio. The system performance is optimized considering the exergy efficiency and total product unit cost as criteria. The optimization results show that when the criterion is selected as exergy efficiency, a better economic performance is also achieved for the system. It is found that the highest exergy efficiency of the system is achieved as 33.61% and the lowest total product unit cost is obtained as $ 39.93/GJ. (C) 2018 Published by Elsevier Ltd.
机译:提出了一种新颖的组合式冷/电热电联产系统,包括改进的卡利纳循环和吸收式制冷循环。该循环使用氨水作为工作流体,并由地热能驱动。该循环非常灵活,可以产生不同的功率与冷却能力比率。可以看出,环境温度和冷凝器出口处的分流质量流量比对系统性能起着重要作用。结果表明,在夏季,可以获得更好的经济性能以及更高的制冷/功率比。还可以看出,在特定的分流质量流量比值下,整个系统的火用效率最大化,而在发生器温度和分流的质量流量比的某些特定值下,总产品单位成本最小化。系统性能以火用效率和产品总单位成本为标准进行了优化。优化结果表明,当选择标准作为火用效率时,该系统还具有较好的经济性能。结果发现,该系统的最高火用效率为33.61%,最低产品总单位成本为$ 39.93 / GJ。 (C)2018由Elsevier Ltd.发布

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