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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Cost-effectiveness performance analysis of organic Rankine cycle for low grade heat utilization coupling with operation condition
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Cost-effectiveness performance analysis of organic Rankine cycle for low grade heat utilization coupling with operation condition

机译:低品位热利用有机朗肯循环的成本效益性能分析及运行条件

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摘要

This paper analyzed the influence of working fluids selection and operation conditions on the cost-effectiveness performance and net power output of an ORC for low grade heat utilization. A net power output model has been proposed theoretically and compared with the theoretical data calculated from thermodynamic analysis, exhibiting excellent agreements with the theoretical data. The proposed net power output model theoretically indicates that Jacob number and the ratio of evaporating temperature and heat rejected temperature play essential roles in discriminating the net power output among various working fluids at the same operation condition. For a given condensing and evaporating temperature, it can be concluded theoretically that fluid with low Jacob number will show attractive performance in an ORC. The maximum net power output is determined by the heat source rather than working fluids with a low inlet temperature of heat source. Cost-effectiveness performance analysis reveals that the maximum net power output and the best CEP cannot be achieved at the same time and compromise must be made when choosing the most suitable organic working fluids in different ORC designs.
机译:本文分析了工作液选择和操作条件对低等级热利用ORC的成本效益性能和净功率输出的影响。从理论上提出了净功率输出模型,并与热力学分析计算出的理论数据进行了比较,与理论数据具有很好的一致性。所提出的净功率输出模型理论上表明,在相同工作条件下,雅各布数和蒸发温度与排热温度之比在区分各种工作流体的净功率输出方面起着至关重要的作用。对于给定的冷凝和蒸发温度,理论上可以得出结论,低雅各布数的流体在ORC中将表现出有吸引力的性能。最大净功率输出由热源决定,而不是由热源入口温度低的工作流体决定。成本效益性能分析表明,无法同时实现最大净功率输出和最佳CEP,并且在不同ORC设计中选择最合适的有机工作液时必须做出折衷。

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