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Techno-economic analysis on a small-scale organic Rankine cycle with improved thermal driven pump

机译:具有改进的热驱动泵的小型有机朗肯循环技术经济分析

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摘要

Thermal driven pump is usually defined as a thermodynamic way which plays a similar role to replace common electricity driven pump. In this paper, a concept of improved thermal driven pump series is introduced to small-scale organic Rankine cycle and the up-limit thermal efficiency is explored by using discrete dividing method. Results indicate that power outputs of organic Rankine cycle by using thermal driven pump V-2 range from 158.8 W to 343.1 W which are improved by up to 73.5% when compared with those using previous type V-1. Energy and exergy efficiencies using improved type V-2 and V-3 increase from 0.018 to 0.043 and from 0.145 to 0.246, respectively. The largest increment could reach 40.5% and the highest value could account for 85% of the up-limit performance. Influencing factors i.e. mass ratio and pump efficiency are defined to further evaluate the performance in the possible applications. One remarkable inspiration is that organic Rankine cycle by using improved thermal driven pump may be an alternative solution to conventional type which could achieve the better techno-economic performance only under the conditions of dividing number smaller than 4 and the scale less than 10 kW.
机译:热驱动泵通常被定义为热力学方式,其起代替普通电驱动泵的类似作用。在本文中,引入了改进的热驱动泵系列的概念,以小规模的有机朗肯循环,通过使用离散分隔方法探索上限的热效率。结果表明,与使用先前型V-1的人相比,通过使用热驱动泵V-2的电力输出从158.8W至343.1W的功率增加到73.5%。使用改进的V-2和V-3的能量和漏洞效率分别从0.018增加到0.043且0.145至0.246。最大的增量可以达到40.5%,最高值可能会占85%的上限表现。影响因素是质量比和泵效率定义为进一步评估可能应用中的性能。一种显着的灵感来,通过使用改进的热驱动泵的有机朗肯循环可以是传统类型的替代解决方案,该常规方法只能在划分数量小于4的条件下实现更好的技术经济性能,并且规模小于10 kW。

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