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Investigations on experimental performance and system behavior of 10 kW organic Rankine cycle using scroll-type expander for low-grade heat source

机译:涡旋式膨胀机用于低品位热源的10 kW有机朗肯循环实验性能和系统行为的研究

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摘要

In this study, experimental characteristics of a 10 kW organic Rankine cycle (ORC) with R245fa were investigated for low-grade waste heat recovery. A semi-hermetic scroll-type expander was utilized with proper lubrication. The conductive oil loop using electric heaters was to simulate low-grade heat source. The temperature and heat power of the heat source were set to 120 degrees C and 34-77 kW, respectively. Results showed that pressure ratio and degree of superheating exhibit high sensitivity on system performance. The trend of isentropic efficiency for expander presented decreasing with pressure ratio in rise, while pressure ratio for the inlet and outlet of the expander is larger than 4. In addition, there is a particular phenomenon existing under low pinch point temperature. Mass flow rate and pressure ratio exhibited periodic distribution with time, while the pinch point temperature is lower than 10 degrees C. It means that the pinch point temperature has a critical value, which leads to the supply of heat source not under stable situation for low pinch point temperature. This phenomenon of thermal fluctuation may result in reduce useful life for system components. The maximum measured electrical power, net thermal efficiency and net electricity efficiency are 6.2 kW, 8.9% and 7.9%, respectively. As a consequence, the electricity generation and net electricity efficiency could be further raised while the simulated heat power increases based on the present efforts. The present work demonstrates the potential of scroll-type expander for the small-scaled ORC applications, such as industrial waste heat recovery, geothermal energy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了使用R245fa进行10 kW有机朗肯循环(ORC)进行低品位余热回收的实验特性。使用半密封涡旋式膨胀机并进行适当的润滑。使用电加热器的导电油回路用于模拟低级热源。热源的温度和热功率分别设定为120℃和34-77kW。结果表明,压力比和过热度对系统性能表现出很高的敏感性。膨胀机的等熵效率趋势随压力比的升高而降低,而膨胀机的入口和出口的压力比大于4。此外,在低收缩点温度下存在一种特殊现象。质量流量和压力比随时间呈周期性分布,而夹点温度低于10摄氏度。这意味着夹点温度具有临界值,导致供热源的供热不稳定。夹点温度。这种热波动现象可能会缩短系统组件的使用寿命。测得的最大电力,净热效率和净电效率分别为6.2 kW,8.9%和7.9%。结果,基于当前的努力,可以在提高模拟火力的同时进一步提高发电量和净电力效率。本工作证明了涡旋式膨胀机在小规模ORC应用中的潜力,例如工业废热回收,地热能。 (C)2019 Elsevier Ltd.保留所有权利。

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