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Thermodynamic performance of new thermofluidic feed pumps for Organic Rankine Cycle applications

机译:用于有机朗肯循环的新型热流体进料泵的热力学性能

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This study develops thermofluidic pump technology that is powered by heat, rather than by electrical or mechanical power. The objective is to improve the performance of heat-recovery by Organic Rankine Cycles, by using a recently-proposed thermofluidic pump. The thermofluidic pump promises low-cost, high-reliability, and, since it does not consume any of the power produced by the expander, improved return on investment. No performance data for the new thermofluidic pump have been reported previously, therefore a thermodynamic model is derived and used to evaluate performance metrics that characterise pump operation and its impact on the overall cycle efficiency. Improved pump configurations are then developed and analysed. A two-stage pump configuration is presented that enhances the thermal efficiency of the cycle. An economiser is also proposed in order to obtain boiler efficiencies similar to those for mechanical feed pumps. It has been shown that the cycle efficiency with the two-stage pump is maximum when there is no net heat input in the intermediate evaporator. The resulting thermal efficiency exceeds the best-possible efficiency that could be obtained by using an ideal mechanical pump. The relative improvement in cycle efficiency achieved with the two-stage thermofluidic pump is greatest for low-temperature cycles operating below 100 degrees C, for which the back work ratio is usually higher and the efficiencies of electro-mechanical feed pumps are poorer - yielding a relative increase of the cycle efficiency by up to 30%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究开发了由热量而不是电能或机械动力提供动力的热流体泵技术。目的是通过使用最近提出的热流体泵来改善通过有机朗肯循环的热回收的性能。热流体泵具有低成本,高可靠性的优点,并且由于它不消耗膨胀机产生的任何能量,因此可以提高投资回报率。以前没有关于新热流体泵的性能数据的报道,因此,导出了一个热力学模型并将其用于评估表征泵操作及其对整体循环效率的影响的性能指标。然后开发并分析改进的泵配置。提出了一种两级泵配置,可以提高循环的热效率。还提出了一种节能器,以获得与机械给水泵相似的锅炉效率。已经表明,当中间蒸发器中没有净热量输入时,两级泵的循环效率最高。所产生的热效率超过了使用理想的机械泵可获得的最佳效率。对于在100摄氏度以下运行的低温循环,两级热流体泵实现的循环效率的相对改善最大,因为低温循环的后功比通常较高,而电动机械给水泵的效率较差-产生循环效率相对提高高达30%。 (C)2015 Elsevier Ltd.保留所有权利。

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