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Modelling of ejector chillers with steam and other working fluids

机译:用蒸汽和其他工作流体对喷射冷却器进行建模

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The Constant Rate of Momentum Change (CRMC) criterion attempts to improve the design of supersonic ejectors, that can be used in heat-powered chillers for industrial or air-conditioning use. Moving from its original formulation, the CRMC design method can be advanced accounting for friction irreversibilities and real gas behaviour, as done in a previous work by our research group. Here we present an upgraded version of this analysis, supported by experimental data from a prototype chiller using R245fa as working fluid. The analysis is extended to other fluids (water, isobutane, 5 HFCs and 3 HFOs) whose performance is calculated on a wide range of heat source/sink temperatures. The existing literature, based generally on ideal gas simulations, suggests that water yields poor results in terms of COP. This paper shows that this result may be argued. Low GWP fluid HFO1233zd also gives good results. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:恒定动量变化率(CRMC)标准试图改进超声喷射器的设计,该超声喷射器可用于工业或空调用热力冷却器。正如其研究小组先前所做的那样,从最初的表述出发,CRMC设计方法可以先进地解决摩擦不可逆性和真实气体行为。在这里,我们介绍了此分析的升级版本,并得到了使用R245fa作为工作流体的原型冷却器的实验数据的支持。该分析扩展到其他流体(水,异丁烷,5种HFC和3种HFO),其性能是根据各种热源/散热器温度计算得出的。现有文献通常基于理想的气体模拟,表明水的COP效果较差。本文表明该结果可能会引起争议。低全球变暖潜能值流体HFO1233zd也给出了良好的结果。 (C)2015 Elsevier Ltd和IIR。版权所有。

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