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Low grade waste heat recovery with subcritical and supercritical Organic Rankine Cycle based on natural refrigerants and their binary mixtures

机译:基于天然制冷剂及其二元混合物的亚临界和超临界有机朗肯循环进行低品位废热回收

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摘要

The Organic Rankine Cycle (ORC) is a promising technology for low temperature waste heat-to-power conversion. This work investigates the waste heat recovery potential of the ORC and some of its innovative variations, such as the supercritical cycle and the use of binary zeotropic mixtures. Focus is given to natural hydrocarbons having low ozone depletion and global warming potential. By performing simulations for heat source temperatures ranging from 150 to 300 degrees C, the optimal operation mode and working fluids are identified. Meanwhile, several technical parameters (such as the turbine size parameter and rotational speed) are calculated. The system exergetic efficiency is affected by the critical temperature of the working fluids and in the case of mixtures by their temperature glide in the condenser. The maximum efficiency ranges from 15 to 40% for heat source temperatures between 150 and 300 degrees C, respectively. For temperatures above 170 degrees C, the optimal fluids are mixtures combined with supercritical operation. Compared to the subcritical ORC with R245fa, the achievable efficiency improvement ranges between 10 and 45%. Although smaller turbines can be used due to the lower size parameter values of supercritical mixtures, R245fa has lower volume flow ratio, rotational speed and UA values. (C) 2015 Elsevier Ltd. All rights reserved.
机译:有机朗肯循环(ORC)是一种用于低温废热-功率转换的有前途的技术。这项工作研究了ORC及其一些创新性变体的废热回收潜力,例如超临界循环和二元共沸混合物的使用。重点关注臭氧消耗低且全球变暖潜力低的天然烃。通过对150至300摄氏度范围内的热源温度进行仿真,可以确定最佳操作模式和工作流体。同时,计算了几个技术参数(例如涡轮尺寸参数和转速)。系统的有效效率受工作流体的临界温度影响,在混合物的情况下,受其在冷凝器中的温度滑移影响。对于150至300摄氏度之间的热源温度,最大效率分别为15%至40%。对于高于170摄氏度的温度,最佳流体是结合超临界运行的混合物。与具有R245fa的亚临界ORC相比,可实现的效率提高在10%到45%之间。尽管由于超临界混合物的尺寸参数值较低,所以可以使用较小的涡轮机,但R245fa的体积流量比,转速和UA值较低。 (C)2015 Elsevier Ltd.保留所有权利。

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