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Comparative Study of Sub-Critical and Supercritical ORC Applications for Exhaust Waste Heat Recovery

机译:亚临界和超临界ORC在废气余热回收中的应用比较研究

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Waste heat recovery by means of Organic Rankine Cycle is a promising technology for the recovery of engine exhaust heat. However, it is complex to find out the optimum cycle conditions with appropriate working fluids to match exhaust gas waste heat due to its high temperature. Hence, this paper focuses on comparing sub-critical and supercritical ORC conditions with eight working fluids on a combined diesel engine-ORC system. The model employs two ORC designs, Regenerative-ORC and Pre-Heating-Regenerative-ORC respectively. The thermodynamic calculations rely on the first and second law of thermodynamics, thermal efficiency and exergy destruction factors are the fundamental parameters evaluated. Additionally, in this study, environmental and safety, GWP (Global Warming Potential) and ODP (Ozone Depletion Potential), characteristic of the refrigerants are taken into consideration as evaluation criteria to define the optimal ORC configuration and conditions. Consequently, the studys outcomes reveal that supercritical ORCs with alkane and siloxane are more suitable for high temperature exhaust waste heat recovery in contrast to sub-critical conditions.
机译:通过有机朗肯循环进行废热回收是一种有前途的技术,用于回收发动机废热。但是,要找到合适的工作流体以匹配废气余热的最佳循环条件是很复杂的,因为它的温度很高。因此,本文着重比较柴油机-ORC组合系统中的亚临界和超临界ORC条件与八种工作流体。该模型采用两种ORC设计,分别为再生ORC和预加热再生ORC。热力学计算依赖于热力学的第一定律和第二定律,热效率和火用破坏因子是评估的基本参数。此外,在这项研究中,环境和安全性,全球变暖潜势(GWP)和臭氧消耗潜能值(ODP)以及制冷剂的特性均作为评估标准来考虑,以定义最佳的ORC配置和条件。因此,研究结果表明,与亚临界条件相比,含烷烃和硅氧烷的超临界ORC更适合高温废气余热的回收。

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