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首页> 外文期刊>Thermal science >A COMPREHENSIVE STUDY ON WASTE HEAT RECOVERY FROM INTERNAL COMBUSTION ENGINES USING ORGANIC RANKINE CYCLE
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A COMPREHENSIVE STUDY ON WASTE HEAT RECOVERY FROM INTERNAL COMBUSTION ENGINES USING ORGANIC RANKINE CYCLE

机译:利用有机兰科循环对内燃机内部废热回收的综合研究

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摘要

There are a substantial amount of waste heat through exhaust gas and coolant of an Internal Combustion Engine. Organic Rankine cycle is one of the opportunities in Internal Combustion Engines waste heat recovery. In this study, two different configurations of Organic Rankine cycle with the capability of simultaneous waste heat recovery from exhaust gas and coolant of a 12L diesel engine were introduced: Preheat configuration and Two-stage. First, a parametric optimization process was performed for both configurations considering R-134a, R-123, and R-245fa as the cycle working fluids. The main objective in optimization process was maximization of the power generation and cycle thermal efficiency. Expander inlet pressure and preheating temperature were selected as design parameters. Finally, parameters like hybrid generated power and reduction of fuel consumption were studied for both configurations in different engine speeds and full engine load. It was observed that using R-123 as the working fluid, the best performance in both configurations was obtained and as a result the 11.73% and 13.56% reduction in fuel consumption for both preheat and Two-stage configurations were found respectively.
机译:内燃机的废气和冷却剂有大量的废热。有机朗肯循环是内燃机余热回收的机会之一。在这项研究中,介绍了有机朗肯循环的两种不同配置,它们能够同时从12L柴油机的废气和冷却剂中回收余热:预热配置和两级配置。首先,针对两种配置都执行了参数优化过程,将R-134a,R-123和R-245fa作为循环工作流体。优化过程的主要目标是最大化发电量和循环热效率。选择膨胀机入口压力和预热温度作为设计参数。最后,研究了两种配置在不同发动机转速和满载条件下的参数,如混合动力的产生功率和燃料消耗的减少。观察到,使用R-123作为工作流体,在两种配置中均获得了最佳性能,结果,预热和两阶段配置的燃油消耗分别降低了11.73%和13.56%。

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