Thermal Science 2013 Volume 17, Issue 2, Pages: 611-624
https://doi.org/10.2298/TSCI111219051T
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A comprehensive study on waste heat recovery from internal combustion engines using organic Rankine cycle
Tahani Mojtaba (Faculty of New Sciences and Technologies (FNST), Tehran University, Tehran, Iran + Islamic azad university, Center Tehran branch, Tehran, Iran)
Javan Saeed (Department of Energy Conversion, Faculty of Mechanical Engineering, Semnan University, Semnan, Iran)
Biglari Mojtaba (Department of Energy Conversion, Faculty of Mechanical Engineering, Semnan University, Semnan, Iran)
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.
Keywords: internal combustion engine, waste heat recovery, organic Rankine cycle, configuration, parametric optimization