Exhaust gas heat recovery through secondary expansion cylinder and water injection in an internal combustion engine
Author(s) -
Toosi Nassiri,
Amir-Hasan Kakaee,
Hazhir Ebne-Abbasi
Publication year - 2016
Publication title -
thermal science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.339
H-Index - 43
eISSN - 2334-7163
pISSN - 0354-9836
DOI - 10.2298/tsci150915282n
Subject(s) - external combustion engine , thermal efficiency , internal combustion engine , turbocharger , cylinder , exhaust gas , compression ratio , four stroke engine , combustion , materials science , exhaust gas recirculation , automotive engineering , combustion chamber , engine efficiency , work (physics) , water injection (oil production) , mechanics , stirling engine , mechanical engineering , thermodynamics , petroleum engineering , engineering , physics , chemistry , gas compressor , organic chemistry
To enhance thermal efficiency and increase performance of an internal combustion engine, a novel concept of coupling a conventional engine with a secondary 4-stroke cylinder and direct water injection process is proposed. The burned gases after working in a traditional 4-stroke combustion cylinder are transferred to a secondary cylinder and expanded even more. After re-compression of the exhaust gases, pre-heated water is injected at top dead center. The evaporation of injected water not only recovers heat from exhaust gases, but also increases the mass of working gas inside the cylinder, therefore improves the overall thermal efficiency. A 0-D/1-D model is used to numerically simulate the idea. The simulations outputs showed that the bottoming cycle will be more efficient at higher engines speeds, specifically in a supercharged/turbocharged engine, which have higher exhaust gas pressure that can reproduce more positive work. In the modeled supercharged engine, results showed that brake thermal efficiency can be improved by about 17%, and brake power by about 17.4%
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom