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Latest concepts for combustion and waste heat recovery systems being considered for hydrogen engines

journal contribution
posted on 2024-11-01, 13:54 authored by Albert Parker
A more sustainable transportation calls for the use of alternative and renewable fuels, a further increase of the fuel energy conversion efficiency of internal combustion engines as well as the reduction of the thermal engine energy supply by recovering the braking energy. The paper presents two concepts being developed to improve the fuel conversion efficiency of internal combustion engines for transport applications. The first concept works on the combustion evolution to increase the amount of fuel energy transformed in piston work within the cylinder. The second concept works on the waste exhaust and coolant energies to be recovered through a power turbine downstream of the turbocharger turbine on the exhaust line and a steam turbine feed with the steam produced by a boiler/super heater made of the coolant passages and a heat exchanger on the exhaust line. The concepts work with hydrogen (and in this case a water injector is also necessary) as well as lower alkanes (methane, propane, butane). Preliminary simulations show improvement of top fuel conversion efficiencies to above 50% in the high power density operation. The waste heat recovery system also permits faster warm-up during cold start driving cycles.

History

Journal

International Journal of Hydrogen Energy

Volume

38

Issue

9

Start page

3802

End page

3807

Total pages

6

Publisher

Elsevier

Place published

United Kingdom

Language

English

Copyright

© 2013 Hydrogen Energy Publications, LLC.

Former Identifier

2006039297

Esploro creation date

2020-06-22

Fedora creation date

2014-06-18

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