Published December 15, 2016 | Version v1
Journal article

Analysis of energy efficiency of methane and hydrogen-methane blends in a PFI/DI SI research engine

Description

In the last years, even more attention was paid to the alternative fuels that allow both reducing the fossil fuel consumption and the pollutant emissions. Gaseous fuels like methane and hydrogen are the most interesting in terms of engine application. This paper reports a comparison between methane and different methane/hydrogen mixtures in a single-cylinder Port Fuel/Direct Injection spark ignition (PFI/DI SI) engine operating under steady state conditions. It is representative of the gasoline engine for automotive application. Engine performance and exhaust emissions were evaluated. Moreover, 2D-digital cycle resolved imaging was performed with high spatial and temporal resolution in the combustion chamber. In particular, it allows characterizing the combustion by means of the flame propagation in terms of mean radius and velocity. Moreover, the interaction of turbulence with the local flame was evaluated. For both the engine configurations, it was observed that the addition of hydrogen results in a more efficient combustion, even though the engine configuration plays an important role. In PFI mode, the lower density of hydrogen causes a lower energy input. In DI mode, instead, the larger hydrogen diffusivity counteracts the charge stratification especially for larger hydrogen content. - Highlights: • The effect of hydrogen on methane combustion was investigated in an optical PFI/DI SI engine. • The effect of hydrogen addition for PFI and DI configurations was evaluated on the same engine. • The flame front propagation was characterized by means of 2-D digital imaging.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.energy.2016.06.043

Additional details

Identifiers

DOI
10.1016/j.energy.2016.06.043;
PII
S0360-5442(16)30817-9;

Publishing Information

Journal Title
Energy (Oxford)
Journal Volume
117
Journal Issue
Part 2
Journal Page Range
p. 378-387
ISSN
0360-5442
CODEN
ENEYDS

Conference

Title
28. international conference on efficiency, cost, optimization, simulation and environmental impact of energy systems
Acronym
ECOS 2015
Dates
29 Jun - 3 Jul 2015
Place
Pau (France)

Optional Information

Copyright
Copyright (c) 2016 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.