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Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism
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S. Jafarmadar And N. Javani, "Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism," INTERNATIONAL JOURNAL OF EXERGY , vol.15, is.3, pp.363-381, 2014

Jafarmadar, S. And Javani, N. 2014. Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism. INTERNATIONAL JOURNAL OF EXERGY , vol.15, is.3 , 363-381.

Jafarmadar, S., & Javani, N., (2014). Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism. INTERNATIONAL JOURNAL OF EXERGY , vol.15, is.3, 363-381.

Jafarmadar, Samad, And Nader JAVANI. "Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism," INTERNATIONAL JOURNAL OF EXERGY , vol.15, is.3, 363-381, 2014

Jafarmadar, Samad And Javani, Nader. "Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism." INTERNATIONAL JOURNAL OF EXERGY , vol.15, is.3, pp.363-381, 2014

Jafarmadar, S. And Javani, N. (2014) . "Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism." INTERNATIONAL JOURNAL OF EXERGY , vol.15, is.3, pp.363-381.

@article{article, author={Samad Jafarmadar And author={Nader JAVANI}, title={Exergy analysis of natural gas/DME combustion in homogeneous charge compression ignition engines (HCCI) using zero-dimensional model with detailed chemical kinetics mechanism}, journal={INTERNATIONAL JOURNAL OF EXERGY}, year=2014, pages={363-381} }