Manual Mixture Formation in Internal Combustion Engines (Heat and Mass Transfer)

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Steam addition enhances the evaporation rate and it affects evaporation more significantly at higher temperatures.

Modeling Engine Spray and Combustion Processes (Heat and Mass Transfer) book download

Exhaust gas recirculation EGR results in slight variations in droplet lifetime and its heating period. Skip to Main Content. Search in: This Journal Anywhere. Advanced search. Journal homepage. Pages Received 28 Jan Article Metrics Views. Article metrics information Disclaimer for citing articles.

Mixture formation in internal combustion engine

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Combustion Science and Technology Volume , - Issue 6. Published online: 25 Jan Seyed Mohammad Ali Najafi et al. Bulk mass transfer simulates fluid motion between different zones caused by piston speed and difference in zonal temperature and pressure.

Diffusion mass transfer occurs due only to difference in composition of different zones. The results indicate diesel engine performance and exhaust emissions can be predicted accurately applying mass transfer submodels. Bulk mass transfer mechanism has more significant effects on engine performance and emission compared to diffusion mechanism. The rates of soot oxidation reactions decrease and rates of NO x important reactions increase when mass transfer submodels are ignored. Volume 38 , Issue 5. If you do not receive an email within 10 minutes, your email address may not be registered, and you may need to create a new Wiley Online Library account.

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Mixture Formation in Internal Combustion Engines

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Combustion In Internal Combustion Engines

Purchase Instant Access. View Preview. Learn more Check out. Abstract The formation of a suitable air and fuel mixture in diesel engines is one of the most important factors in quality of combustion and engine exhaust emissions. Related Information.