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   cfd simulation of wall film during fuel injection and combustion in a three-cylinder ‎turbocharged gasoline direct injection engine  
   
نویسنده mohammadi arash ,ajami nima ,parivar amirhossein ,sharghi peyman
منبع تحقيقات موتور - 2024 - دوره : 70 - شماره : 4 - صفحه:1 -13
چکیده    In this research, a 3d-cfd model was created to investigate the behavior of spray and combustion in a three-cylinder gdi engine using a six-hole nozzle injector. to validate the model, in-cylinder data pressure was conducted at iran khodro power train company (ipco) under wide-open throttle and 5500 rpm conditions. the obtained data were incorporated into the cfd model to simulate the spray evolution and combustion process inside the cylinder during fuel injection. droplet temperature and lambda distribution from 30 deg to 279 deg after injection were displayed. temperature distribution during 2 to 40 deg atdc was illustrated in the paper. finally, evaporated fuel and wall film of the cylinder head, liner, and piston. intake and exhaust valves and equivalence ratio in the combustion chamber have been studied.
کلیدواژه gdi ,injector ,mixture preparation ,spray modeling
آدرس shahid rajaee teacher training university, mechanical engineering department, iran, irankhodro powertrain company (ipco), iran, irankhodro powertrain company (ipco), iran, irankhodro powertrain company (ipco), iran
پست الکترونیکی p_sharghi@ip-co.com
 
   cfd simulation of wall film during fuel injection and combustion in a three-cylinder ‎turbocharged gasoline direct injection engine  
   
Authors mohammadi arash ,ajami nima ,parivar amirhossein ,sharghi peyman
Abstract    in this research, a 3d-cfd model was created to investigate the behavior of spray and combustion in a three-cylinder gdi engine using a six-hole nozzle injector. to validate the model, in-cylinder data pressure was conducted at iran khodro power train company (ipco) under wide-open throttle and 5500 rpm conditions. the obtained data were incorporated into the cfd model to simulate the spray evolution and combustion process inside the cylinder during fuel injection. droplet temperature and lambda distribution from 30 deg to 279 deg after injection were displayed. temperature distribution during 2 to 40 deg atdc was illustrated in the paper. finally, evaporated fuel and wall film of the cylinder head, liner, and piston. intake and exhaust valves and equivalence ratio in the combustion chamber have been studied.
Keywords gdi ,injector ,mixture preparation ,spray modeling
 
 

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