CountessBathory wrote:stevesingo wrote:Based on the following assumptions...
AFR-14.7:1
VE 120%
RPM 10500
I calculate 3.1Bar absolute.
Nice post.
BTW, would you mind explaining deeper this calculations? I got a different result and I would like to know where I'm wrong.
Thanks in advance.
I'm probably wrong...
100kg/hr of fuel @ 14.7:1 AFR would need 1470kg/hr of air
1470kg of air is 1220930223cm3
1500/6cyl =250cm3 per cylinder
Cm/ hr of air / no of cylinders= cm3 air/ hr/cylinder
1220930223/6= 203488372cm3/hr/cyl
cm3 air/ hr/cylinder /60sec= air/min/cylinder
203488372/60sec= 3391472cm3/min/cylinder
Cm3 of Air / cycles per min = cm3 of air per cycle
3391472/(10500/2)= 646cm3 of used air per cycle.
Cylinder Cm3 * VE= NA cylinder filling
267*120%= 320cm3
(Used air/ cyl cm3)*VE = boost
(646/267)*120% = 2.9bar
Edited to correct engine capacity