A 3.3-liter, V6 SI engine with a compression ratio of 10.9:1 operates on an Otto cycle at 2600 RPM using stoichiometric gasoline. Crevice volume, which equals 2.5% of the clearance volume, has pressure equal to the pressure in the combustion chamber but remains at the cylinder wall temperature of 190°C. Conditions at the start of compres- sion are 65°C and 98 kPa. Assume complete combustion. Calculate: (a) Percent of gas mixture mass which is in the crevice volume at the start of combustion. (b) Percent of gas mixture mass which is in the crevice volume at the end of combustion.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A 3.3-liter, V6 SI engine with a compression ratio of 10.9:1 operates on an Otto cycle at
2600 RPM using stoichiometric gasoline. Crevice volume, which equals 2.5% of the
clearance volume, has pressure equal to the pressure in the combustion chamber but
remains at the cylinder wall temperature of 190°C. Conditions at the start of compres-
sion are 65°C and 98 kPa. Assume complete combustion.
Calculate: (a) Percent of gas mixture mass which is in the crevice volume at the start
of combustion.
(b) Percent of gas mixture mass which is in the crevice volume at the end
of combustion.
Transcribed Image Text:A 3.3-liter, V6 SI engine with a compression ratio of 10.9:1 operates on an Otto cycle at 2600 RPM using stoichiometric gasoline. Crevice volume, which equals 2.5% of the clearance volume, has pressure equal to the pressure in the combustion chamber but remains at the cylinder wall temperature of 190°C. Conditions at the start of compres- sion are 65°C and 98 kPa. Assume complete combustion. Calculate: (a) Percent of gas mixture mass which is in the crevice volume at the start of combustion. (b) Percent of gas mixture mass which is in the crevice volume at the end of combustion.
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