The Autoignition of n-Pentane in a Non-Fired Single Cylinder Engine

932756

10/01/1993

Event
International Fuels & Lubricants Meeting & Exposition
Authors Abstract
Content
The detailed chemical reactions leading to autoignition of n-pentane are investigated in this study. A single-cylinder engine operating in a nonfired mode was used. The engine is supercharged and the temperature of the inlet fuel/air mixture is varied. By increasing the inlet manifold temperature, at a given inlet manifold pressure, the fuel/air mixture can be made to undergo autoignition. In-cylinder pressure and temperature profiles were measured. Gas samples from the combustion chamber were extracted and analyzed using gas chromatography techniques. The detailed chemical reaction mechanisms explaining the products from the different stages of the fuel oxidation process are presented. It is speculated that the generation of OH radicals from the peroxide (QOOH) decomposition is responsible for the autoignition of the n-pentane fuel/air mixture.
Meta TagsDetails
DOI
https://doi.org/10.4271/932756
Pages
13
Citation
Cernansky, N., Miller, D., and Addagarla, S., "The Autoignition of n-Pentane in a Non-Fired Single Cylinder Engine," SAE Technical Paper 932756, 1993, https://doi.org/10.4271/932756.
Additional Details
Publisher
Published
Oct 1, 1993
Product Code
932756
Content Type
Technical Paper
Language
English