Numerical simulation of a mixed-mode reaction front in a PPC engine |
| |
Authors: | Christian Ibron Hesammedin Fatehi Zhenkan Wang Panagiota Stamatoglou Marcus Lundgren Marcus Aldén Mattias Richter Öivind Andersson Xue-Song Bai |
| |
Affiliation: | 1. Energy Sciences, Lund University, Ole R?mers Vg 1, Lund 22363, Sweden;2. Combustion Physics, Lund University, Professorsgatan 1, Lund 22363, Sweden |
| |
Abstract: | The ignition process, mode of combustion and reaction front propagation in a partially premixed combustion (PPC) engine running with a primary reference fuel (87% iso-octane, 13% n-heptane by volume) is studied numerically in a large eddy simulation. Different combustion modes, ignition front propagation, premixed flame and non-premixed flame, are observed simultaneously. Displacement speed of CO iso-surface propagation describes the transition of premixed auto-ignition to non-premixed flame. High temporal resolution optical data of CH2O and chemiluminescence are compared with simulated results. A high speed ignition front is seen to expand through fuel-rich mixture and stabilize around stoichiometry in a non-premixed flame while lean premixed combustion occurs in the spray wake at a much slower pace. A good qualitative agreement of the distribution of chemiluminescence and CH2O formation and destruction shows that the simulation approach sufficiently captures the driving physics of mixed-mode combustion in PPC engines. The study shows that the transition from auto-ignition to flame occurs over a period of several crank angles and the reaction front propagation can be captured using the described model. |
| |
Keywords: | |
本文献已被 ScienceDirect 等数据库收录! |
|