The occurrence and intensity of the detonation phenomenon at spark-ignition (SI) engine conditions is investigated, with the objective to successfully predict super-knock and to elucidate the effect of kinetics and transport at the ignition front. The computational singular perturbation (CSP) framework is employed in order to investigate the chemical and transport mechanisms of deflagration and detonation cases in the context of 2D high-fidelity numerical simulations. The analysis revealed that the detonation development is characterised by: (i) stronger explosive dynamics and (ii) enhanced role of convection. The role of chemistry was also found to be pivotal to the detonation development which explained the stronger explosive character of...
High-fidelity numerical simulations of an experimental rotating detonation engine with discrete fuel...
The work was concerned with improving understanding of the chemical and physical trade-offs when emp...
The description of knock phenomenon is a critical issue in a combustion model for Spark-Ignition (SI...
Pre-ignition engine cycles leading to super-knock were simulated with a 48 species skeletal iso-octa...
Using 15 LES cycles of a high load/low speed spark ignition engine operating point, two different fr...
The super-knock phenomenon is a major obstacle for further improving the power density in SI engines...
The thesis investigates the problem of knocking combustion in Spark-Ignition engine using Computatio...
Computational singular perturbation (CSP) technique is applied as an automated diagnostic tool to cl...
Modern spark ignition engines are downsized and boosted to meet stringent emission standards and gro...
The purpose of this thesis is to use a transient Computational Fluid Dynamics computer code written ...
Previous work shows that auto-ignition propagation modes for strong knocking in engines are dominate...
The work was concerned with improving understanding of the effects of transient over-fuelling during...
High load performance and fuel economy of gasoline engines are limited by knocks. Such limitations a...
The Computational Singular Perturbation (CSP) technique is applied as an automated diagnostic tool t...
Computational studies are performed on the autoignition and combustion characteristics encountered i...
High-fidelity numerical simulations of an experimental rotating detonation engine with discrete fuel...
The work was concerned with improving understanding of the chemical and physical trade-offs when emp...
The description of knock phenomenon is a critical issue in a combustion model for Spark-Ignition (SI...
Pre-ignition engine cycles leading to super-knock were simulated with a 48 species skeletal iso-octa...
Using 15 LES cycles of a high load/low speed spark ignition engine operating point, two different fr...
The super-knock phenomenon is a major obstacle for further improving the power density in SI engines...
The thesis investigates the problem of knocking combustion in Spark-Ignition engine using Computatio...
Computational singular perturbation (CSP) technique is applied as an automated diagnostic tool to cl...
Modern spark ignition engines are downsized and boosted to meet stringent emission standards and gro...
The purpose of this thesis is to use a transient Computational Fluid Dynamics computer code written ...
Previous work shows that auto-ignition propagation modes for strong knocking in engines are dominate...
The work was concerned with improving understanding of the effects of transient over-fuelling during...
High load performance and fuel economy of gasoline engines are limited by knocks. Such limitations a...
The Computational Singular Perturbation (CSP) technique is applied as an automated diagnostic tool t...
Computational studies are performed on the autoignition and combustion characteristics encountered i...
High-fidelity numerical simulations of an experimental rotating detonation engine with discrete fuel...
The work was concerned with improving understanding of the chemical and physical trade-offs when emp...
The description of knock phenomenon is a critical issue in a combustion model for Spark-Ignition (SI...