The correct simulation of combustion process allows to better face several SI engines design problems, not only for innovative mixture formation concepts (stratified or ultra-lean charge), but for traditional homogeneous mixture as well. Even though many commercial codes are able to describe the complex 3-D non reacting fluid dynamics in ICE, the simulation of high turbulent flame propagation does not seem to be a completely solved problem yet. In this work a comparison between two different turbulent combustion models (a characteristic time based one by Abraham and Reitz [2, 15, 16] and a flamelet based one by Cant and AbuOrf [4, 20]) has been performed using KIVA-3V code to assess simulation reliability. Models predictive capabilit...
In SI engines the ignition process strongly affects the combustion process. Its accurate modelling b...
The continuous pursuit of higher combustion efficiencies, as well as the possible usage of synthetic...
Natural gas is gaining popularity as a fuel for automobile applications. In order to procure all the...
The correct simulation of combustion process allows to better face several SI engines design problem...
An extended coherent flamelet model was implemented in the computational fluid dynamics code KIVA-3V...
As discussed in the part I of this paper, 3D models represent a useful tool for a detailed descripti...
The use of CNG as a fuel for SI engines represents a feasible solution to improve engine fuel econom...
The present work is based on the need for understanding the in-cylinder flow and its subsequent effe...
The role of computer modeling has grown recently to integrate itself as an inseparable tool to exp...
A three-dimensional computer code, KIVA, is being modified to include state-of-the-art submodels for...
Modeling the Homogeneous Charge Compression Ignition (HCCI) engine requires a balanced approach that...
As known, reliable information about underlying turbulence intensity is a mandatory pre-requisite to...
In internal combustion engine (ICE), researchers have to face with stringent environment regulations...
This work shows experiments and simulations of the fired operation of a spark ignition engine with p...
In SI engines the ignition process strongly affects the combustion process. Its accurate modelling b...
The continuous pursuit of higher combustion efficiencies, as well as the possible usage of synthetic...
Natural gas is gaining popularity as a fuel for automobile applications. In order to procure all the...
The correct simulation of combustion process allows to better face several SI engines design problem...
An extended coherent flamelet model was implemented in the computational fluid dynamics code KIVA-3V...
As discussed in the part I of this paper, 3D models represent a useful tool for a detailed descripti...
The use of CNG as a fuel for SI engines represents a feasible solution to improve engine fuel econom...
The present work is based on the need for understanding the in-cylinder flow and its subsequent effe...
The role of computer modeling has grown recently to integrate itself as an inseparable tool to exp...
A three-dimensional computer code, KIVA, is being modified to include state-of-the-art submodels for...
Modeling the Homogeneous Charge Compression Ignition (HCCI) engine requires a balanced approach that...
As known, reliable information about underlying turbulence intensity is a mandatory pre-requisite to...
In internal combustion engine (ICE), researchers have to face with stringent environment regulations...
This work shows experiments and simulations of the fired operation of a spark ignition engine with p...
In SI engines the ignition process strongly affects the combustion process. Its accurate modelling b...
The continuous pursuit of higher combustion efficiencies, as well as the possible usage of synthetic...
Natural gas is gaining popularity as a fuel for automobile applications. In order to procure all the...