In the recent years, the interest in heavy-duty engines fueled with Compressed Natural Gas (CNG) is increasing due to the necessity to comply with the stringent CO2 limitation imposed by national and international regulations. Indeed, the reduced number of carbon atoms of the NG molecule allows to reduce the CO2 emissions compared to a conventional fuel. The possibility to produce synthetic methane from renewable energy sources, or bio-methane from agricultural biomass and/or animal waste, contributes to support the switch from conventional liquid fuels to CNG. To drive the engine development and reduce the time-to-market, the employment of numerical analysis is mandatory. This requires a continuous improvement of the simulation models towa...
In recent years, engine manufacturers have been continuously involved in the research of proper tech...
Natural gas is gaining popularity as a fuel for automobile applications. In order to procure all the...
Predicting turbulence in a zero-dimensional (0D) simulation is an undeniably challenging task due to...
In the recent years, the interest in heavy-duty engines fueled with Compressed Natural Gas (CNG) is ...
Increasing demands on higher performance and lower fuel consumption and emissions have led the path ...
The activity presented in the paper is focused on the development of a high-performance engine speci...
In this work, the refinement of a phenomenological turbulence model developed in recent years by the...
As known, reliable information about underlying turbulence intensity is a mandatory pre-requisite to...
In this work, the refinement of a phenomenological turbulence model developed in recent years by the...
The current study evaluates the predictive capabilities of a new phenomenological combustion model, ...
A 0D phenomenological turbulence model, based on the K-k and k- ɛ approaches, was coupled with a pre...
It is widely recognized that spatial and temporal evolution of both macro-and micro-turbulent scales...
Recently, a growing interest in the development of more accurate phenomenological turbulence models ...
It is widely recognized that spatial and temporal evolution of both macro-and micro-turbulent scales...
In recent years, engine manufacturers have been continuously involved in the research of proper tech...
Natural gas is gaining popularity as a fuel for automobile applications. In order to procure all the...
Predicting turbulence in a zero-dimensional (0D) simulation is an undeniably challenging task due to...
In the recent years, the interest in heavy-duty engines fueled with Compressed Natural Gas (CNG) is ...
Increasing demands on higher performance and lower fuel consumption and emissions have led the path ...
The activity presented in the paper is focused on the development of a high-performance engine speci...
In this work, the refinement of a phenomenological turbulence model developed in recent years by the...
As known, reliable information about underlying turbulence intensity is a mandatory pre-requisite to...
In this work, the refinement of a phenomenological turbulence model developed in recent years by the...
The current study evaluates the predictive capabilities of a new phenomenological combustion model, ...
A 0D phenomenological turbulence model, based on the K-k and k- ɛ approaches, was coupled with a pre...
It is widely recognized that spatial and temporal evolution of both macro-and micro-turbulent scales...
Recently, a growing interest in the development of more accurate phenomenological turbulence models ...
It is widely recognized that spatial and temporal evolution of both macro-and micro-turbulent scales...
In recent years, engine manufacturers have been continuously involved in the research of proper tech...
Natural gas is gaining popularity as a fuel for automobile applications. In order to procure all the...
Predicting turbulence in a zero-dimensional (0D) simulation is an undeniably challenging task due to...