A three-dimensional computer code, KIVA, is being modified to include state-of-the-art submodels for diesel engine flow and combustion. Improved and/or new submodels which have already been implemented and previously reported are: wall heat transfer with unsteadiness and compressibility, laminar-turbulent characteristic time combustion with unburned HC and Zeldo'vich NO(x), and spray/wall impingement with rebounding and sliding drops. Progress on the implementation of improved spray drop drag and drop breakup models, the formulation and testing of a multistep kinetics ignition model, and preliminary soot modeling results are described. In addition, the use of a block structured version of KIVA to model the intake flow process is described. ...
Two different types of mesh used for diesel combustion with the KIVA-4 code are compared. One is a w...
Combustion control and optimization is of great importance to meet future emission standards in dies...
Diesel engine pollutant emissions legislation is becoming more and more stringent. New driving cycle...
A series of combustion sub-models, which represent the physical mechanisms of ignition, turbulent co...
Three models were implemented, which are important for pollutant prediction in Diesel engines: igni...
With the advent of the KIVA-4 code which employs an unstructured mesh to represent the engine geomet...
The present work is based on the need for understanding the in-cylinder flow and its subsequent effe...
A numerical study has been performed to investigate the soot emission from a high-speed single-cylin...
Abstract- Diesel engines emit a Large amount of pollutants essentially soot particles. This paper de...
In numerical simulation of spray combustion in DI Diesel engines, a correctly modeled spray behavior...
Reduction of engine development time and cost is of primary interest for combustion engine manufactu...
An extended coherent flamelet model was implemented in the computational fluid dynamics code KIVA-3V...
The aim of this study is to investigate the effect of fuel injection pressure and timing on the comb...
In the present study, an improved multidimensional numerical code has been used to simulate the comb...
The use of numerical simulations in the development processes of engineering products has been more ...
Two different types of mesh used for diesel combustion with the KIVA-4 code are compared. One is a w...
Combustion control and optimization is of great importance to meet future emission standards in dies...
Diesel engine pollutant emissions legislation is becoming more and more stringent. New driving cycle...
A series of combustion sub-models, which represent the physical mechanisms of ignition, turbulent co...
Three models were implemented, which are important for pollutant prediction in Diesel engines: igni...
With the advent of the KIVA-4 code which employs an unstructured mesh to represent the engine geomet...
The present work is based on the need for understanding the in-cylinder flow and its subsequent effe...
A numerical study has been performed to investigate the soot emission from a high-speed single-cylin...
Abstract- Diesel engines emit a Large amount of pollutants essentially soot particles. This paper de...
In numerical simulation of spray combustion in DI Diesel engines, a correctly modeled spray behavior...
Reduction of engine development time and cost is of primary interest for combustion engine manufactu...
An extended coherent flamelet model was implemented in the computational fluid dynamics code KIVA-3V...
The aim of this study is to investigate the effect of fuel injection pressure and timing on the comb...
In the present study, an improved multidimensional numerical code has been used to simulate the comb...
The use of numerical simulations in the development processes of engineering products has been more ...
Two different types of mesh used for diesel combustion with the KIVA-4 code are compared. One is a w...
Combustion control and optimization is of great importance to meet future emission standards in dies...
Diesel engine pollutant emissions legislation is becoming more and more stringent. New driving cycle...