The paper deals with intake swirling flow characterization in the cylinder of IC engine. The commonly used method based on the swirl resp. tumble number from angular momentum flux evaluation does not need to give the appropriate values in some cases. Typically, in the case of two intake ports, a counter-rotating swirl vortex pair is presented. However their summary angular momentum flux is zero a thus corresponding swirl number is zero too. In order to correctly quantify these cases, it is proposed to evaluate so called vorticity numbers, i.e. dimensionless numbers based on vorticity evaluation. Concrete results are evaluated from data obtained using 3-D CFD simulation in AVL FIRE code. Comparison of variously defined vorticity numbers with...
The turbulent and swirling flow of a uniflow-scavenged two-stroke engine cylinder is investigated us...
In-cylinder air flow structures are known to strongly impact on the performance and combustion of in...
Deep knowledge of intake process aerodynamics is fundamental to development and optimisation of mode...
International audienceA detailed aerodynamic analysis of the swirl characteristics of an in-cylinder...
AbstractEngine coherent flow structures such as swirl and tumble motions are key factors for the com...
Engine coherent flow structures such as swirl and tumble motions are key factors for the combustion...
International audienceSwirling flows are of considerable practical importance. They are used for exa...
Computational fluid dynamic (CFD) simulations and experimental steady flow tests (flow discharge, ...
The in-cylinder fluid motion of an internal combustion engine is a complex, turbulent flow that has ...
Combustion process in internal combustion engines involve significant temperature and pressure, carb...
Abstract.In-cylinder flow such as tumble and swirl has an important role on the engine combustion ef...
In order to evaluate different port concepts for modern Compression-Ignition engines, usually quanti...
The control of intake air swirl motion is often used in spark-ignition direct-injection (SIDI) engin...
Flow patterns are vital to ensure that the engine can produce high performance with the presence of ...
As world trucks (busses and industrial diesel engines) producer, Scania AB needs to respect internat...
The turbulent and swirling flow of a uniflow-scavenged two-stroke engine cylinder is investigated us...
In-cylinder air flow structures are known to strongly impact on the performance and combustion of in...
Deep knowledge of intake process aerodynamics is fundamental to development and optimisation of mode...
International audienceA detailed aerodynamic analysis of the swirl characteristics of an in-cylinder...
AbstractEngine coherent flow structures such as swirl and tumble motions are key factors for the com...
Engine coherent flow structures such as swirl and tumble motions are key factors for the combustion...
International audienceSwirling flows are of considerable practical importance. They are used for exa...
Computational fluid dynamic (CFD) simulations and experimental steady flow tests (flow discharge, ...
The in-cylinder fluid motion of an internal combustion engine is a complex, turbulent flow that has ...
Combustion process in internal combustion engines involve significant temperature and pressure, carb...
Abstract.In-cylinder flow such as tumble and swirl has an important role on the engine combustion ef...
In order to evaluate different port concepts for modern Compression-Ignition engines, usually quanti...
The control of intake air swirl motion is often used in spark-ignition direct-injection (SIDI) engin...
Flow patterns are vital to ensure that the engine can produce high performance with the presence of ...
As world trucks (busses and industrial diesel engines) producer, Scania AB needs to respect internat...
The turbulent and swirling flow of a uniflow-scavenged two-stroke engine cylinder is investigated us...
In-cylinder air flow structures are known to strongly impact on the performance and combustion of in...
Deep knowledge of intake process aerodynamics is fundamental to development and optimisation of mode...