Current models for transition in turbomachinery boundary layer flows are reviewed. The basic physical mechanisms of transition processes and the way these processes are expressed by model ingredients are discussed. The fundamentals of models are described as far as possible, with a common structure of the equations and with emphasis on the similarities between the models. Tests of models reported in the literature are summarized and our own test is added. A conclusion on the performance of models is formulated
International audienceFor numerical predicting turbomachinery flows a two-equation turbulence model ...
For the numerical prediction of turbomachinery flows, a two-equation turbulence model in combination...
Abstract. In turbomachines, transitional flows are likely to occur over many components. In the case ...
Current models for transition in turbomachinery boundary layer flows are reviewed. The basic physica...
Current models for transition in turbomachinery boundary layer flows are reviewed. The basic physica...
The paper deals with the problems of boundary layer modelling in turbo-machinery applications, where...
An algebraic intermittency model for bypass and separation-induced transition is presented. The mode...
An algebraic intermittency model for bypass and separation-induced transition is presented. The mode...
The functioning of a recently developed algebraic model for laminar to turbulent boundary layer tran...
The paper deals with the problems of boundary layer modelling in turbomachinery applications, where ...
The functioning of a recently developed algebraic model for laminar to turbulent boundary layer tran...
The report deals with mathematical modelling and experimental investigation of the bypass transition...
Reshotko has suggested that transition may be viewed as the response of a very complex three-dimensi...
The distinguishing features of transition in turbomachinery flows are that they are unsteady on time...
For the numerical prediction of turbomachinery flows, a two-equation turbulence model in combination...
International audienceFor numerical predicting turbomachinery flows a two-equation turbulence model ...
For the numerical prediction of turbomachinery flows, a two-equation turbulence model in combination...
Abstract. In turbomachines, transitional flows are likely to occur over many components. In the case ...
Current models for transition in turbomachinery boundary layer flows are reviewed. The basic physica...
Current models for transition in turbomachinery boundary layer flows are reviewed. The basic physica...
The paper deals with the problems of boundary layer modelling in turbo-machinery applications, where...
An algebraic intermittency model for bypass and separation-induced transition is presented. The mode...
An algebraic intermittency model for bypass and separation-induced transition is presented. The mode...
The functioning of a recently developed algebraic model for laminar to turbulent boundary layer tran...
The paper deals with the problems of boundary layer modelling in turbomachinery applications, where ...
The functioning of a recently developed algebraic model for laminar to turbulent boundary layer tran...
The report deals with mathematical modelling and experimental investigation of the bypass transition...
Reshotko has suggested that transition may be viewed as the response of a very complex three-dimensi...
The distinguishing features of transition in turbomachinery flows are that they are unsteady on time...
For the numerical prediction of turbomachinery flows, a two-equation turbulence model in combination...
International audienceFor numerical predicting turbomachinery flows a two-equation turbulence model ...
For the numerical prediction of turbomachinery flows, a two-equation turbulence model in combination...
Abstract. In turbomachines, transitional flows are likely to occur over many components. In the case ...