Results of experimental investigations of the turbulent swirl flow in three straight conical diffusers with various diffuser total angles are presented in this paper. All three diffusers have the inlet diameter 0.4 m and total divergence angles 8.6°, 10.5°, and 12.6°. The incompressible swirl flow field is generated by the axial fan impeller, and for each diffuser several regimes were achieved by changing rotation number. Original classical probes were used for measurements. The distributions of the average main swirl flow characteristics along the diffuser are shown. Distributions of the inlet Boussinesq number, outlet Coriolis coefficient, ratio of the swirl and completely axial flow loss coefficients at conical diffuser on the inlet swir...
This work aims at getting a better understanding of the turbulent swirling flow in a conical diffuse...
Experimental research of the turbulent swirl flow in the pipe behind the axial fan impelle...
Experimental research of the turbulent swirl flow in the pipe behind the axial fan impelle...
Results of the theoretical and experimental investigations of the turbulent mean swirl flows charact...
Results of experimental investigations of the turbulent swirl flow in three straight conical diffuse...
Results of the theoretical and experimental investigations of the turbulent mean swirl flows charact...
Results of the theoretical and experimental investigations of the turbulent mean swirl flows charact...
This paper deals with the phenomenon of swirling flows in a straight conical diffuser induced by the...
The results of the experimental investigations of the turbulent swirl flow in a straight conical dif...
Swirl is a tangential velocity component of the fluid flow and is often present in the conical diffu...
In this paper is analyzed turbulent swirling flow generated by axial fans. Three cases will be prese...
In this paper is analyzed turbulent swirling flow generated by axial fans. Three cases will be prese...
The aim of the present work is to analyse experimental and numerically the swirling turbulent flow i...
This paper describes the effects of types of an approaching flow on the performances of straight con...
This paper describes the effects of types of an approaching flow on the performances of straight con...
This work aims at getting a better understanding of the turbulent swirling flow in a conical diffuse...
Experimental research of the turbulent swirl flow in the pipe behind the axial fan impelle...
Experimental research of the turbulent swirl flow in the pipe behind the axial fan impelle...
Results of the theoretical and experimental investigations of the turbulent mean swirl flows charact...
Results of experimental investigations of the turbulent swirl flow in three straight conical diffuse...
Results of the theoretical and experimental investigations of the turbulent mean swirl flows charact...
Results of the theoretical and experimental investigations of the turbulent mean swirl flows charact...
This paper deals with the phenomenon of swirling flows in a straight conical diffuser induced by the...
The results of the experimental investigations of the turbulent swirl flow in a straight conical dif...
Swirl is a tangential velocity component of the fluid flow and is often present in the conical diffu...
In this paper is analyzed turbulent swirling flow generated by axial fans. Three cases will be prese...
In this paper is analyzed turbulent swirling flow generated by axial fans. Three cases will be prese...
The aim of the present work is to analyse experimental and numerically the swirling turbulent flow i...
This paper describes the effects of types of an approaching flow on the performances of straight con...
This paper describes the effects of types of an approaching flow on the performances of straight con...
This work aims at getting a better understanding of the turbulent swirling flow in a conical diffuse...
Experimental research of the turbulent swirl flow in the pipe behind the axial fan impelle...
Experimental research of the turbulent swirl flow in the pipe behind the axial fan impelle...