The performances of automotive turbocharger turbines have long been realized to be quite different under pulsating flow conditions compared to that under the equivalent steady and quasi-steady conditions on which the conventional design concept is based. However, the mechanisms of this phenomenon are still intensively investigated nowadays. This paper presents an investigation of the response of a stand-alone rotor to inlet pulsating flow conditions by using validated unsteady Reynolds Averaged Navier-Stokes solver (URANS). The effects of the frequency, the amplitude and the temporal gradient of pulse waves on the instantaneous and cycle integrated performances of a radial turbine rotor in isolation were studied, decoupled from the upstream...
The current global scenario, in which an ever increasing population with an ever growing transporta...
In automotive applications radial gas turbines are commonly fitted with a twin-entry volute connecte...
Automotive turbocharger turbines usually work under pulsating flow because of the sequential nature ...
In the optic of a more sustainable society, research and development of highly efficient fluid machi...
This paper presents a numerical study analyzing the effect of pulsating flow in a variable geometry ...
Turbochargers are currently in their prime utilization period, which pushes for performance enhancem...
Radial turbines are frequently submitted to unsteady inlet flows, for example in turbocharging appli...
In this paper, a low-order model for predicting performance of radial turbocharger turbines is prese...
In this paper, a low order model for predicting performance of radial turbocharger turbines is prese...
Due to the reciprocating engine, a pulsating flow occurs in the turbine turbocharger, which experien...
The paper attempts to correlate simulations and measurements of turbine performance under pulsating ...
Radial flow turbines are extensively used in turbocharging technology due to their unique capability...
During recent years a research project concerning the influence of pulsating turbine admission on th...
This paper aims to provide a detailed understanding of the flow interaction within the complex geome...
In the present paper, an unsteady approach to determine the performance of a small radial inflow tur...
The current global scenario, in which an ever increasing population with an ever growing transporta...
In automotive applications radial gas turbines are commonly fitted with a twin-entry volute connecte...
Automotive turbocharger turbines usually work under pulsating flow because of the sequential nature ...
In the optic of a more sustainable society, research and development of highly efficient fluid machi...
This paper presents a numerical study analyzing the effect of pulsating flow in a variable geometry ...
Turbochargers are currently in their prime utilization period, which pushes for performance enhancem...
Radial turbines are frequently submitted to unsteady inlet flows, for example in turbocharging appli...
In this paper, a low-order model for predicting performance of radial turbocharger turbines is prese...
In this paper, a low order model for predicting performance of radial turbocharger turbines is prese...
Due to the reciprocating engine, a pulsating flow occurs in the turbine turbocharger, which experien...
The paper attempts to correlate simulations and measurements of turbine performance under pulsating ...
Radial flow turbines are extensively used in turbocharging technology due to their unique capability...
During recent years a research project concerning the influence of pulsating turbine admission on th...
This paper aims to provide a detailed understanding of the flow interaction within the complex geome...
In the present paper, an unsteady approach to determine the performance of a small radial inflow tur...
The current global scenario, in which an ever increasing population with an ever growing transporta...
In automotive applications radial gas turbines are commonly fitted with a twin-entry volute connecte...
Automotive turbocharger turbines usually work under pulsating flow because of the sequential nature ...