Investigation of Flow Field at the Inlet of a Turbocharger Compressor Using Digital Particle Image Velocimetry

Author:

Banerjee Deb1,Dehner Rick1,Selamet Ahmet1,Tallio Kevin2,Miazgowicz Keith3,Keller Philip4,Shutty John4

Affiliation:

1. Department of Mechanical and Aerospace Engineering, The Ohio State University, 201 W. 19th Ave., Columbus, OH 43210

2. Ford Motor Company, Engine Engineering and EPE, Ford Asia Pacific, 20000 Rotunda Dr., Dearborn, MI 48124

3. Ford Motor Company, Global Engine Engineering, 20000 Rotunda Dr., Dearborn, MI 48124

4. BorgWarner Inc., Corporate Advanced Engineering, 3800 Automation Ave., Auburn Hills, MI 48326

Abstract

Abstract The flow field at the inlet of a turbocharger compressor has been studied through stereoscopic particle image velocimetry (SPIV) experiments under different operating conditions. It is found that the flow field is quite uniform at high mass flow rates; but as the mass flow rate is reduced, flow reversal from the impeller is observed as an annular ring at the periphery of the inlet duct. The inception of flow reversal is observed to occur in the mid-flow operating region, near peak efficiency, and corresponds to an incidence angle of about 15.5 deg at the inducer blade tips at all tested speeds. This reversed flow region is marked with high tangential velocity and rapid fluctuations. It grows in strength with reducing mass flow rate and imparts some of its angular momentum to the forward flow due to mixing. The penetration depth of the reversed flow upstream from the inducer plane is found to increase quadratically with decreasing flow rate.

Funder

Ford Motor Company and BorgWarner Inc

Publisher

ASME International

Subject

Mechanical Engineering

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