Novel IGV Designs for Centrifugal Compressors and Their Interaction With the Impeller

Author:

Mohseni Arman1,Goldhahn Erik1,Van den Braembussche René A.2,Seume Joerg R.1

Affiliation:

1. Institute of Turbomachinery and Fluid Dynamics, Department of Mechanical Engineering, Leibniz Universität Hannover, Appelstraße 9, 30167 Hannover, Germany

2. Department of Turbomachinery and Propulsion, von Kármán Institute for Fluid Dynamics, Waterloose steenweg 72, 1640 Sint-Genesius-Rode, Belgium

Abstract

In centrifugal compressors, variable inlet guide vanes (IGVs) are used to control the mass flow rate with negligible change in pressure ratio and shaft speed. The efficient operation of IGVs is limited to the range of aerodynamic stability of their vane profiles. Thin symmetric profiles, which are usually used, tend to exhibit flow separation already at low setting angles, resulting in a rapid decrease in the global efficiency. Three different guide vane profiles, including a symmetric reference profile, a two-piece tandem profile with a variable angle, and an s-cambered profile, together with two auxiliary profiles, were considered. These variants were numerically and experimentally investigated at different setting angles, covering negative and positive inlet swirls, and at different operating points. The results show that tandem and s-cambered vanes have superior aerodynamic performance in comparison with the symmetric reference profile and extend the operating range of the compressor over which the efficiency remains high. The tandem profile shows better aerodynamic performance than the s-cambered profile at negative inlet swirl, while the asymmetric s-cambered profile offers an extended range of high efficiency at positive preswirl. Considering manufacturing requirements and cost, the s-cambered profile is preferred for applications with positive preswirl.

Publisher

ASME International

Subject

Mechanical Engineering

Reference19 articles.

1. Effect of Suction Elbow and Inlet Guide Vanes on the Flow Field in a Centrifugal Compressor;Cui

2. Performance Prediction and Optimization of an Industrial Centrifugal Compressor Inlet Guide Vane System;Coppinger

3. The Design of an Inlet Guide Vane Assembly for an Industrial Centrifugal Compressor;Swain

4. The Performance of a Centrifugal Compressor With High Inlet Prewhirl;Whitfield;ASME J. Turbomach.

5. Improvements in Performance Characteristics of Single-Stage and Multistage Centrifugal Compressors by Simultaneous Adjustments of Inlet Guide Vanes and Diffuser Vanes;Simon;ASME J. Turbomach.

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