Recent test experiences with applying multiple unshrouded impellers in a single-shaft compressor

Author:

Petry Nico1,Hartmann Jörg1,Sorokes James M.2,Kuzdzal Mark J.2

Affiliation:

1. Siemens Energy, Wolfgang Reuter Platz, 47053 Duisburg, Germany

2. Siemens Energy (Retired), Olean, New York, USA

Abstract

The use of unshrouded impellers to increase the pressure ratio and volume reduction achieved in low mole weight, single-shaft compressor applications is discussed. The aerodynamic and mechanical implications of using multiple unshrouded impellers in series is also addressed. Test results will show that with proper management of impeller tip gaps good aerodynamic performance can be achieved with three unshrouded impellers in a single process section. The development effort also leveraged a knowledge-based impeller design system to provide new impeller designs that were optimized as a function of Mach number to provide a 30% axially shorter section without compromising aerodynamic performance. The shorter axial stages in the first section pushed the rotor natural frequency 20% higher, enabling faster rotor tip speeds. Test results from a single-stage test rig and from a full-size prototype testing are provided and generally show good agreement.

Publisher

Global Power and Propulsion Society

Reference8 articles.

1. Brun K. and Kurz R. (2019). Compression Machinery for Oil and Gas. Gulf Professional Publishing. p. 37.

2. ASME Power Test Code 10, 1965 (reaffirmed 1979), ANSI PTC10;Compressors and Exhausters,1974

3. Distinction Between Different Types of Impeller and Diffuser Rotating Stall in a Centrifugal Compressor With Vaneless Diffuser, ASME paper 83-GT-61;Frigne P.,1983

4. Deterioration of compressor performance due to tip clearance of centrifugal impellers;Senoo Y.;Journal of Turbomachinery,1987

5. Limits of Rotating Stall and Stall in Vaneless Diffuser of Centrifugal Compressors, ASME paper 78-GT-19;Senoo Y.,1978

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