Abstract

Instabilities in turbomachinery operation originate from intrinsic flow unsteadiness, sudden variations of operating conditions, and interactions with the surrounding system, affecting both system stability and machine reliability. The flow unsteadiness, presenting a characteristic behavior, requires a deep understanding of the underlying flow fundamentals, a careful analysis using advanced experimental methods and a clear distinction on how the system might lead to instabilities. The identified approach addresses deep surge and second quadrant characterization. The analysis presented here benefits from the responsiveness and flexibility of the experimental test rig, fine tuning of the system layout, the instrumentation installation, and the transient tests procedure. The main focus area is the time-frequency analysis of flow and pressure signals at transients, thus providing a proper reconstruction of flow mechanisms and instability evolution. Valuable techniques include: short-time fast Fourier transform, wavelet analysis, and Wigner-Ville distribution; coherence between flow and pressure, to trace waves propagation, is considered too. These, presented outlining their strengths and weaknesses, are evaluated considering real-time field applicability with regards to computational resources too. The experimental campaigns and data processing are presented, with a test matrix covering a wide range of parameters, including system layout and surge volume size, rotational speeds, flow rates ranging from nominal point to full second quadrant operation. These data are vital for system modeling validation for a full compressor-system digital twin. Results indicate the importance of ensuring reliable data acquisition and analysis, with adequate instrumentation range, accuracy, synchronization, responsiveness and positioning.

References

1.
Bakken
,
L. E.
,
Bjørge
,
T.
,
Bradley
,
T. M.
, and
Smith
,
N.
,
2002
, “
Validation of Compressor Transient Behaviour
,”
ASME
Paper No. GT2002-30279.10.1115/GT2002-30279
2.
Tveit
,
G. B.
,
Bjørge
,
T.
, and
Bakken
,
L. E.
,
2005
, “
Impact of Compressor Protection System on Rundown Characteristics
,”
ASME
Paper No. GT2005-68436.10.1115/GT2005-68436
3.
Tveit
,
G. B.
,
Bakken
,
L. E.
, and
Bjørge
,
T.
,
2004
, “
Compressor Transient Behaviour
,”
ASME
Paper No. GT2004-53700.10.1115/GT2004-53700
4.
Bakken
,
L. E.
,
Lunde
,
E.
, and
Løes
,
M.
,
2016
, “
Power Dip Impact on Compressor System Stability
,”
ASME
Paper No. ASME10.1115/ASME GT2016-56950.
5.
Serena
,
A.
,
Hundseid
,
Ø.
, and
Bakken
,
L. E.
,
2023
, “
Experimental Characterization of Surge Cycles in a Centrifugal Compressor Under Wet Gas Operation
,”
ASME
Paper No. GT2023-102287.10.1115/GT2023-102287
6.
Serena
,
A.
, and
Bakken
,
L. E.
,
2023
, “
Experimental Characterization of a Centrifugal Compressor in Second Quadrant Operation
,”
ASME
Paper No. IMECE2023-112735.10.1115/IMECE2023-112735
7.
Greitzer
,
E. M.
, and
Moore
,
F. K.
,
1986
, “
A Theory of Post-Stall Transients in a Axial Compressor Systems: Part II-Application
,”
ASME J. Eng. Gas Turbines Power
,
108
(
2
), pp.
231
239
.10.1115/1.3239893
8.
Niccolini
,
C. A.
,
Silvestri
,
P.
,
Ferrari
,
M. L.
, and
Massardo
,
A. F.
,
2020
, “
Signal Processing Techniques to Detect Centrifugal Compressors Instabilities in Large Volume Power Plants
,”
ASME
Paper No. GT2020-14795.10.1115/GT2020-14795
9.
Niccolini
,
C. A.
,
Silvestri
,
P.
,
Ferrari
,
M. L.
, and
Massardo
,
A. F.
,
2021
, “
Incipient Surge Detection in Large Volume Energy Systems Based on Wigner-Ville Distribution Evaluated on Vibraiton Signals
,”
ASME J. Eng. Gas Turbines Power
,
143
(
7
), p.
071014
.10.1115/1.4049855
10.
Tangirala
,
A. K.
, 2016,
Introduction to Time-Frequency Analysis and Wavelet Transforms
,
Online Resource, Indian Institute of Technology
,
Madras, India
.
11.
Mathworks Matlab Help Center
, 2023, All the Topics Related to the Signal Processing Toolbox, Online Documentation, Online Resource.
12.
Mathworks Matlab
, 2023, “
Compare Time-Frequency Content in Signals With Wavelet Coherence
,” MathWorks, Natick, MA.
13.
Serena
,
A.
, and
Bakken
,
L. E.
,
2022
, “
Experimental Characterization of Surge Cycles in a Centrifugal Compressor
,”
ASME
Paper No. IMECE-94747.10.1115/IMECE-94747
14.
Serena
,
A.
, and
Bakken
,
L. E.
,
2023
, “
System Influence on the Surge Behaviour of a Centrifugal Compressor
,”
15th European Conference on Turbomachinery Fluid dynamics & Thermodynamics
, Budapest, Hungary, Apr. 24–28, Paper No. ETC2023-136.https://www.euroturbo.eu/paper/ETC2023-136.pdf
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