Gas turbine (GT) inlet fogging and overspray (high-fogging) have been considered the most cost-effective means of boosting a GT's total power output, especially under hot or dry weather conditions. The result of employing fogging or overspray is indisputably clear—total power output is increased; however, development of the theory and explanation of the phenomena associated with fogging and overspray are not always consistent and are sometimes misleading and incorrect. This paper focuses on reviewing several interesting features and commonly discussed topics, including (a) entropy production of water evaporation, (b) the effect of centrifugal force on water droplets, and (c) whether water droplets can survive the journey in the compressor and enter the combustor. Furthermore, three turbine myths that fogging/overspray increases the air density in the compressor, reduces the compressor power consumption, and noticeably enhances the GT efficiency are examined and discussed. Some common mistakes in describing the compressor work are identified and corrected. A newly constructed multiphase T–s diagram is used to explain the physics of water droplet evaporation process and corresponding entropy production during wet compression.

References

1.
Hill
,
P. G.
,
1963
, “
Aerodynamic and Thermodynamic Effects of Coolant Injection on Axial Compressors
,”
Aeronaut. Q.
,
14
(
4
), pp.
333
348
.
2.
Zheng
,
Q.
,
Sun
,
Y.
,
Li
,
S.
, and
Wang
,
Y.
,
2003
, “
Thermodynamic Analysis of Wet Compression Process in the Compressor of Gas Turbine
,”
ASME J. Eng. Gas Turbines Power
,
125
(
3
), pp.
489
496
.
3.
Zheng
,
Q.
,
Li
,
M.
, and
Sun
,
Y.
,
2003
, “
Thermodynamic Analysis of Wet Compression and Regenerative (WCR) Gas Turbine
,”
ASME
Paper No. GT2003-38517.
4.
Ransom
,
D.
,
Brun
,
K.
, and
Kurz
,
R.
,
2007
, “
Enthalpy Determination Methods for Compressor Performance Calculations
,”
ASME
Paper No. GT2007-27038.
5.
Bagnoli
,
M.
,
Bianchi
,
M.
,
Melino
,
F.
,
Peretto
,
A.
,
Spina
,
P. R.
,
Bhargava
,
R.
, and
Ingistov
,
S.
,
2004
, “
A Parametric Study of Interstage Injection on GE Frame 7EA Gas Turbine
,”
ASME
Paper No. GT2004-53042.
6.
Bagnoli
,
M.
,
Bianchi
,
M.
,
Melino
,
F.
, and
Spina
,
P. R.
,
2006
, “
Development and Validation of a Computational Code for Wet Compression Simulation of Gas Turbines
,”
ASME
Paper No. GT2006-90342.
7.
Bagnoli
,
M.
,
Bianchi
,
M.
,
Melino
,
F.
,
Peretto
,
A.
,
Spina
,
P. R.
,
Ingistov
,
S.
, and
Bhargava
,
R. K.
,
2008
, “
Application of a Computational Code to Simulate Interstage Injection Effects on GE Frame 7EA Gas Turbine
,”
ASME J. Eng. Gas Turbines Power
,
130
(
1
), p.
012001
.
8.
White
,
A. J.
, and
Meacock
,
A. J.
,
2004
, “
An Evaluation of the Effects of Water Injection on Compressor Performance
,”
ASME J. Eng. Gas Turbines Power
,
126
(
4
), pp.
748
754
.
9.
Khan
,
J. R.
, and
Wang
,
T.
,
2006
, “
Fog and Overspray Cooling for Gas Turbine Systems With Low Calorific Value Fuels
,”
ASME
Paper No. GT2006-90396.
10.
Kim
,
K. H.
, and
Perez-Blanco
,
H.
,
2006
, “
An Assessment of High-Fogging Potential for Enhanced Compressor Performance
,”
ASME
Paper No. GT2006-90482.
11.
Sanaye
,
S.
,
Rezazadeh
,
H.
, and
Aghazeynali
,
M.
,
2006
, “
Effects of Inlet Fogging and Wet Compression on Gas Turbine Performance
,”
ASME
Paper No. GT2006-90719.
12.
Meher-Homji
,
C. B.
, and
Mee
,
T. R.
,
1999
, “
Gas Turbine Power Augmentation by Fogging of Inlet Air
,”
28th Turbomachinery Symposium
, Houston, TX, pp.
93
114
.
13.
Williams
,
J.
,
2008
, “
Further Effects of Water Ingestion on Axial Flow Compressors and Aeroengines at Part Speed
,”
ASME
Paper No. GT2008-50620.
14.
Payne
,
R. C.
, and
White
,
A. J.
,
2007
, “
Three-Dimensional Calculations of Evaporative Flow in Compressor Blade Rows
,”
ASME
Paper No. GT-2007-27331.
15.
Abdelwahab
,
A.
,
2006
, “
An Investigation of the Use of Wet Compression in Industrial Centrifugal Compressors
,”
ASME
Paper No. GT-2006-90695.
16.
Young
,
J. B.
,
1995
, “
The Fundamental Equations of Gas-Droplet Multiphase Flow
,”
Int. J. Multiphase Flow
,
21
(
2
), pp.
175
191
.
17.
Klepper
,
J.
,
Hale
,
A.
,
Davis
,
M.
, and
Hurwitz
,
W.
,
2004
, “
A Numerical Investigation of the Effects of Steam Ingestion on Compression System Performance
,”
ASME
Paper No. GT2004-54190.
18.
Roumeliotis
,
I.
, and
Mathioudakis
,
K.
,
2007
, “
Water Injection Effects on Compressor Stage Operation
,”
ASME J. Eng. Gas Turbines Power
,
129
(
3
), pp.
778
784
.
19.
Jolly
,
S.
,
2002
, “
Wet Compression: A Powerful Means of Enhancing Combustion Turbine Capacity
,”
Power-Gen International
, Orlando, FL, Dec. 10–12.
20.
Jolly
,
S.
, and
Cloyd
,
S.
,
2003
, “
Performance Enhancement of GT 24 With Wet Compression
,”
Power-Gen International
, Las Vegas, NV, Dec. 9–11.
21.
Wang
,
T.
, and
Khan
,
J. R.
,
2010
, “
Overspray and Interstage Fog Cooling in Compressor Using Stage-Stacking Scheme—Part 1: Development of Theory and Algorithm
,”
ASME J. Therm. Sci. Eng. Appl.
,
2
(
2
), p.
031001
.
22.
Wang
,
T.
, and
Khan
,
J. R.
,
2010
, “
Overspray and Interstage Fog Cooling in Compressor Using Stage-Stacking Scheme—Part 2: Case Study
,”
ASME J. Therm. Sci. Eng. Appl.
,
2
(
3
), p.
031002
.
23.
Roumeliotis
,
I.
, and
Mathioudakis
,
K.
,
2006
, “
Evaluation of Interstage Water Injection Effect on Compressor and Engine Performance
,”
ASME J. Eng. Gas Turbine Power
,
128
(
4
), pp.
849
856
.
24.
Li
,
M.
, and
Zheng
,
Q.
,
2004
, “
Wet Compression System Stability Analysis
,”
ASME
Paper No. GT2004-54018.
25.
Utamura
,
M.
,
Kuwahara
,
T.
,
Murata
,
H.
, and
Horii
,
N.
,
1999
, “
Effects of Intensive Evaporative Cooling on Performance Characteristics of Land-Based Gas Turbines
,”
Joint Power Generation Conference
, PWR-Vol. 34, p.
321
.
26.
Lecheler
,
S.
, and
Hoffman
,
J.
,
2003
, “
The Power of Water in Gas Turbines: ALSTOM's Experience With Air Inlet Cooling
,”
PowerGen 2003
, Sao Paulo, Brazil, Nov. 11–13.
27.
Deneve
,
M.
,
DeTandt
,
B.
,
Cornelis
,
N.
,
Bultereys
,
C.
, and
Gijbels
,
S.
,
2005
, “
Results of the First Application of the SwirlflashTM Wet Compression System on a 150 MW Heavy-Duty Gas Turbines
,”
ASME
Paper No. GT 2005-68726.
28.
White
,
A. J.
, and
Meacock
,
A. J.
,
2010
, “
Wet Compression Analysis Including Velocity Slip Effects
,”
ASME
Paper No. GT2010-23793.
29.
Khan
,
J. R.
, and
Wang
,
T.
,
2013
, “
Implementation of a Non-Equilibrium Heat Transfer Model in Stage-Stacking Scheme to Investigate Overspray Fog Cooling in Compressors
,”
Int. J. Therm. Sci.
,
68
, pp.
63
78
.
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