Solid particles, such as sand, ingested into gas turbine engines, reduce the coolant flow in the turbine by blocking cooling channels in the secondary flow path. One method to remove solid particles from the secondary flow path is to use an inertial particle separator because of its ability to incur minimal pressure losses in high flow rate applications. In this paper, an inertial separator is presented that is made up of an array of louvers followed by a static collector. The performance of two inertial separator configurations was measured in a unique test facility. Performance measurements included pressure loss and collection efficiency for a range of Reynolds numbers and sand sizes. To complement the measurements, both two-dimensional and three-dimensional computational results are presented for comparison. Computational predictions of pressure loss agreed with measurements at high Reynolds numbers, whereas predictions of sand collection efficiency for a sand size range 0–200μm agreed within 10% of experimental measurements over the range of Reynolds numbers. Collection efficiency values were measured to be as high as 35%, and pressure loss measurements were equivalent to less than 1% pressure loss in an engine application.

References

1.
Tabakoff
,
W.
,
Hosny
,
W.
, and
Hamed
,
A.
,
1976
, “
Effect of Solid Particles on Turbine Performance
,”
ASME J. Eng. Power
,
98
(
1
), pp.
47
52
.10.1115/1.3446109
2.
Kim
,
J.
,
Dunn
,
M. G.
,
Baran
,
A. J.
,
Wade
,
D. P.
, and
Tremba
,
E. L.
,
1993
, “
Deposition of Volcanic Materials in the Hot Sections of Two Gas Turbine Engines
,”
ASME J. Eng. Gas Turbines Power
,
115
, pp.
641
651
.10.1115/1.2906754
3.
Dunn
,
M. G.
,
Baran
,
A. J.
, and
Miatah
,
J.
,
1994
, “
Operation of Gas Turbine Engines in Volcanic Ash Clouds
,” ASME Paper No. 94-GT-170.
4.
Walsh
,
W. S.
,
Thole
,
K. A.
, and
Joe
,
C.
,
2006
, “
Effects of Sand Ingestion on the Blockage of Film-Cooling Holes
,”
ASME
Paper No. GT2006-90067.10.1115/GT2006-90067
5.
Land
,
C. C.
,
Thole
,
K. A.
, and
Joe
,
C.
,
2008
, “
Considerations of a Double-Wall Cooling Design to Reduce Sand Blockage
,”
ASME
Paper No. GT2008-50160.10.1115/GT2008-50160
6.
Poulton
,
P.
, and
Cole
,
B.N.
,
1981
, “
An Experimental and Numerical Investigation of Louvred Inertia Air Filter Performance
,”
Proceedings of the Conference on Gas Born Particles, Institution of Mechanical Engineers
,
Oxford, UK, June
, pp.
161
170
.
7.
Smith
,
J. L.
, Jr.
, and
Goglia
,
M. J.
,
1956
, “
Mechanism of Separation in Louver-Type Dust Separator
,”
ASME Trans.
78
(
2
), pp.
389
399
.
8.
Gee
,
D. E.
, and
Cole
,
B. N.
,
1969
, “
A Study of the Performance of Inertia Air Filters
,”
Proceedings of the Institute of Mechanical Engineers—Symposium on Fluid Mechanics and Measurements in Two-Phase Systems, University of Leeds
,
Leeds, UK
, pp.
167
176
.
9.
Zverev
,
N. I.
,
1946
, “
Shutter-Type Dust Collector of Small Dimensions
,”
Eng. Dig.
,
7
(
11
), pp.
353
355
.
10.
Schneider
,
O.
,
Dohmen
,
H. J.
, and
Reichert
,
A. W.
,
2002
, “
Experimental Analysis of Dust Separation in the Internal Cooling Air System of Gas Turbines
,”
ASME
Paper No. GT2002-30240.10.1115/GT2002-30240
11.
Schneider
,
O.
,
Dohmen
,
H. J.
,
Benra
,
F.-K.
, and
Brillert
,
D.
,
2003
, “
Investigations of Dust Separation in the Internal Cooling Air System of Gas Turbines
,”
ASME
Paper No. GT2003-38293.10.1115/GT2003-38293
12.
Schneider
,
O.
,
Dohmen
,
H. J.
,
Benra
,
F.-K.
, and
Brillert
,
D.
,
2004
, “
Dust Separation in a Gas Turbine Pre-Swirl Cooling Air System, a Parameter Variation
,”
ASME
Paper No. GT2004-53048.10.1115/GT2004-53048
13.
Schneider
,
O.
,
Benra
,
F.-K.
,
Dohmen
,
H. J.
, and
Jarzombek
,
K.
,
2005
, “
A Contribution to the Abrassive Effect of Particles in a Gas Turbine Pre-Swirl Cooling Air System
,”
ASME
Paper No. GT2005-68188.10.1115/GT2005-68188
14.
Villora
,
N. G.
,
Dullenkopf
,
K.
, and
Bauer
,
H. J.
, “
Separation of Particles in the Secondary Air System of Gas Turbines
,”
ASME
Paper No. GT2011-45080.10.1115/GT2011-45080
15.
Syred
,
C.
,
Griffiths
,
A.
, and
Syred
,
N.
,
2004
, “
Gas Turbine Combustor With Integrated Ash Removal for Fine Particulates
,”
ASME
Paper No. GT2004-53270.10.1115/GT2004-53270
16.
Musgrove
,
G. O.
,
Barringer
,
M. D.
,
Thole
,
K. A.
,
Grover
,
E.
, and
Barker
,
J.
,
2009
, “
Computational Design of a Louver Particle Separator for Gas Turbine Engines
,”
ASME
Paper No. GT2009-60199.10.1115/GT2009-61099
17.
Powder Technology, Inc.,
2009
, Burnsville, MN.
18.
ANSYS, Inc.
,
2009
,
FLUENT Version 6.3.26, ANSYS Inc.
,
NH
.
19.
Moffat
,
R. J.
,
1988
, “
Describing the Uncertainties in Experimental Results
,”
Exp. Thermal Fluid Sci.
,
1
, pp.
3
17
.10.1016/0894-1777(88)90043-X
20.
Schetz
,
J.
, and
Fuhs
,
A.
,
1996
,
Handbook of Fluid Dynamics and Fluid Machinery
, Vol.
1
,
John Wiley & Sons, Inc.
,
New York
, Chap. 14.
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