Brush seals are used to provide flow resistance between rotating and stationary components in gas turbines. Compliant filament seals, such as brush seals, exhibit a phenomenon called blow-down, where the filaments deflect toward the rotor surface when a differential pressure is applied across the seal. This phenomenon is desirable as it enables seal contact to be maintained during rotor contractions and eccentric excursions. This paper describes an aerodynamic mechanism, which can cause the blow-down of bristles. Importantly it shows that distortion of the bristle pack is not necessary to achieve blow-down. Experimental and computational investigations of a large scale model representative of a section of a brush seal are also reported. The measured and predicted detailed pressure distributions thus obtained are used to validate the model of blow-down presented.

1.
Ferguson
,
J.
, and
Waters
,
G.
, 1975, “
Seals and Method of Manufacture Thereof
,” United States Patent No. US0003917150.
2.
Chupp
,
R.
,
Prior
,
R.
, and
Lowenthal
,
R.
, 1996, “
Update on Brush Seal Development for Large Industrial Gas Turbines
,”
AIAA/SAE/ASME/ASEE Joint Propulsion Conference and Exhibit
, Lake Buena Vista, FL,
AIAA
,
Reston, VA
, Vol.
32
, Paper No. 96-3306.
3.
Wolfe
,
C. E.
,
Chiu
,
R. P.
,
Cromer
,
R. H.
,
Crum
,
G. A.
,
Marks
,
P. T.
,
Stuck
,
A. E.
,
Turnquist
,
N. A.
,
Reluzco
,
G.
, and
Dinc
,
O. S.
, 1997, “
Brush Seals in Industrial Gas Turbines
,”
AIAA/SAE/ASME/ASEE Joint Propulsion Conference and Exhibit
, Seattle, WA,
AIAA
,
Reston, VA
, Vol.
33
, Paper No. 97-2730.
4.
Dinc
,
O.
,
Demiroglu
,
M.
,
Turnquist
,
N.
,
Mortzheim
,
J.
,
Goetze
,
G.
,
Maupin
,
J.
,
Hopkins
,
J.
,
Wolfe
,
C.
, and
Florin
,
M.
, 2001, “
Fundamental Design Issues of Brush Seals for Industrial Applications
,” ASME Paper No. 2001-GT-0400.
5.
Ferguson
,
J. G.
, 1988, “
Brushes as High Performance Gas Turbine Seals
,” ASME Paper No. 88-GT-182.
6.
Nakane
,
H.
,
Maekawa
,
A.
,
Akita
,
E.
,
Akagi
,
K.
,
Nakano
,
T.
,
Nishimoto
,
S.
,
Hashimoto
,
S.
,
Shinohara
,
T.
, and
Uehara
,
H.
, 2002, “
The Development of High Performance Leaf Seals
,” ASME Paper No. 2002-GT-30243.
7.
Bayley
,
F. J.
, and
Long
,
C. A.
, 1993, “
A Combined Experimental and Theoretical Study of Flow and Pressure Distributions in a Brush Seal
,”
ASME J. Eng. Gas Turbines Power
0742-4795,
115
(
2
), pp.
404
410
.
8.
Wood
,
P. E.
, and
Jones
,
T. V.
, 1999, “
A Test Facility for the Measurement of Torques at the Shaft to Seal Interface in Brush Seals
,”
ASME J. Eng. Gas Turbines Power
0742-4795,
121
, pp.
160
166
.
9.
Lelli
,
D.
,
Chew
,
J. W.
, and
Cooper
,
P.
, 2005, “
Combined 3D Fluid Dynamics and Mechanical Modelling of Brush Seals
,” ASME Paper No. GT2005-68973.
10.
Chen
,
L. H.
,
Wood
,
P. E.
,
Jones
,
T. V.
, and
Chew
,
J. W.
, 2000, “
Detailed Experimental Studies of Flow in Large Scale Brush Seal Model and a Comparison With CFD Predictions
,”
ASME J. Eng. Gas Turbines Power
0742-4795,
122
, pp.
672
679
.
11.
Turner
,
M. T.
,
Chew
,
J. W.
, and
Long
,
C. A.
, 1997, “
Experimental Investigation and Mathematical Modelling of Clearance Brush Seals
,” ASME Paper No. 97-GT-282.
12.
Braun
,
M. J.
,
Canacci
,
V. A.
, and
Hendricks
,
R. C.
, 1992, “
Flow Visualization and Motion Analysis for a Series of Four Sequential Brush Seals
,”
J. Propul. Power
0748-4658,
8
(
3
), pp.
697
702
.
13.
Demiroglu
,
M.
,
Aksit
,
M. F.
, and
Tichy
,
J. A.
, 1998, “
A Numerical Study of Brush Seal Leakage Flow
,”
Joint Propulsion Conference and Exhibit, AIAA/SAE/ASME/ASEE
, Cleveland, OH,
AIAA
,
Reston, VA
, Vol.
34
, Paper No. 98-3173.
14.
Chen
,
L. H.
,
Wood
,
P. E.
,
Jones
,
T. V.
, and
Chew
,
J. W.
, 1998, “
An Iterative CFD and Mechanical Brush Seal Model and Comparison With Experimental Results
,” ASME Paper No. 98-GT-372.
15.
Crudgington
,
P.
, and
Bowsher
,
A.
, 2003, “
Brush Seal Blow Down
,”
AIAA/SAE/ASME/ASEE Joint Propulsion Conference and Exhibit
, Huntsville, AL,
AIAA
,
Reston, VA
, Vol.
39
, Paper No. 2003-4697.
You do not currently have access to this content.