| Citation: | Experiment on multitooth rim sealing.[J]. Journal of Aerospace Power, 2017, 32(1): 8-13. doi: 10.13224/j.cnki.jasp.2017.01.002 |
| [1] |
Bayley F J,Owen J M.The fluid dynamics of a shrouded disc system with a radial outflow of coolant[J].Journal of Engineering for Power,1970,92(2):335-341.
|
| [2] |
Phadke U P,Owen J M.An investigation of ingress for an “air cooled” shrouded rotating disk system with radial clearance seals[J].Journal of Engineering Power,1983,105(1):178-182.
|
| [3] |
Chew J W.A theoretical study of ingress for shrouded rotating disc systems with radial outflow[R].ASME Paper 1989GT187,1989.
|
| [4] |
Chew J W,Dadkhah S,Turner A B.Rim sealing of rotorstator wheel spaces in the absence of external flow[R].ASME Paper 1991GT33,1991.
|
| [5] |
Campbell D A.Gas turbine disc sealing system design[R].AGARD 1978CP237,1978.
|
| [6] |
Abe T,Kikuchi J,Takeuchi H.An investigation of turbine disc cooling[R].CIMAC Congress Paper 1979GT30,1979.
|
| [7] |
Phadke U P,Owen J M.Aerodynamic aspects of the sealing of gasturbine rotorstator system:Part 2 the performance of simple seals in a quasiaxisymmetric external flow[J].International Journal Heat Fluid Flow,1988,9(2):106-112.
|
| [8] |
Phadke U P,Owen J M.Aerodynamic aspects of the sealing of gasturbine rotorstator system:Part 3 the effect of nonaxisymmetric external flow on seal performance[J].International Journal Heat Fluid Flow,1988,9(2):113-117.
|
| [9] |
Chew J W,Green T,Turner A B.Rim sealing of rotorstator wheel spaces in the presence of external flow[R].ASME Paper 1994GT126,1994.
|
| [10] |
Bohn D,Rudzinski B,Sürken N,et al.Experimental and numerical investigation of the influence of rotor blades on hot gas ingestion into the upstream cavity of an axial turbine stage[R].ASME Paper 2000GT284,2000.
|
| [11] |
Bohn D E,Decker A,Hongwei M,et al.Influence of sealing air mass flow on the velocity distribution in and inside the rim seal of the upstream cavity of a 1.5 stage turbine[R].ASME Paper 2003GT38459,2003.
|
| [12] |
Bohn D,Wolff M.Improved formulation to determine minimum sealing flow for different sealing configurations[R].ASME Paper 2003GT38465,2003.
|
| [13] |
Owen J M.Prediction of ingestion through turbine rim seals:Part Ⅰ rotationally induced ingress[J].Journal of Turbomachinery,2011,133(3):031005.1-031005.9.
|
| [14] |
Owen J M.Prediction of ingestion through turbine rim seals:Part Ⅱ externally induced and combined ingress[J].Journal of Turbomachinery,2011,133(3):031006.1-031006.9.
|
| [15] |
Owen J M,Zhou K,Pountney O,et al.Theoretical prediction of ingress through turbine rim seals:Part Ⅰ externally induced ingress[J].Journal of Turbomachinery,2012,134(3):031012.1031012.8.
|
| [16] |
Zhou K,Wood S N,Owen J M,et al.Statistical and theoretical models of ingestion through turbine rim seals[R].ASME Paper 2011GT45139,2011.
|
| [17] |
Sangan C M,Pountey O J,Scobie J A et al.Experimental measurements of ingestion through turbine rim seals:Part 3 single and double seals[J].Journal of Turbomachinery,2013,135(2):051011.1-051011.11.
|
| [18] |
Hamabe K,Ishida K.Rim seal experiments and analysis of a rotorstator system with nonaxisymmetric main flow[R].ASME Paper 92GT160,1992.
|