Performance Improvement Through Indexing of Turbine Airfoils: Part 2—Numerical Simulation
- 1 October 1996
- journal article
- Published by ASME International in Journal of Turbomachinery
- Vol. 118 (4) , 636-642
- https://doi.org/10.1115/1.2840919
Abstract
An experimental/analytical study has been conducted to determine the performance improvements achievable by circumferentially indexing succeeding rows of turbine stator airfoils. A series of tests was conducted to experimentally investigate stator wake clocking effects on the performance of the space shuttle main engine (SSME) alternate turbopump development (ATD) fuel turbine test article (TTA). The results from this study indicate that significant increases in stage efficiency can be attained through application of this airfoil clocking concept. Details of the experiment and its results are documented in part 1 of this paper. In order to gain insight into the mechanisms of the performance improvement, extensive computational fluid dynamics (CFD) simulations were executed. The subject of the present paper is the initial results from the CFD investigation of the configurations and conditions detailed in part 1 of the paper. To characterize the aerodynamic environments in the experimental test series, two-dimensional, time-accurate, multistage, viscous analyses were performed at the TTA midspan. Computational analyses for five different circumferential positions of the first stage stator have been completed. Details of the computational procedure and the results are presented. The analytical results verify the experimentally demonstrated performance improvement and are compared with data whenever possible. Predictions of time-averaged turbine efficiencies as well as gas conditions throughout the flow field are presented. An initial understanding of the turbine performance improvement mechanism based on the results from this investigation is described.Keywords
This publication has 12 references indexed in Scilit:
- Performance Improvement Through Indexing of Turbine Airfoils: Part 1—Experimental InvestigationJournal of Turbomachinery, 1996
- The 1993 IGTI Scholar Lecture: Loss Mechanisms in TurbomachinesJournal of Turbomachinery, 1993
- A Numerical Analysis of Tonal Acoustics in Rotor-Stator InteractionsJournal of Fluids and Structures, 1993
- Analytical Investigation of the Unsteady Aerodynamic Environments in Space Shuttle Main Engine (SSME) TurbinesPublished by ASME International ,1993
- Application of an unsteady Navier-Stokes solver to transonic turbinedesignJournal of Propulsion and Power, 1992
- Cold Flow Testing of the Space Shuttle Main Engine Alternate Turbopump Development High Pressure Fuel Turbine ModelPublished by ASME International ,1992
- Cold flow testing of the Space Shuttle Main Engine high pressure fuel turbine modelPublished by American Institute of Aeronautics and Astronautics (AIAA) ,1991
- Temporally and Spatially Resolved Flow in a Two-Stage Axial Compressor: Part 2—Computational AssessmentJournal of Turbomachinery, 1991
- Two-dimensional computations of multi-stage compressor flows using azonal approachPublished by American Institute of Aeronautics and Astronautics (AIAA) ,1989
- An implicit form for the Osher upwind schemeAIAA Journal, 1986