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Large Engine Technology Program. Task 22: Variable Geometry Concepts for Rich-Quench-Lean CombustorsThe objective of the task reported herein was to define, evaluate, and optimize variable geometry concepts suitable for use with a Rich-Quench-Lean (RQL) combustor. The specific intent was to identify approaches that would satisfy High Speed Civil Transport (HSCT) cycle operational requirements with regard to fuel-air ratio turndown capability, ignition, and stability margin without compromising the stringent emissions, performance, and reliability goals that this combustor would have to achieve. Four potential configurations were identified and three of these were refined and tested in a high-pressure modular RQL combustor rig. The tools used in the evolution of these concepts included models built with rapid fabrication techniques that were tested for airflow characteristics to confirm sizing and airflow management capability, spray patternation, and atomization characterization tests of these models and studies that were supported by Computational Fluid Dynamics analyses. Combustion tests were performed with each of the concepts at supersonic cruise conditions and at other critical conditions in the flight envelope, including the transition points of the variable geometry system, to identify performance, emissions, and operability impacts. Based upon the cold flow characterization, emissions results, acoustic behavior observed during the tests and consideration of mechanical, reliability, and implementation issues, the tri-swirler configuration was selected as the best variable geometry concept for incorporation in the RQL combustor evolution efforts for the HSCT.
Document ID
20050111479
Acquisition Source
Glenn Research Center
Document Type
Contractor Report (CR)
Authors
Tacina, Robert R.
(NASA Glenn Research Center Cleveland, OH, United States)
Cohen, J. M.
(United Technologies Research Center East Hartford, CT, United States)
Padget, F. C.
(United Technologies Research Center East Hartford, CT, United States)
Kwoka, D.
(Pratt and Whitney Aircraft West Palm Beach, FL, United States)
Wang, Q.
(Pratt and Whitney Aircraft West Palm Beach, FL, United States)
Lohmann, R. P.
(Pratt and Whitney Aircraft West Palm Beach, FL, United States)
Date Acquired
September 7, 2013
Publication Date
February 1, 2005
Subject Category
Aircraft Design, Testing And Performance
Report/Patent Number
HSR062
NASA/CR-2005-213328
E-14788
Report Number: HSR062
Report Number: NASA/CR-2005-213328
Report Number: E-14788
Funding Number(s)
CONTRACT_GRANT: NAS3-26618
WBS: WBS 22-714-09-46
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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