Wave Rotor Enhanced Gas Turbine Engine Cycles

Wave Rotor Enhanced Gas Turbine Engine Cycles PDF Author: Gregory P. Mathis
Publisher:
ISBN:
Category :
Languages : en
Pages : 258

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Wave Rotor Enhanced Gas Turbine Engine Cycles

Wave Rotor Enhanced Gas Turbine Engine Cycles PDF Author: Gregory P. Mathis
Publisher:
ISBN:
Category :
Languages : en
Pages : 258

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Wave-Rotor-Enhanced Gas Turbine Engine Demonstrator

Wave-Rotor-Enhanced Gas Turbine Engine Demonstrator PDF Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
ISBN: 9781721197798
Category :
Languages : en
Pages : 28

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The U.S. Army Research Laboratory, NASA Glenn Research Center, and Rolls-Royce Allison are working collaboratively to demonstrate the benefits and viability of a wave-rotor-topped gas turbine engine. The self-cooled wave rotor is predicted to increase the engine overall pressure ratio and peak temperature by 300% and 25 to 30%. respectively, providing substantial improvements in engine efficiency and specific power. Such performance improvements would significantly reduce engine emissions and the fuel logistics trails of armed forces. Progress towards a planned demonstration of a wave-rotor-topped Rolls-Royce Allison model 250 engine has included completion of the preliminary design and layout of the engine, the aerodynamic design of the wave rotor component and prediction of its aerodynamic performance characteristics in on- and off-design operation and during transients, and the aerodynamic design of transition ducts between the wave rotor and the high pressure turbine. The topping cycle increases the burner entry temperature and poses a design challenge to be met in the development of the demonstrator engine. Welch, Gerard E. and Paxson, Daniel E. and Wilson, Jack and Synder, Philip H. Glenn Research Center NASA/TM-1999-209459, NAS 1.15:209459, ARL-TR-2113, E-11958

Performance Prediction and Preliminary Design of Wave Rotors Enhancing Gas Turbine Cycles

Performance Prediction and Preliminary Design of Wave Rotors Enhancing Gas Turbine Cycles PDF Author: Pezhman Akbari
Publisher:
ISBN:
Category : Gas-turbines
Languages : en
Pages : 522

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Wave Rotor-enhanced Gas Turbine Engines

Wave Rotor-enhanced Gas Turbine Engines PDF Author: Gerard E. Welch
Publisher:
ISBN:
Category :
Languages : en
Pages : 18

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Wave-Rotor-Enhanced Gas Turbine Engine Demonstrator

Wave-Rotor-Enhanced Gas Turbine Engine Demonstrator PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 18

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Book Description
The U.S. Army Research Laboratory, NASA Glenn Research Center, and Rolls-Royce Allison are working collaboratively to demonstrate the benefits and viability of a wave-rotor-topped gas turbine engine. The self-cooled wave rotor is predicted to increase the engine overall pressure ratio and peak temperature by 300% and 25 to 30%, respectively, providing substantial improvements in engine efficiency and specific power. Such performance improvements would significantly reduce engine emissions and the fuel logistics trails of armed forces. Progress towards a planned demonstration of a wave-rotor-topped Rolls-Royce Allison model 250 engine has included completion of the preliminary design and layout of the engine, the aerodynamic design of the wave rotor component and prediction of its aerodynamic performance characteristics in on- and off-design operation and during transients, and the aerodynamic design of transition ducts between the wave rotor and the high pressure turbine. The topping cycle increases the burner entry temperature and poses a design challenge to be met in the development of the demonstrator engine.

Wave-rotor-enhanced Gas Turbine Engine Demonstrator

Wave-rotor-enhanced Gas Turbine Engine Demonstrator PDF Author: Gerard E. Welch
Publisher:
ISBN:
Category :
Languages : en
Pages : 10

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Book Description
The U.S. Army Research Laboratory, NASA Glenn Research Center, and Rolls-Royce Allison are working collaboratively to demonstrate the benefits and viability of a wave-rotor-topped gas turbine engine. The self-cooled wave rotor is predicted to increase the engine overall pressure ratio and peak temperature by 300% and 25 to 30%, respectively, providing substantial improvements in engine efficiency and specific power. Such performance improvements would significantly reduce engine emissions and the fuel logistics trails of armed forces. Progress towards a planned demonstration of a wave-rotor-topped Rolls-Royce Allison model 250 engine has included completion of the preliminary design and layout of the engine, the aerodynamic design of the wave rotor component and prediction of its aerodynamic performance characteristics in on- and off-design operation and during transients, and the aerodynamic design of transition ducts between the wave rotor and the high pressure turbine. The topping cycle increases the burner entry temperature and poses a design challenge to be met in the development of the demonstrator engine.

Design of Wave Rotor Topping Cycles for Propulsion and Shaftpower

Design of Wave Rotor Topping Cycles for Propulsion and Shaftpower PDF Author: Jeffrey Carl Mocsari
Publisher:
ISBN:
Category :
Languages : en
Pages : 346

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Performance Benefits for Wave Rotor-Topped Gas Turbine Engines

Performance Benefits for Wave Rotor-Topped Gas Turbine Engines PDF Author: Scott M. Jones
Publisher:
ISBN:
Category :
Languages : en
Pages : 16

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Book Description
Presented at the International Gas Turbine and Aeroengine Congress & Exhibition Birmingham, UK - June 10-13, 1996.

Wave Rotor Demonstrator Engine Assessment

Wave Rotor Demonstrator Engine Assessment PDF Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
ISBN: 9781722868215
Category :
Languages : en
Pages : 76

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Book Description
The objective of the program was to determine a wave rotor demonstrator engine concept using the Allison 250 series engine. The results of the NASA LERC wave rotor effort were used as a basis for the wave rotor design. A wave rotor topped gas turbine engine was identified which incorporates five basic requirements of a successful demonstrator engine. Predicted performance maps of the wave rotor cycle were used along with maps of existing gas turbine hardware in a design point study. The effects of wave rotor topping on the engine cycle and the subsequent need to rematch compressor and turbine sections in the topped engine were addressed. Comparison of performance of the resulting engine is made on the basis of wave rotor topped engine versus an appropriate baseline engine using common shaft compressor hardware. The topped engine design clearly demonstrates an impressive improvement in shaft horsepower (+11.4%) and SFC (-22%). Off design part power engine performance for the wave rotor topped engine was similarly improved including that at engine idle conditions. Operation of the engine at off design was closely examined with wave rotor operation at less than design burner outlet temperatures and rotor speeds. Challenges identified in the development of a demonstrator engine are discussed. A preliminary design was made of the demonstrator engine including wave rotor to engine transition ducts. Program cost and schedule for a wave rotor demonstrator engine fabrication and test program were developed. Snyder, Philip H. Glenn Research Center...

Jet Engine Performance Enhancement Through Use of a Wave-rotor Topping Cycle

Jet Engine Performance Enhancement Through Use of a Wave-rotor Topping Cycle PDF Author: Jack Wilson
Publisher:
ISBN:
Category : Airplanes
Languages : en
Pages : 20

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