Shuttle airbreathing propulsion
Requirements analysis of airbreathing gas turbine engines for shuttle vehicles
Engineering topics
Publications and source records attributed to Stewart, W. L..
Requirements analysis of airbreathing gas turbine engines for shuttle vehicles
Turbine blade loading in terms of surface diffusion and loading factors, discussing tandem and jet flap blades and vortex generators
Cycle characteristics and structural configuration of turbojet and turbofan engines for lightweight aircraft
Pivoted pad journal gas bearing performance from experimental study of Brayton cycle turbocompressor designed for space power system
Relationship between fan drive turbine geometry and output efficiency of turbofan engine
Pivoted pad gas bearing performance in exploratory operation of Brayton cycle turbocompressor
Brayton cycle alternator drive turbine aerodynamics
Surface diffusion and loading effectiveness parameters examined to increase turbine blade loading
Aerodynamic characteristics of two stage turbine for alternator drive in two shaft Brayton cycle space power system, measuring efficiency variations
Gas turbine engine principles, performance improvements, and application to electric power generation based on NASA technology
Similarity parameters used for examining geometry characteristics of axial flow turbines with high expansion ratio
Axial flow turbine blade loading using surface diffusion parameters, determining solidity
Multistage multiple reentry axial flow reaction turbine with reverse flow reentry ducting
Reynolds number and turbine geometry effects on performance of single stage axial flow turbines
Electric power generation for space vehicles - batteries, solar cells, thermoelectric converters, magnetohydrodynamic converters, fuel cells, and thermionic converters
Suitability of the brayton cycle for low power solar and intermediate power nuclear applications for spacecraft power supplies
Multistage, multiple reentry, single rotor, axial flow turbine
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