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Future Jet Technologies. Part A. Air, Land and Marine Applications of Thrust Vectoring
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Benjamin Gal-Or
Published/Copyright:
April 11, 2011
Published Online: 2011-04-11
Published in Print: 2011-April
Copyright © 2011 De Gruyter
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Articles in the same Issue
- Future Jet Technologies. Part A. Air, Land and Marine Applications of Thrust Vectoring
- Aerodynamic Characteristics of Three-Dimensional Surface-Mounted Objects in Tandem Arrangement
- GUI Type Fault Diagnostic Program for a Turboshaft Engine Using Fuzzy and Neural Networks
- Numerical Modeling of an Axisymmetric Trapped Vortex Combustor
- Optimization of a Francis Turbine Through Flow Simulation with a RNG k-ω Turbulence Model
- Control of Base Flows with Micro Jets
- Analysis on Cavitation Characteristics of Flow in a Francis Turbine with Different Content of Non-Condensable Gas
- Research on the Optimum Clocking Position in Axial-Flow Turbomachinery
- Asymmetrical Flow Simulation of Icing Effects in S-Duct Inlets at Angle of Attack
- Experimental Investigation of a Twin Fluid Atomizer Spray Using a Diode Laser Based Optical Patternator
Articles in the same Issue
- Future Jet Technologies. Part A. Air, Land and Marine Applications of Thrust Vectoring
- Aerodynamic Characteristics of Three-Dimensional Surface-Mounted Objects in Tandem Arrangement
- GUI Type Fault Diagnostic Program for a Turboshaft Engine Using Fuzzy and Neural Networks
- Numerical Modeling of an Axisymmetric Trapped Vortex Combustor
- Optimization of a Francis Turbine Through Flow Simulation with a RNG k-ω Turbulence Model
- Control of Base Flows with Micro Jets
- Analysis on Cavitation Characteristics of Flow in a Francis Turbine with Different Content of Non-Condensable Gas
- Research on the Optimum Clocking Position in Axial-Flow Turbomachinery
- Asymmetrical Flow Simulation of Icing Effects in S-Duct Inlets at Angle of Attack
- Experimental Investigation of a Twin Fluid Atomizer Spray Using a Diode Laser Based Optical Patternator