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Framework for a landing-gear model and acoustic prediction
Leonard V. Lopes
,
Kenneth S. Brentner
, Philip J. Morris
Aerospace Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
15
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Scopus citations
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Dive into the research topics of 'Framework for a landing-gear model and acoustic prediction'. Together they form a unique fingerprint.
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Keyphrases
Model Prediction
100%
Acoustic Prediction
100%
Gear Model
100%
Landing Gear
100%
State Universities
13%
Gear Geometry
13%
Acoustic Elements
13%
Pennsylvania
6%
Wind Tunnel Test
6%
Mach number
6%
Early Development
6%
Noise Prediction
6%
Noise Radiation
6%
Turbulence Intensity
6%
Wind Tunnel Experiment
6%
Physical Components
6%
Sound Pressure Level
6%
Wind Tunnel Data
6%
Prediction Tool
6%
Simple Component
6%
Gears Component
6%
Subassembly
6%
Acoustic Calculation
6%
Downstream Flow
6%
Upstream Flow
6%
Landing Gear Noise
6%
Aircraft Noise
6%
Future Aircraft
6%
Virginia Polytechnic Institute
6%
Landing Gear Design
6%
Initial Calibration
6%
System Calibration
6%
Acoustic Wind Tunnel
6%
Program Behavior Prediction
6%
Aircraft Noise Prediction
6%
Aircraft Landing Gear
6%
Prediction Formula
6%
Flow Intensity
6%
Earth and Planetary Sciences
Landing Gear
100%
Wind Tunnels
23%
Pennsylvania
5%
Virginia
5%
Sound Pressure
5%
Mach Number
5%
Noise Prediction
5%
Airframe
5%
Subassemblies
5%
Electromagnetic Noise
5%
Noise Prediction (Aircraft)
5%
Aircraft Landing
5%
Engineering
Landing Gear
100%
Mach Number
6%
Early Stage
6%
Airframe
6%
Turbulence Intensity
6%
Sound Pressure Level
6%
Future Application
6%
Subassemblies
6%
Polytechnic
6%