The Numerical Simulation of UAV's Landing in Ship Airwake

In order to investigate the influence of ship airwake on aerodynamic characteristics of the carrier-based aircraft, UAV's landings in different winds over deck were simulated by Overset Mesh method. Firstly, mesh factors, steady and unsteady methods were compared based on single aircraft carrie...

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Format: Article
Language:zho
Published: The Northwestern Polytechnical University 2019-02-01
Series:Xibei Gongye Daxue Xuebao
Subjects:
uav
Online Access:https://www.jnwpu.org/articles/jnwpu/full_html/2019/01/jnwpu2019371p186/jnwpu2019371p186.html
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spelling doaj-046a40b039cc42de94f0f8998d4efa632021-05-03T01:30:57ZzhoThe Northwestern Polytechnical UniversityXibei Gongye Daxue Xuebao1000-27582609-71252019-02-0137118619410.1051/jnwpu/20193710186jnwpu2019371p186The Numerical Simulation of UAV's Landing in Ship Airwake01School of Aeronautics, Northwestern Polytechnical UniversityScience and Technology on UAV Laboratory, Northwestern Polytechnical UniversityIn order to investigate the influence of ship airwake on aerodynamic characteristics of the carrier-based aircraft, UAV's landings in different winds over deck were simulated by Overset Mesh method. Firstly, mesh factors, steady and unsteady methods were compared based on single aircraft carrier. The results showed that the boundary layer mesh around ship didn't show obvious influence for our simulation, and the calculation results between the steady and unsteady time average showed a similar trend. Then, aircraft carrier's flow fields in three wind directions were analyzed, and ship airwake variations with different direction winds over deck were concluded as well. Next, the reliability of Overset Mesh was verified though single UAV's landing simulation. Finally, the coupled flow fields of UAV/ship were studied. The calculation results indicated that aircraft was always in a low dynamic pressure condition, the lift and pitching moment of UAV had apparent changes in landing. Meanwhile, the aerodynamic fluctuations of UAV also revealed differences in different wind directions. The simulation results can be regarded as a reference for the safety assessment of carrier-based aircraft's landing and its control in the future.https://www.jnwpu.org/articles/jnwpu/full_html/2019/01/jnwpu2019371p186/jnwpu2019371p186.htmlship airwakeuavcarrier landingnumerical simulationoverset meshunsteady aerodynamics
collection DOAJ
language zho
format Article
sources DOAJ
title The Numerical Simulation of UAV's Landing in Ship Airwake
spellingShingle The Numerical Simulation of UAV's Landing in Ship Airwake
Xibei Gongye Daxue Xuebao
ship airwake
uav
carrier landing
numerical simulation
overset mesh
unsteady aerodynamics
title_short The Numerical Simulation of UAV's Landing in Ship Airwake
title_full The Numerical Simulation of UAV's Landing in Ship Airwake
title_fullStr The Numerical Simulation of UAV's Landing in Ship Airwake
title_full_unstemmed The Numerical Simulation of UAV's Landing in Ship Airwake
title_sort numerical simulation of uav's landing in ship airwake
publisher The Northwestern Polytechnical University
series Xibei Gongye Daxue Xuebao
issn 1000-2758
2609-7125
publishDate 2019-02-01
description In order to investigate the influence of ship airwake on aerodynamic characteristics of the carrier-based aircraft, UAV's landings in different winds over deck were simulated by Overset Mesh method. Firstly, mesh factors, steady and unsteady methods were compared based on single aircraft carrier. The results showed that the boundary layer mesh around ship didn't show obvious influence for our simulation, and the calculation results between the steady and unsteady time average showed a similar trend. Then, aircraft carrier's flow fields in three wind directions were analyzed, and ship airwake variations with different direction winds over deck were concluded as well. Next, the reliability of Overset Mesh was verified though single UAV's landing simulation. Finally, the coupled flow fields of UAV/ship were studied. The calculation results indicated that aircraft was always in a low dynamic pressure condition, the lift and pitching moment of UAV had apparent changes in landing. Meanwhile, the aerodynamic fluctuations of UAV also revealed differences in different wind directions. The simulation results can be regarded as a reference for the safety assessment of carrier-based aircraft's landing and its control in the future.
topic ship airwake
uav
carrier landing
numerical simulation
overset mesh
unsteady aerodynamics
url https://www.jnwpu.org/articles/jnwpu/full_html/2019/01/jnwpu2019371p186/jnwpu2019371p186.html
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