Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

CFD Aerodynamic Analysis of Tandem Tilt-Wing UAVs in Cruise Flight and Tilt Transition Flight

View through CrossRef
The tandem tilt-wing UAV features an advanced aerodynamic layout design and is regarded as a solution for small-scale urban air mobility. However, the tandem wing configuration exhibits complex aerodynamic interactions between the front and rear wings during cruise flight and the wing tilt transition process. The objective of this paper is to investigate the aerodynamic coupling characteristics between the front and rear wings of the tandem tilt-wing UAV under level flight and tilt transition conditions while also assessing the influence of the propellers on the aircraft’s aerodynamic performance. Through CFD numerical analysis, the aerodynamic characteristics of various aircraft components are examined at different angles of attack and wing tilt angles, and the underlying reasons for the observed differences and variations are explored. The results indicate that, during level flight, the aerodynamic interference between the wings is primarily dominated by the detrimental influence of the front wing on the rear wing. During the tilt transition process, mutual interactions between the front and rear wings occur as wing tilt angle changes, leading to more drastic variations in lift coefficients and increased control difficulty. However, the propeller’s effect contributes to smoother changes in lift and drag, thereby enhancing aircraft stability.
Title: CFD Aerodynamic Analysis of Tandem Tilt-Wing UAVs in Cruise Flight and Tilt Transition Flight
Description:
The tandem tilt-wing UAV features an advanced aerodynamic layout design and is regarded as a solution for small-scale urban air mobility.
However, the tandem wing configuration exhibits complex aerodynamic interactions between the front and rear wings during cruise flight and the wing tilt transition process.
The objective of this paper is to investigate the aerodynamic coupling characteristics between the front and rear wings of the tandem tilt-wing UAV under level flight and tilt transition conditions while also assessing the influence of the propellers on the aircraft’s aerodynamic performance.
Through CFD numerical analysis, the aerodynamic characteristics of various aircraft components are examined at different angles of attack and wing tilt angles, and the underlying reasons for the observed differences and variations are explored.
The results indicate that, during level flight, the aerodynamic interference between the wings is primarily dominated by the detrimental influence of the front wing on the rear wing.
During the tilt transition process, mutual interactions between the front and rear wings occur as wing tilt angle changes, leading to more drastic variations in lift coefficients and increased control difficulty.
However, the propeller’s effect contributes to smoother changes in lift and drag, thereby enhancing aircraft stability.

Related Results

Transformation of Cruise Tourism Management in Ukraine
Transformation of Cruise Tourism Management in Ukraine
The transformation of cruise tourism management in Ukraine and peculiarities of its development at certain historical stages, which allows estimating the internal potential of crui...
Experimental Investigation of Aerodynamic Interaction in Non-Parallel Tandem Dual-Rotor Systems for Tiltrotor UAV
Experimental Investigation of Aerodynamic Interaction in Non-Parallel Tandem Dual-Rotor Systems for Tiltrotor UAV
The distributed electric tilt-rotor Unmanned Aerial Vehicle (UAV) combines the vertical take-off and landing (VTOL) capability of helicopters with the high-speed cruise performance...
Cruise shipping review: operations planning and research opportunities
Cruise shipping review: operations planning and research opportunities
Purpose This paper aims to conduct a review on cruise shipping and the cruise shipping industry. The current trends are analyzed for the industry, showing that this industry is sti...
Optimal Energy and Delay Tradeoff in UAV-Enabled Wireless Sensor Networks
Optimal Energy and Delay Tradeoff in UAV-Enabled Wireless Sensor Networks
Unmanned aerial vehicles (UAVs) are promising in large-area data collection due to their flexibility and easy maintenance. In this work, we study a UAV-enabled wireless sensor netw...
Prediction of wing aerodynamic coefficients of an unmanned light electric aeroplane with ANN
Prediction of wing aerodynamic coefficients of an unmanned light electric aeroplane with ANN
Purpose To determine the optimal wing taper ratio of an unmanned light electric aeroplane, in this study an artificial neural network is developed and optimised t...
Explainable Aerodynamic Design Framework for Tandem-Wing UAV Based on BO-xRFM
Explainable Aerodynamic Design Framework for Tandem-Wing UAV Based on BO-xRFM
Tandem-wing aircraft boasts broad application prospects in low-speed flight scenarios due to its merits including compact structure, high lift-to-drag ratio and high stability. Nev...
Optimization Design of the Wing of Cruise Missile on the Basis of the Vortex Lattice Approach
Optimization Design of the Wing of Cruise Missile on the Basis of the Vortex Lattice Approach
Abstract Aerodynamic performance of missile wings is a vital factor affecting the endurance and combat effectiveness of cruise missiles. Given the current situation ...
Optimal Bi-Annual Tilt Angles and Optimal Tilt Transition Timing for Fixed Tilt Arrays in the United States
Optimal Bi-Annual Tilt Angles and Optimal Tilt Transition Timing for Fixed Tilt Arrays in the United States
Abstract As global dependency on renewable energy grows, it is imperative to utilize every Photovoltaic (PV) panel in the most efficient way possible. An important c...

Back to Top