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Showing 1 to 4 of 4 for “"tail-sitter"”.

  1. Development of a Miniature VTOL Tail-Sitter Unmanned Aerial Vehicle

    … a miniature Vertical Take-Off and Landing (VTOL) tail-sitter Unmanned Aerial Vehicle (UAV) prototype is presented in detail. Classic aircraft design methods were combined with numerical analysis to estimate the aircraft performance and flight characteristics. The numerical analysis employed a …

    byu Repository record for Development of a Miniature VTOL Tail-Sitter Unmanned Aerial Vehicle (opens in a new tab)

  2. A Numerical Vortex Approach To Aerodynamic Modeling of SUAV/VTOL Aircraft

    … to be of significant importance in the design of tail-sitter vertical take-off and landing (VTOL) aircraft, where the propeller slipstream is the primary source of air flow past the wings in some flight conditions. The algorithm is presented, and results compared with published experimental data.

    byu Repository record for A Numerical Vortex Approach To Aerodynamic Modeling of SUAV/VTOL Aircraft (opens in a new tab)

  3. Research on the Unmanned Aerial Vehicle Design

    … concerned with the design and testing of a mini tail sitter VTOL UAV. The design consists of a Duct System with a single Propeller Engine coupled with Four Internal Aerofoil Rotor Flap (Designed for counter Gyro-scopic Effect) and four Rudder-vators Flight Controls (Design for Pitch and Yaw …

    nus Repository record for Research on the Unmanned Aerial Vehicle Design (opens in a new tab)

  4. INTEGRATION OF PHYSICS-INFORMED APPROACHES WITH MACHINE LEARNING TECHNIQUES FOR AERODYNAMICS

    The thesis utilizes a fusion of machine learning techniques and physics laws to tackle aerodynamic challenges. Specifically, it employs machine learning methodologies to enhance various aspects of aerodynamics, including the optimization of airfoil designs, prediction of 2D flow fields, and …

    nus Repository record for INTEGRATION OF PHYSICS-INFORMED APPROACHES WITH MACHINE LEARNING TECHNIQUES FOR AERODYNAMICS (opens in a new tab)