Overall aerodynamic layout and short-distance taking-off and landing method of double-engine unmanned aerial vehicle
An aerodynamic layout and unmanned aerial vehicle technology, applied in the aviation field, can solve the problems of low thrust weight, impact of braking efficiency, long take-off and roll distance, etc., and achieve the effect of short take-off and landing distance, high lift-to-drag ratio, and wide flight speed range.
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[0030] a. If figure 1 As shown, the UAV is composed of a fuselage, a large-scale radome, wings, a nacelle, a propeller, and a V tail.
[0031] b. If figure 2 As shown, the fuselage adopts a ship-shaped section.
[0032] c. If image 3 As shown, the rear section of the fuselage is equipped with arresting hooks.
[0033] d. If Figure 4 As shown, the wing aspect ratio is 15-20. The plane shape of the wing is a combination of rectangle and trapezoid.
[0034] e. The wing adopts a high lift-to-drag ratio supercritical airfoil, laminar flow airfoil or supercritical laminar flow airfoil.
[0035] f. If Figure 4 As shown, flaps, flaperons, and ailerons are arranged at the rear end of the wing.
[0036] g. If figure 1 As shown, the two engines and propellers are arranged through the wing nacelles.
[0037] h. If figure 1 As shown, the shape of the fuselage and the wing are blended and transitioned.
[0038] i. Use liftable wheel chocks to block UAVs. When the UAV engine ...
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