Annular airborne vehicle
An airborne vehicle having a wing-body which defines a wing-body axis and appears substantially annular when viewed along the wing-body axis, the interior of the annulus defining a duct which is open at both ends. A propulsion system is provided comprising one or more pairs of propulsion devices, each pair comprising a first propulsion device mounted to the wing-body and positioned on a first side of a plane including the wing-body axis, and a second propulsion device mounted to the wing-body and positioned on a second side of the plane including the wing-body axis.
1. An airborne vehicle having a wing-body which defines a wing-body axis and appears substantially annular when viewed along the wing-body axis, the interior of the annulus defining a duct which is open at both ends, wherein the wing-body appears swept forward when viewed from a first viewing angle, and swept backward when viewed from a second viewing angle at right angles to the first viewing angle wherein the wing-body has a leading edge with two or more noses, and a trailing edge with two or more tails.
2. The vehicle of claim 1 wherein the wing-body appears swept forward when viewed in plan, and swept backward when viewed in elevation.
3. The vehicle of claim 1 wherein the noses are rotationally offset in relation to the tails.
4. The vehicle of claim 1 wherein the wing-body has a leading edge and a trailing edge, and wherein at least part of the leading and/or trailing edge of the wing-body follows a substantially helical curve.
5. The vehicle of claim 1 wherein the wing-body has a projected planform area S, and a maximum outer diameter B normal to the wing-body axis, and wherein the ratio B 2 /S is greater than 0.5.
6. The vehicle of claim 1 further comprising three or more undercarriage elements for providing stability during take-off and landing operations.
7. The vehicle of claim 1 further comprising an energy source housed at least partially inside the wing-body.
8. The vehicle of claim 1 wherein the wing-body is evolved from an aerofoil profile as a body of revolution around the wing-body axis.
9. The vehicle of claim 8 wherein the aerofoil profile has symmetrical upper and lower surfaces.
10. The vehicle of claim 1 wherein the wing-body has a leading edge which extends around a circumference of the wing-body, and wherein said leading edge appears swept forward when viewed from a first viewing angle, and swept backward when viewed from a second viewing angle at right angles to the first viewing angle.
11. The vehicle of claim 1 wherein the wing-body has a trailing edge which extends around a circumference of the wing-body, and wherein said trailing edge appears swept forward when viewed from a first viewing angle, and swept backward when viewed from a second viewing angle at right angles to the first viewing angle.
12. The vehicle of claim 10 wherein the wing-body has a trailing edge which extends around a circumference of the wing-body, and wherein said trailing edge appears swept forward when viewed from a first viewing angle, and swept backward when viewed from a second viewing angle at right angles to the first viewing angle.
13. The vehicle of claim 12 wherein the trailing edge forms an identical shape to the leading edge and is translated along the wing-body axis by a chord length of the wing-body.
14. The vehicle of claim 1 wherein the wing-body has a leading edge which extends around a circumference of the wing-body, a trailing edge which extends around the circumference of the wing-body, and a mid-chord line between said leading and trailing edges, and wherein said mid-chord line appears swept forward when viewed from a first viewing angle, and swept backward when viewed from a second viewing angle at right angles to the first viewing angle.