IP Library Granted Patent US 11,370,542
Granted Patent B2
US 11,370,542 · App. 16/983,851 · Granted Jun 28, 2022

High transport efficiency aircraft apparatus, systems and methods to precisely deliver cargo at a point in space without stopping

Inventors: Star Simpson (Glendale, CA); Barnaby Wainfan (Long Beach, CA)
Assignee: Corvidair Inc.
B64D1/12B64C39/024B64C2201/028B64C2201/128
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Quick Facts
Patent No.
US 11,370,542
App. No.
16/983,851
Granted
Jun 28, 2022
Kind
B2
Abstract

A high transport efficiency aircraft apparatus for precisely delivering a payload at a target area without stopping is disclosed. An aircraft is adapted to fly at low speed and less than 10 feet above ground level over the target area, with a delivery trajectory including a steep descent toward the target area and a steep ascent away from the target area. The aircraft includes a payload bay constructed to contain the payload within the aircraft, and a payload release mechanism adapted to release the payload from the payload bay when the aircraft flies over the target area, allowing the payload to fall and arrive unharmed at the target area unaided by an aerodynamic deceleration device.

Claims (22)

1. A high transport efficiency aircraft apparatus for precisely delivering a payload at a target area without stopping, comprising:

an aircraft adapted to fly less than 10 feet above ground level over the target area, with a delivery trajectory including a steep descent toward the target area and a steep ascent away from the target area;

a payload bay constructed to contain the payload within the aircraft;

a payload release mechanism adapted to release the payload from the payload bay when the aircraft flies over the target area, allowing the payload to fall and arrive unharmed at the target area unaided by an aerodynamic deceleration device; and

a payload cassette disposed within the payload bay and containing the payload, the payload cassette further comprising a bottom wall that is contiguous with a portion of a bottom surface of an airframe of the aircraft.

2. The apparatus of claim 1 , wherein the aircraft has a transport efficiency of at least 3.5 units of useful load per unit drag.

3. The apparatus of claim 1 , wherein the aircraft is configured to fly the delivery trajectory at an angle of attack at or in excess of 15 degrees.

4. The apparatus of claim 1 , wherein the aircraft is configured to fly the delivery trajectory at an angle of attack at or in excess of 30 degrees.

5. The apparatus of claim 1 , further comprising a low aspect ratio lifting body airframe.

6. The apparatus of claim 5 , wherein the airframe comprises a faceted top surface and a faceted bottom surface.

7. The apparatus of claim 1 , wherein the payload cassette pivots open, rotating the bottom wall downward to deflect an external airstream, and wherein the payload release mechanism releases the payload into an aft calm air zone.

8. The apparatus of claim 7 , wherein the opening of the payload cassette aerodynamically initiates a nose-up portion of the trajectory, increasing lift.

9. A high transport efficiency aircraft apparatus for precisely delivering a payload at a target area without stopping, comprising:

a low aspect ratio lifting body airframe having a transport efficiency of at least 3.5 units of useful load per unit drag, and adapted to fly over the target area less than 10 feet above ground level, at an angle of attack at or in excess of 15 degrees, with a delivery trajectory including a steep descent toward the target area and a steep ascent away from the target area, wherein the airframe comprises a faceted top surface and a faceted bottom surface;

a payload cassette containing the payload, the payload cassette comprising a bottom wall contiguous with a portion of the airframe faceted bottom surface, wherein the payload cassette pivots open over the target area, rotating the bottom wall downward to deflect an external airstream, and releases the payload into an aft calm air zone, allowing the payload to fall and arrive unharmed at the target area unaided by an aerodynamic deceleration device.

10. A method for delivering a payload by air at a target area without stopping, comprising the steps of:

providing an aircraft adapted to fly less than 10 feet above ground level over the target area, with a delivery trajectory including a steep descent toward the target area and a steep ascent away from the target area; a payload bay constructed to contain the payload within the aircraft; and a payload release mechanism adapted to release the payload from the payload bay when the aircraft flies over the target area, allowing the payload to fall and arrive unharmed at the target area unaided by an aerodynamic deceleration device;

flying the aircraft in the delivery trajectory over the target area;

activating the payload release mechanism to release the payload from the payload bay and deliver the payload to the target area,

wherein the aircraft further comprises a low aspect ratio lifting body airframe having a faceted top surface and a faceted bottom surface, and a payload cassette disposed within the payload bay and containing the payload, wherein the payload cassette further comprises a bottom wall contiguous with a portion of the airframe bottom surface; and wherein when the payload release mechanism is activated, the payload cassette pivots open, rotating the bottom wall downward to deflect an external airstream and release the payload into an aft calm air zone.

11. The method of claim 10 , wherein the aircraft flies the delivery trajectory at an angle of attack at or in excess of 15 degrees.

12. The method of claim 10 , wherein the aircraft flies the delivery trajectory at an angle of attack at or in excess of 30 degrees.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2022
From: SIMPSON, STAR; WAINFAN, BARNABY
To: CORVIDAIR INC.
Reel/Frame 059990/0235 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2022
From: SIMPSON, STAR; WAINFAN, BARNABY
To: CORVIDAIR
Reel/Frame 059874/0685 →
Continuity (2)
Provisional Application 62882471 · Aug 2, 2019
Related Publication 20210107649A1 · Apr 15, 2021