IP Library Granted Patent US 11,987,402
Granted Patent B2
US 11,987,402 · App. 17/588,438 · Granted May 21, 2024

Vertical air vehicle takeoff and landing stabilization apparatuses, systems, and methods

Inventors: Wayne Richard Howe (Irvine, CA); Terrance Mason (Pasadena, CA)
Assignee: THE BOEING COMPANY
B64U70/70B64U10/13B64U70/30
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Quick Facts
Patent No.
US 11,987,402
App. No.
17/588,438
Granted
May 21, 2024
Kind
B2
Abstract

Vertical takeoff and landing vehicles (VTOLs) of the type used for the point-to-point delivery and transport of payloads (e.g., packages, equipment, etc.) and personnel, are significantly stabilized at least during takeoff and landing with present aspects significantly ameliorating or significantly eliminating destabilizing effects, including ground effect, during VTOL takeoff and/or landing.

Claims (56)

1. An apparatus for stabilizing takeoff and landing of a vertical takeoff and landing (VTOL) vehicle, the apparatus comprising:

a vertically-oriented support element, said vertically-oriented support element comprising:

a vertically-oriented support element first end proximate to a base; and

a vertically-oriented support element second end located at a distance away from the vertically-oriented support element first end, said vertically-oriented support element extending from the vertically-oriented support element first end to the vertically-oriented support element second end, said vertically-oriented support element further comprising at least one first cooperating stabilizer element proximate to the vertically-oriented support element second end;

an enclosure, said enclosure dimensioned to substantially surround the vertically-oriented support element, said enclosure further dimensioned to completely surround the VTOL vehicle during at least one of VTOL vehicle takeoff and VTOL vehicle landing, said enclosure comprising at least one moveable enclosure panel, said at least one moveable enclosure panel positioned proximate to the vertically-oriented support element first end, said at least one moveable enclosure panel configured to open during the VTOL vehicle landing to mitigate ground effect turbulence within the apparatus; and

wherein the at least one first cooperating stabilizer element comprises at least one of: a male attachment portion and a female attachment portion.

2. The apparatus of claim 1 , wherein the first cooperating stabilizer element comprises the male attachment portion dimensioned to receive a second cooperating stabilizer element, said second cooperating stabilizer element comprising a female attachment portion.

3. The apparatus of claim 1 , wherein the first cooperating stabilizer element comprises the female attachment portion dimensioned to receive a second cooperating stabilizer portion, said second cooperating stabilizer element comprising a male attachment portion.

4. The apparatus of claim 3 , wherein the female attachment portion comprises a slot, said slot located at the vertically-oriented support element second end, said slot extending longitudinally along the length of the vertically-oriented support element.

5. The apparatus of claim 1 , further comprising a guide, said guide in communication with the vertically-oriented support element second end of the vertically-oriented support element, said guide further in communication with the at least one first cooperating stabilizer element.

6. The apparatus of claim 1 , further comprising:

a frame, said frame comprising:

a plurality of vertically-oriented support elements, said plurality of vertically-oriented support elements spaced at a distance from one another;

at least one circumferential frame support, said at least one circumferential frame support in communication with one or more of the plurality of vertically-oriented support elements; and

wherein said enclosure is dimensioned to substantially surround the frame.

7. The apparatus of claim 6 , wherein the at least one of the circumferential frame support comprises a horizontally-oriented connector.

8. The apparatus of claim 6 , wherein the frame is configured to support at least one of the plurality of vertically-oriented support elements.

9. The apparatus of claim 6 , further comprising the base, said base configured to support the frame.

10. The apparatus of claim 9 , wherein the base is in communication with at least one of the plurality of vertically-oriented support elements.

11. The apparatus of claim 6 , further comprising:

a detector for detecting pressure within at least a localized region of the enclosure;

a controller in communication with the detector;

a drive mechanism in communication with the controller, said drive mechanism further in communication with the at least one moveable enclosure panel.

12. The apparatus of claim 6 , further comprising:

a guide, said guide in communication with the vertically-oriented support element second end of the plurality of vertically-oriented support elements, said guide further in communication with the at least one first cooperating stabilizer element.

13. The apparatus of claim 12 , wherein the guide further comprises:

a guide inner surface, said guide inner surface further comprising at least one guide inner surface channel, said guide inner surface channel dimensioned to receive a second cooperating stabilizer element into the guide inner surface channel, said guide inner surface channel in communication with the at least one first cooperating stabilizer element.

14. The apparatus of claim 1 , further comprising:

a horizontally-disposed platform, said horizontally-disposed platform in communication with the vertically-oriented support element, said horizontally-disposed platform comprising a rigid floor, said rigid floor comprising a mesh material, said mesh material comprising a mesh gauge selected to facilitate airflow through the rigid floor;

a platform drive mechanism in communication with the horizontally-disposed platform; and

wherein the platform drive mechanism is configured to raise and lower the horizontally-

disposed platform.

15. The apparatus of claim 6 , further comprising:

a horizontally-disposed platform, said horizontally-disposed platform in communication with at least one of the plurality of vertically-oriented support elements, said horizontally-disposed platform comprising a rigid floor, said rigid floor comprising a mesh material, said mesh material comprising a mesh gauge selected to facilitate airflow through the rigid floor;

a platform drive mechanism in communication with the horizontally-disposed platform; and

wherein the platform drive mechanism is configured to raise and lower the horizontally-

disposed platform from a first position to a second position.

16. A method for assisting takeoff of a vertical takeoff and landing (VTOL) vehicle comprising:

providing at least partially enclosed vertical takeoff and landing apparatus, the at least partially enclosed vertical takeoff and landing apparatus comprising;

at least one vertically-oriented support element, said at least one vertically-oriented support elements having a vertically-oriented support element first end and a vertically-oriented support element second end, said vertically-oriented support element first end proximate to a base, said vertically-oriented support element extending from the vertically-oriented support element first end to the vertically-oriented support element second end, said vertically-oriented support element second end located at a selected distance away from the vertically-oriented support element first end, said vertically-oriented support element comprising a first cooperating stabilizer element, said first cooperating stabilizer element located proximate to the vertically-oriented support element second end;

an enclosure, said enclosure dimensioned to substantially surround the at least one vertically-oriented support element, said enclosure further dimensioned to completely surround the VTOL vehicle during at least one of takeoff and landing of the vertical takeoff and landing vehicle, said enclosure comprising at least one moveable enclosure panel, said at least one moveable enclosure panel positioned proximate to the vertically-oriented support element first end, said at least one moveable enclosure panel configured to open during vertical takeoff and landing vehicle landing to mitigate ground effect turbulence within the apparatus;

providing the VTOL vehicle, said VTOL vehicle comprising at least one second cooperating stabilizer element, said second cooperating stabilizer element dimensioned to engage with the first cooperating stabilizer element;

engaging the first cooperating stabilizer element of the vertically-oriented support element with the second cooperating stabilizer element of the vertical takeoff and landing vehicle;

increasing pressure within at least a region of the enclosure from an ambient pressure to a takeoff pressure, said takeoff pressure greater than the ambient pressure, said region of the enclosure proximate to the vertical takeoff and landing vehicle;

maintaining the vertical takeoff and landing vehicle in a stationary position within the enclosure during a pressure increase; and

releasing the vertical takeoff and landing vehicle from the stationary position at the takeoff pressure.

17. An apparatus for assisting a vertical takeoff and landing (VTOL) vehicle takeoff comprising:

at least one vertically-oriented support element, said at least one vertically-oriented support elements having a vertically-oriented support element first end and a vertically-oriented support element second end, said vertically-oriented support element first end proximate to a base, said vertically-oriented support element extending from the vertically-oriented support element first end to the vertically-oriented support element second end, said vertically-oriented support element comprising a first cooperating stabilizer element, said first cooperating stabilizer element located proximate to the vertically-oriented support element second end;

an enclosure, said enclosure dimensioned to substantially surround the at least one vertically-oriented support element, said enclosure further dimensioned to completely surround the VTOL vehicle during at least one of takeoff and landing, said enclosure comprising at least one moveable enclosure panel, said at least one moveable enclosure panel positioned proximate to the vertically-oriented support element first end, said at least one moveable enclosure panel configured to open during the VTOL vehicle landing to mitigate ground effect turbulence within the apparatus;

a pressure detector;

a controller in communication with at least one of the pressure detector and a pressurization unit; and

a release mechanism in communication with the controller, said release mechanism configured to release the VTOL vehicle from a stationary position within the enclosure.

18. The apparatus of claim 17 , further comprising:

a guide, said guide in communication with the second end of a plurality of vertically-oriented support elements, said guide further in communication with the at least one first cooperating stabilizer element.

19. The apparatus of claim 18 , wherein the guide further comprises:

a guide inner surface, said guide inner surface further comprising at least one guide inner surface channel, said guide inner surface channel dimensioned to receive a second cooperating stabilizer element into the guide inner surface channel, said guide inner surface channel in communication with the first cooperating stabilizer element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2022
From: HOWE, WAYNE RICHARD; MASON, TERRANCE
To: THE BOEING COMPANY
Reel/Frame 058825/0977 →
Continuity (2)
Provisional Application 63167199 · Mar 29, 2021
Related Publication 20220306284A1 · Sep 29, 2022
Cited By (3)
US 12,391,415 US 12,528,608 US 12,572,153