IP Library Granted Patent US 11,718,386
Granted Patent B2
US 11,718,386 · App. 16/648,113 · Granted Aug 8, 2023

Cupola fairing for an aircraft and method for fabricating the same

Inventor: Eric A. Ahlstrom (South Willard, UT)
Assignee: Aero Design Labs LLC
B64C7/00B64C1/0009B64F5/10B64C2001/0045
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Quick Facts
Patent No.
US 11,718,386
App. No.
16/648,113
Granted
Aug 8, 2023
Kind
B2
Abstract

A cupola fairing ( 250 ) for reducing drag and increasing lift on an aircraft fuselage ( 210 ) and wings ( 220 ). The fairing includes a housing length extending along a longitudinal axis, and a variable width extending normal to the longitudinal axis. The housing width is variable and defined by a plurality of cross-sectional areas of the cupola fairing. The fairing has a substantially smooth exterior surface that is curved along the length and the variable width of the housing. The housing surface has its longitudinal and transverse curvatures being defined by metrics corresponding to a reference wing root chord of the aircraft ( 200 ), a cross-sectional area of the fuselage, a percentage of the cross-sectional area to be covered by the fairing, and positioning of the cupola fairing on the crown portion of the fuselage ( 210 ). The housing has a lower surface configured to conform to a shape of the crown at which the cupola fairing ( 250 ) is positioned.

Claims (26)

1. A cupola fairing for positioning on a crown portion of a fuselage of an aircraft and configured to increase lift of the fuselage relative to a fuselage without the cupola fairing, the cupola fairing comprising:

a housing having a length extending along a longitudinal axis, and a variable width extending normal to the longitudinal axis, the width being defined by a plurality of cross-sectional areas of the cupola fairing, the cupola fairing having a substantially smooth exterior surface that is curved along the length and the width of the housing;

wherein the housing has a lower surface configured to conform to a shape of the crown portion at a fuselage position where a maximum cross-sectional area of the plurality of cross-sectional areas is between −35% and +25% of a reference wing root chord of the aircraft.

2. The cupola fairing of claim 1 , wherein the lower surface is configured so that the longitudinal axis is aligned with a centerline of the fuselage.

3. The cupola fairing of claim 1 , wherein the housing is symmetrical about the longitudinal axis.

4. The cupola fairing of claim 1 , wherein the housing is substantially elliptical in shape.

5. The cupola fairing of claim 1 , wherein the housing is fabricated from at least one of a composite material and a metal.

6. The cupola fairing of claim 1 , wherein the exterior surface is convex-shaped.

7. The cupola fairing of claim 1 , wherein the housing includes a hollow interior portion.

8. The cupola fairing of claim 7 , wherein the interior portion includes a plurality of spaced-apart support members configured to reinforce the housing.

9. The cupola fairing of claim 1 , wherein the maximum cross-sectional area is in a range of between 5% and 25% of a fuselage cross-sectional area at which a centerline of the fuselage and a leading edge of the wing intersect.

10. A cupola fairing for positioning on a crown portion of a fuselage of an aircraft and configured to increase lift of the fuselage relative to a fuselage without the cupola fairing, the cupola fairing comprising:

a housing having a length extending along a longitudinal axis, and a variable width extending normal to the longitudinal axis, the width being defined by a plurality of cross-sectional areas of the cupola fairing, the cupola fairing having a substantially smooth exterior surface that is curved along the length and the width of the housing;

wherein the housing has a lower surface configured to conform to a shape of the crown portion at a fuselage position where a maximum cross-sectional area of the plurality of cross-sectional areas is between +15% and +35% of a reference wing root chord of the aircraft.

11. The cupola fairing of claim 10 , wherein the lower surface is configured so that the longitudinal axis is aligned with a centerline of the fuselage.

12. The cupola fairing of claim 10 , wherein the housing is symmetrical about the longitudinal axis.

13. The cupola fairing of claim 10 , wherein the housing is substantially elliptical in shape.

14. The cupola fairing of claim 10 , wherein the housing is fabricated from at least one of a composite material and a metal.

15. The cupola fairing of claim 10 , wherein the exterior surface is convex-shaped.

16. The cupola fairing of claim 10 , wherein the housing includes a hollow interior portion.

17. The cupola fairing of claim 16 , wherein the interior portion includes a plurality of spaced-apart support members configured to reinforce the housing.

18. The cupola fairing of claim 10 , wherein the maximum cross-sectional area is in a range of between 5% and 25% of a fuselage cross-sectional area at which a centerline of the fuselage and a leading edge of the wing intersect.

19. A cupola fairing for positioning on a crown portion of a fuselage of an aircraft and configured to increase lift of the fuselage relative to a fuselage without the cupola fairing, the cupola fairing comprising:

a housing having a length extending along a longitudinal axis, and a variable width extending normal to the longitudinal axis, the width being defined by a plurality of cross-sectional areas of the cupola fairing, the cupola fairing having a substantially smooth exterior surface that is curved along the length and the width of the housing;

wherein the housing has a lower surface configured to conform to a shape of the crown portion at a fuselage position where a maximum cross-sectional area of the plurality of cross-sectional areas is between 0% and +35% of a reference wing root chord of the aircraft.

20. The cupola fairing of claim 19 , wherein the lower surface of the housing is configured to conform to the shape of the crown portion at a fuselage position where the maximum cross-sectional area of the plurality of cross-sectional areas is between 0% and +25% of the reference wing root chord of the aircraft.

Assignments (2)
CHANGE OF NAME Recorded Sep 9, 2022
From: AERO DESIGN LABS, INC.
To: AERO DESIGN LABS LLC
Reel/Frame 061051/0748 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2020
From: AHLSTROM, ERIC A.
To: AERO DESIGN LABS, INC.
Reel/Frame 052184/0462 →
Continuity (2)
Provisional Application 62560982 · Sep 20, 2017
Related Publication 20200255118A1 · Aug 13, 2020