IP Library Granted Patent US 11,613,356
Granted Patent B2
US 11,613,356 · App. 15/781,780 · Granted Mar 28, 2023

Blended wing body aircraft

Inventors: Siddhartho Banerjee (Saint-Laurent, CA); Alexandre Galin (Montreal, CA)
Assignee: BOMBARDIER INC.
B64C39/10B64C1/0009B64C3/14B64C2039/105Y02T50/10
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Quick Facts
Patent No.
US 11,613,356
App. No.
15/781,780
Granted
Mar 28, 2023
Kind
B2
Abstract

A blended wing body aircraft having an interior cabin with a usable volume of at most 4500 ft 3 and a cabin aspect ratio of at most 4, wherein a combination of the wings and center body has a wetted aspect ratio of at least 1.7 and at most 2.8. Also, a blended wing body aircraft having an interior cabin with a usable volume of at least 1500 ft 3 and at most 4500 ft 3 and a cabin aspect ratio of at least 2 and at most 4, wherein a combination of the wings and center body has a wetted aspect ratio of at least 1.9 and at most 2.7. Also, a blended wing body aircraft wherein at least each profile section having normalized half-span values from 0 to 0.3 has a leading edge having a normalized height having a nominal value within the range set forth in Table 4.

Claims (49)

1. A blended wing body aircraft comprising:

an airfoil shaped center body including an interior cabin having a usable volume of at most 4500 ft 3 , the interior cabin having a maximum length defined along a longitudinal centerline of the center body and a maximum width defined perpendicularly to the maximum length, a cabin aspect ratio of the maximum length to the maximum width being at most 4; and

a pair of wings extending from opposed sides of the center body;

wherein a combination of the wings and center body has a wetted aspect ratio of at least 1.7 and at most 2.8, wherein the wetted aspect ratio is defined by

b

2

S

wet

,

where b is a maximum span of the wings measured without considering wing tip devices, and S wet is a wetted area of the combination of the wings and center body;

wherein the aircraft has a span direction, and a maximum half-span length defined along the span direction from the centerline of the center body to a tip of one of the wings;

wherein a normalized half-span value for each profile section of the aircraft is defined by a ratio between a distance along the span direction from the centerline to the profile section, and the maximum half-span length;

wherein each profile section of the aircraft has a thickness ratio defined by a ratio between a thickness of the profile section and a chord length of the profile section, and:

when the normalized half-span value is 0, the thickness ratio has a value in a first range of 15.2 to 19.4 for each profile section;

when the normalized half-span value is 0.25, the thickness ratio has a value in a second range of 8.3 to 11.8 for each profile section; and

the value for the thickness ratio for each profile section continuously decreases as the normalized half-span value varies from 0 to 0.25.

2. The blended wing body aircraft according to claim 1 , wherein the usable volume of the interior cabin is at least 1500 ft 3 .

3. The blended wing body aircraft according to claim 1 , wherein the usable volume of the interior cabin is at least 2000 ft 3 and at most 4000 ft 3 .

4. The blended wing body aircraft according to claim 1 , wherein the cabin aspect ratio is at least 2.

5. The blended wing body aircraft according to claim 1 , wherein the cabin aspect ratio is at most 3.5.

6. The blended wing body aircraft according to claim 1 , wherein the wetted aspect ratio of the combination of the wings and center body is at least 1.9.

7. The blended wing body aircraft according to claim 1 , wherein the wetted aspect ratio of the combination of the wings and center body is at least 2.1.

8. The blended wing body aircraft according to claim 1 , wherein the wetted aspect ratio of the combination of the wings and center body is about 2.4.

9. The blended wing body aircraft according to claim 1 , wherein a ratio between a maximum thickness of the center body at the longitudinal centerline and a length of a chord along the longitudinal centerline has a value of at least 16%.

10. The blended wing body aircraft according to claim 1 , wherein a reference line is defined perpendicularly to a direction defined by a maximum thickness of the center body at a mid-point of the maximum thickness, the reference line extending fore-to-aft in relation to the center body, a part of each of the wings having a leading edge located a first distance below the reference line, the first distance being measured along the direction defined by the maximum thickness and corresponding to at least 10% of the maximum thickness.

11. The blended wing body aircraft according to claim 1 , wherein a reference line is defined perpendicularly to a direction defined by a maximum thickness of the center body at a mid-point of the maximum thickness, the reference line extending fore-to-aft in relation to the center body, a part of each of the wings having a leading edge located a first distance below the reference line, the first distance being measured along the direction defined by the maximum thickness and corresponding to at least 15% of the maximum thickness.

12. The blended wing body aircraft according to claim 10 wherein the part of the wings extends laterally from the center body to a second distance from the centerline measured along a span direction of the wings, the second distance corresponding to at least 40% of a maximum half-span length of the aircraft, the maximum half-span length defined along the span direction from the centerline to a tip of one of the wings.

13. A blended wing body aircraft comprising:

an airfoil shaped center body including an interior cabin having a usable volume of at least 1500 ft 3 and at most 4500 ft 3 , the interior cabin having a maximum length defined along a longitudinal axis of the center body and a maximum width defined perpendicularly to the maximum length, a cabin aspect ratio of the maximum length to the maximum width being at least 2 and at most 4;

a pair of wings extending from opposed sides of the center body;

wherein a combination of the wings and center body has a wetted aspect ratio of at least 1.9 and at most 2.7, wherein the wetted aspect ratio is defined by

b

2

S

wet

,

where b is a maximum span of the wings measured without considering wing tip devices, and S wet is a wetted area of the combination of the wings and center body;

wherein the aircraft has a span direction, and a maximum half-span length defined along the span direction from the centerline of the center body to a tip of one of the wings;

wherein a normalized half-span value for each profile section of the aircraft is defined by a ratio between a distance along the span direction from the centerline to the profile section, and the maximum half-span length;

wherein each profile section of the aircraft has a thickness ratio defined by a ratio between a thickness of the profile section and a chord length of the profile section, and:

when the normalized half-span value is 0, the thickness ratio has a value in a first range of 15.2 to 19.4 for each profile section;

when the normalized half-span value is 0.25, the thickness ratio has a value in a second range of 8.3 to 11.8 for each profile section; and

the value for the thickness ratio for each profile section continuously decreases as the normalized half-span value varies from 0 to 0.25.

14. The blended wing body aircraft according to claim 13 , wherein the cabin aspect ratio is at most 3.5.

15. The blended wing body aircraft according to claim 13 , wherein the usable volume of the interior cabin is at least 2000 ft 3 and at most 4000 ft 3 .

16. The blended wing body aircraft according to claim 13 , wherein the wetted aspect ratio of the combination of the wings and center body is at least 2.1.

17. The blended wing body aircraft according to claim 13 , wherein the wetted aspect ratio of the combination of the wings and center body is about 2.4.

18. The blended wing body aircraft according to claim 13 , wherein a ratio between a maximum thickness of the center body at the longitudinal centerline and a length of a chord along the longitudinal centerline has a value of at least 16%.

19. The blended wing body aircraft according to claim 13 , wherein a reference line is defined perpendicularly to a direction defined by a maximum thickness of the center body at a mid-point of the maximum thickness, the reference line extending fore-to-aft in relation to the center body, a part of each of the wings having a leading edge located a first distance below the reference line, the first distance being measured along the direction defined by the maximum thickness and corresponding to at least 10% of the maximum thickness.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2018
From: BANERJEE, SIDDHARTHO; GALIN, ALEXANDRE
To: BOMBARDIER INC.
Reel/Frame 045998/0084 →
Continuity (3)
Provisional Application 62291273 · Feb 4, 2016
Provisional Application 62264996 · Dec 9, 2015
Related Publication 20180362161A1 · Dec 20, 2018
Cited By (5)
US 12,246,830 US 12,377,995 US 12,630,282 US 12,654,835 US 12,692,000