IP Library Granted Patent US 10,605,675
Granted Patent B2
US 10,605,675 · App. 15/630,475 · Granted Mar 31, 2020

Air temperature sensor

Inventors: John Patrick Parsons (Afton, NY); Gregory Lloyd Ashton (South Plymouth, NY); Jarodd Dan Goedel (Sherburne, NY); Chiong Siew Tan (Binghamton, NY)
Assignee: UNISON INDUSTRIES, LLC
G01K13/02G01K13/028G01K2013/024G01M15/14
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Quick Facts
Patent No.
US 10,605,675
App. No.
15/630,475
Granted
Mar 31, 2020
Kind
B2
Abstract

A total air temperature sensor can include an airfoil portion. The airfoil portion can an inlet and an outlet through which a diverted airflow path can flow. The total air temperature sensor can include a temperature sensor located within a housing defining the total air temperature sensor and a sheath surrounding the temperature sensor. The temperature sensor can be configured to take a total temperature of the diverted airflow path.

Claims (29)

1. An air temperature sensor suitable for use on an aircraft, the air temperature sensor comprising:

a housing defining an interior and having at least a portion with an airfoil cross section to define an airfoil portion with an upper surface and a lower surface;

a temperature sensor located within the airfoil portion;

an airflow path having an airflow inlet in the upper surface of the housing and extending through the housing to the temperature sensor to provide for diverted air from air flowing along the upper surface to contact the temperature sensor; and

a set of fluid passageways having at least two channels oriented parallel to each other and configured to direct an airflow in opposing directions, defined within the interior and having a passageway inlet and a set of outlets located within the housing and where the set of fluid passageways are configured to receive hot bleed air via the passageway inlet and disperse the hot bleed air to the set of outlets to heat at least a portion of the airfoil portion.

2. The air temperature sensor of claim 1 where the airflow inlet is located at a leading edge of the airfoil portion.

3. The air temperature sensor of claim 1 wherein the airflow path extends through the airfoil portion with an outlet on the upper surface.

4. The air temperature sensor of claim 3 , further comprising a sheath at least partially circumscribing the temperature sensor and the sheath shields the temperature sensor from the heat.

5. The air temperature sensor of claim 4 wherein there are two fluid passageways within the interior on opposite sides of the airflow path.

6. The air temperature sensor of claim 5 wherein the upper surface is a concave side of the airfoil and the lower surface is a convex side of the airfoil portion.

7. The air temperature sensor of claim 1 , further comprising a set of dead air spaces located within the interior and fluidly separate from the set of fluid passageways.

8. The air temperature sensor of claim 1 wherein the set of fluid passageways includes a first fluid passageway within a first portion of the interior and a second fluid passageway within a second portion of the interior.

9. The air temperature sensor of claim 8 , further comprising a transfer tube located within the interior, and fluidly coupling the first fluid passageway and the second fluid passageway.

10. The air temperature sensor of claim 1 wherein the set of fluid passageways includes a fluid passageway that doubles back along a portion of a length of the housing.

11. An air temperature sensor suitable for use on an aircraft, the air temperature sensor comprising:

a housing defining an interior and having at least a portion with an airfoil cross section to define an airfoil portion with an upper surface and a lower surface;

a temperature sensor located within the airfoil portion;

an airflow path having an airflow inlet in the upper surface of the housing and extending through the housing to the temperature sensor to provide for diverted air from air flowing along the upper surface to contact the temperature sensor;

a set of fluid passageways, including at least one channel, defined within the interior and having a passageway inlet and a set of outlets located within the housing and where the set of fluid passageways are configured to receive hot bleed air via the passageway inlet and disperse the hot bleed air to the set of outlets to heat at least a portion of the airfoil portion; and

a set of dead air spaces located within the interior, extending parallel to the at least one channel, and fluidly separate from the set of fluid passageways.

12. The air temperature sensor of claim 11 where the airflow inlet is located at a leading edge of the airfoil portion.

13. The air temperature sensor of claim 11 wherein the airflow path extends through the airfoil portion with an outlet on the upper surface.

14. The air temperature sensor of claim 13 , further comprising a sheath at least partially circumscribing the temperature sensor and the sheath shields the temperature sensor from the heat.

15. The air temperature sensor of claim 14 wherein there are two fluid passageways within the interior on opposite sides of the airflow path.

16. The air temperature sensor of claim 15 wherein the upper surface is a concave side of the airfoil and the lower surface is a convex side of the airfoil portion.

17. The air temperature sensor of claim 11 wherein the set of fluid passageways includes a first fluid passageway within a first portion of the interior and a second fluid passageway within a second portion of the interior.

18. The air temperature sensor of claim 17 , further comprising a transfer tube located within the interior, and fluidly coupling the first fluid passageway and the second fluid passageway.

19. The air temperature sensor of claim 11 wherein the set of fluid passageways includes a fluid passageway that doubles back along a portion of a length of the housing.

20. The air temperature sensor of claim 11 wherein the at least one channels is at least two channels oriented parallel to each other and configured to direct an airflow in opposing directions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2017
From: PARSONS, JOHN PATRICK; ASHTON, GREGORY LLOYD; GOEDEL, JARODD DAN; TAN, CHIONG SIEW
To: UNISON INDUSTRIES, LLC
Reel/Frame 042789/0654 →
Continuity (1)
Related Publication 20180372556A1 · Dec 27, 2018
Cited By (1)
US 12,209,505