IP Library › Granted Patent US 11,473,811
Granted Patent B2
US 11,473,811 · App. 16/936,986 · Granted Oct 18, 2022

Wind baffle for preventing reverse fan torque

Inventor: Zi Xia Jin (Shanghai, CN)
Assignees: TRANE INTERNATIONAL INC.; TRANE AIR CONDITIONING SYSTEMS (CHINA) CO., LTD.
F24F13/082F04D29/403
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Quick Facts
Patent No.
US 11,473,811
App. No.
16/936,986
Granted
Oct 18, 2022
Kind
B2
Abstract

Wind baffles are provided at a side discharge vent of a cabinet containing a heating, ventilation, air conditioning, and refrigeration (HVACR) system. The wind baffles include two or more baffles joined to a support frame. The baffles have a leading edge towards ambient environment surrounding of the cabinet and a trailing edge towards an interior of the cabinet, and the leading edge has a perimeter greater than a perimeter of the trailing edge. The baffles may surround each successive baffle. The baffles may be concentric The wind baffles may be located between ambient environment surrounding of the cabinet and a fan near the side discharge vent. The fan may be a variable-speed fan.

Claims (42)

1. A heating, ventilation, air conditioning and refrigeration (HVACR) system, comprising:

a cabinet including a side discharge vent located on a side wall of the cabinet, wherein the side wall extends vertically from a cabinet base to a cabinet top;

a fan, located within the cabinet and at the side discharge vent;

a wind baffle located at the side discharge vent, between the fan and an ambient environment of the cabinet, wherein the wind baffle includes:

a first baffle;

two or more additional baffles, wherein each of the two or more additional baffles surrounds the first baffle or one of the two or more additional baffles, and

wherein each of the first baffle and the two or more additional baffles has a leading edge at an end towards the ambient environment of the cabinet and a trailing edge at an end towards an interior of the cabinet, and the leading edge has a perimeter greater than a perimeter of the trailing edge; and

a support frame, fixed to an exterior of the cabinet, the support frame joining each of the first baffle and the two or more additional baffles to the cabinet;

wherein the wind baffle is configured to reduce pressure applied by an outdoor cross wind entering through the side discharge vent,

the first baffle has a first pitch angle, each of the two or more additional baffles has a second pitch angle, and the first pitch angle is smaller than the second pitch angle.

2. The HVACR system of claim 1 , wherein each of the first baffle and the two or more additional baffles is straight from the leading edge of the baffle to the trailing edge of the baffle.

3. The HVACR system of claim 1 , wherein each of the first baffle and the two or more additional baffles includes a curve between the leading edge of the baffle and the trailing edge of the baffle.

4. The HVACR system of claim 1 , wherein the leading edge of the first baffle has a perimeter that is approximately equal to or greater than a perimeter of a trailing edge of one of the two or more additional baffles, wherein the leading edge of the one of the two or more additional baffles has a perimeter greater than the perimeter of the leading edge of the first baffle.

5. The HVACR system of claim 1 , wherein each of the first baffle and the two or more additional baffles has a depth of at or about less than 6 inches.

6. The HVACR system of claim 1 , wherein the first baffle includes an opening at the trailing edge.

7. The HVACR system of claim 1 , wherein the first baffle is closed at the trailing edge.

8. The HVACR system of claim 1 , wherein the fan is a variable-speed fan.

9. The HVACR system of claim 8 , wherein the wind baffle is configured to reduce a susceptibility of the variable speed fan to a reverse torque applied thereto, when the variable-speed fan has a startup speed that is less than a maximum speed of the variable-speed fan.

10. The HVACR system of claim 1 , wherein the first baffle and each of the two or more additional baffles are concentric.

11. A method of exhausting air from an HVACR cabinet, comprising:

drawing air within the HVACR cabinet towards a side discharge vent located on a side wall of the HVACR cabinet using a variable-speed fan; and

directing an exhaust from the variable-speed fan through a wind baffle located at the side discharge vent,

wherein the wind baffle includes:

a first baffle;

two or more additional baffles, wherein each of the two or more additional baffles surrounds one of the first baffle or one of the two or more additional baffles,

wherein each of the first baffle and the two or more additional baffles has a leading edge at an end towards an ambient environment of the cabinet and a trailing edge at an end towards an interior of the cabinet, and the leading edge has a perimeter greater than a perimeter of the trailing edge; and

a support frame joining each of the first baffle and the two or more additional baffles to the cabinet, and

the side wall extends vertically from a cabinet base to a cabinet top,

wherein the first baffle has a first pitch angle, each of the two or more additional baffles has a second pitch angle, and the first pitch angle is smaller than the second pitch angle.

12. The method of claim 11 , wherein the leading edge of the first baffle has a perimeter that is approximately equal to or greater than a perimeter of a trailing edge of one of the two or more additional baffles, wherein the leading edge of the one of the two or more additional baffles has a perimeter greater than the perimeter of the leading edge of the first baffle.

13. The method of claim 11 , wherein the exhaust from the variable speed fan has a pressure drop of less than at or about 0.1 inches of water across the wind baffle when directing the exhaust from the variable-speed fan through the wind baffle at the side discharge vent.

14. The method of claim 11 , wherein drawing air within the HVACR cabinet towards a side discharge vent includes reducing a susceptibility of the variable speed fan to a reverse torque applied thereto, when the variable-speed fan is operated at a startup speed that is less than a maximum speed of the variable-speed fan.

15. The method of claim 11 , wherein the first baffle and each of the two or more additional baffles are concentric.

16. A method of reducing pressure applied by an outdoor cross wind entering from the outdoors through a side discharge vent of a heating, ventilation, air conditioning, and refrigeration (HVACR) system, comprising:

positioning a wind baffle over the side discharge vent, the side discharge vent provided on a cabinet containing an outdoor unit of the HVACR system, and

deflecting at least a portion of the outdoor cross wind using the wind baffle,

wherein the wind baffle includes:

a first baffle;

two or more additional baffles, wherein each of the two or more additional baffles surrounds one of the first baffle or one of the two or more additional baffles,

wherein each of the first baffle and the two or more additional baffles has a leading edge at an end towards an outdoor ambient environment of the cabinet and a trailing edge at an end towards an interior of the cabinet, and the leading edge has a perimeter greater than a perimeter of the trailing edge,

the first baffle has a first pitch angle, each of the two or more additional baffles has a second pitch angle, and the first pitch angle is smaller than the second pitch angle.

17. The method of claim 16 , further comprising starting a fan of the outdoor unit of the HVACR system, wherein the fan has a torque when started that is less than a torque when the fan is at a maximum speed of the fan, and wherein the pressure applied by the outdoor cross wind is reduced to below the torque when started of the fan.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2020
From: JIN, ZI XIA
To: TRANE INTERNATIONAL INC.
Reel/Frame 053441/0716 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2020
From: JIN, ZI XIA
To: TRANE AIR CONDITIONING SYSTEMS (CHINA) CO., LTD.
Reel/Frame 053441/0731 →
Priority Claims (1)
CN 201922498064.X · Dec 31, 2019 · national
Continuity (1)
Related Publication 20210199336A1 · Jul 1, 2021
Cited By (1)
US 12,234,837