IP Library Granted Patent US 8,934,242
Granted Patent B2
US 8,934,242 · App. 13/476,232 · Granted Jan 13, 2015

Hot aisle containment cooling system and method

Inventors: John H. Bean, Jr. (Wentzville, MO); John Christopher Niemann (St. Charles, MO)
Assignee: Schneider Electric IT Corporation
H05K7/20745
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Quick Facts
Patent No.
US 8,934,242
App. No.
13/476,232
Granted
Jan 13, 2015
Kind
B2
Abstract

An air containment cooling system for containing and cooling air between two rows of equipment racks includes a canopy assembly configured to enclose a hot aisle defined by the two rows of equipment racks, and a cooling system embedded within the canopy assembly. The cooling system is configured to cool air disposed within the hot aisle. Other embodiments and methods for cooling are further disclosed.

Claims (23)

1. An air containment cooling system for containing and cooling air between two rows of equipment racks, the air containment cooling system comprising:

a canopy assembly configured to enclose a hot aisle defined by the two rows of equipment racks, the canopy assembly including a free-standing frame structure having a plurality of vertical and horizontal support members defining a docking station; and

a cooling system, supported by the free-standing frame structure, the cooling system being configured to cool the air disposed within the hot aisle and including at least one cooling panel defined by a heat exchanger, the heat exchanger of the at least one cooling panel including a ladder-type structure having a pair of larger pipes spaced apart from one another with smaller micro channel coils extending between the larger pipes.

2. The air containment cooling system of claim 1 , wherein the plurality of vertical and horizontal support members include pipes configured to deliver coolant to the heat exchanger.

3. The air containment cooling system of claim 1 , further comprising a fan supported by the frame structure and configured to move the air to the micro channel coils.

4. The air containment cooling system of claim 1 , further comprising vertical filler panels configured to be disposed between adjacent racks of the two rows of equipment racks having a gap between adjacent racks.

5. The air containment cooling system of claim 1 , further comprising a cable trough positioned adjacent to one of the two sides of the heat exchanger of the at least one cooling panel.

6. The air containment cooling system of claim 1 , further comprising a first bus that extends along one of the two sides of the heat exchanger of the at least one cooling panel.

7. The air containment cooling system of claim 6 , further comprising a second bus that extends along another one of the two sides of the heat exchanger of the at least one cooling panel.

8. The air containment cooling system of claim 1 , wherein the heat exchanger of the at least one cooling panel is substantially inverse U-shaped in construction and having two sides and a top to increase a surface area of the heat exchanger of the at least one cooling panel.

9. The air containment cooling system of claim 1 , wherein the heat exchanger of the at least one cooling panel is substantially inverse V-shaped in construction and having two sides to increase a surface area of the heat exchanger of the at least one cooling panel.

10. The air containment cooling system of claim 1 , wherein the micro channel coils include fins.

11. A method of cooling a hot aisle of equipment racks of a data center, the method comprising:

containing air within the hot aisle of the data center by providing a canopy assembly above the hot aisle and between rows of the equipment racks, the canopy assembly including a free-standing frame structure having a plurality of vertical and horizontal support members defining a docking station;

disposing a cooling system having at least one cooling panel defined by a heat exchanger in the canopy assembly, the heat exchanger of the at least one cooling panel being supported by the free-standing frame structure, the heat exchanger of the at least one cooling panel including a ladder-type structure having a pair of larger pipes spaced apart from one another with smaller micro channel coils extending between the larger pipes; and

cooling the air contained within the hot aisle by the heat exchanger.

12. The method of claim 11 , further comprising providing filler panels between adjacent equipment racks of each row of the two rows of equipment racks to further contain the air within the hot aisle.

13. The method of claim 11 , further comprising moving the air within the hot aisle toward the heat exchanger disposed within the canopy assembly.

14. The method of claim 13 , wherein the moving the air within the hot aisle toward the heat exchanger is achieved by at least one fan.

15. The method of claim 11 , further comprising providing IT equipment, power distribution and cable management capabilities along one of the sides of the heat exchanger of the at least one cooling panel.

16. The method of claim 11 , further comprising disposing a fan below a top of the heat exchanger of the at least one cooling panel.

17. The method of claim 11 , wherein the heat exchanger of the at least one cooling panel is substantially inverse U-shaped in construction and has two sides and a top to increase a surface area of the heat exchanger of the at least one cooling panel.

18. The method of claim 11 , wherein the heat exchanger of the at least one cooling panel is substantially inverse V-shaped in construction and has two sides to increase a surface area of the heat exchanger of the at least one cooling panel.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2013
From: BEAN, JOHN H., JR.; NIEMANN, JOHN CHRISTOPHER
To: AMERICAN POWER CONVERSION CORPORATION
Reel/Frame 029651/0936 →
CHANGE OF NAME Recorded Jan 17, 2013
From: AMERICAN POWER CONVERSION CORPORATION
To: SCHNEIDER ELECTRIC IT CORPORATION
Reel/Frame 029660/0168 →
Continuity (2)
Continuation 12361087 · Jan 28, 2009
Related Publication 20120229972A1 · Sep 13, 2012