IP Library Granted Patent US 8,413,461
Granted Patent B2
US 8,413,461 · App. 12/670,276 · Granted Apr 9, 2013

Auxiliary cooling system

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Quick Facts
Patent No.
US 8,413,461
App. No.
12/670,276
Granted
Apr 9, 2013
Kind
B2
Abstract

Air cooled chillers having a condenser section ( 300 ) sized to match chiller capacity and auxiliary cooling requirements satisfied by use of an independent cooling coil ( 314 ) dedicated to providing auxiliary cooling. The independent cooling coil ( 314 ) is located within the current condenser ( 300 ), but utilizes available space within the existing condenser, as well as a small portion of the airflow driven by the existing condenser fan ( 320 ). Thus, the auxiliary cooling capacity is provided with a single dedicated coil design, but which otherwise uses existing equipment and space.

Claims (34)

1. In a cooling system wherein cooling is provided by a vapor compression system having an outdoor unit, the outdoor unit comprises a condenser to receive refrigerant vapor from a compressor of the vapor compression system and a cooling coil structurally independent of the condenser to receive a fluid from a heat transfer device operable to cool a component of the vapor compression system requiring cooling, and the fluid flows from the heat transfer device to the cooling coil, the fluid absorbing heat from the heat transfer device, and the fluid being cooled by airflow through the cooling coil.

2. An air-cooled condenser comprising:

a first coil circulating a first fluid;

a second coil independent from the first coil and circulating a second fluid, the second fluid being a liquid;

the first coil is adapted for connection to a compressor and receives the first fluid from the compressor; and

the second coil is adapted for connection to a heat transfer device and receives the second fluid from the heat transfer device, the heat transfer device being operable to cool at least one of oil or electrical components.

3. The air-cooled condenser of claim 2 further comprising a fan to circulate air through the first coil and the second coil.

4. The air-cooled condenser of claim 3 wherein the second coil is positioned near the fan.

5. The air-cooled condenser of claim 4 wherein the second coil has a substantially vertical orientation to enable substantially horizontal airflow through the second coil.

6. The air-cooled condenser of claim 4 wherein the second coil has a substantially horizontal orientation to enable substantially vertical airflow through the second coil.

7. The air-cooled condenser of claim 3 wherein the second coil is positioned opposite to the fan.

8. The air-cooled condenser of claim 7 wherein the second coil has a substantially horizontal orientation to enable substantially vertical airflow through the second coil.

9. The air-cooled condenser of claim 7 wherein the first coil comprises a pair of first coils, the second coil comprises a pair of second coils, each second coil of the pair of second coils is structurally independent from the pair of first coils and is positioned below a corresponding first coil to form a coil slab, and the corresponding pair of coil slabs are positioned to form a V-shaped geometry.

10. An air-cooled condenser, comprising:

a plurality of sections, each section of the plurality of sections comprising a first coil circulating a first fluid and a fan to circulate air through the first coil;

one section of the plurality of sections being a first section comprising a second coil, the second coil being independent of the corresponding first coil and circulating a second fluid, and the corresponding fan of the section being positioned to circulate air through the second coil;

wherein the first coil being adapted for connection to a compressor and being configured to receive the first fluid from the compressor; and

wherein the second coil being adapted for connection to a heat transfer device and being configured to receive the second fluid from the heat transfer device.

11. The air-cooled condenser of claim 10 wherein the second coil is structurally independent of the first coil.

12. The air-cooled condenser of claim 10 wherein another section of the plurality of sections different from the one section of the plurality of sections being a second section, the second section comprises a third coil, the third coil being independent of the corresponding first coil and being in fluid communication with the second coil.

13. The air-cooled condenser of claim 10 wherein the first coil of each section of the plurality of sections comprises a pair of coils, the pair of coils being positioned at an angle, and the second coil being positioned between the pair of coils.

14. The air-cooled condenser of claim 13 wherein the second coil has a substantially vertical orientation to enable substantially horizontal airflow through the second coil.

15. The air-cooled condenser of claim 10 wherein another section of the plurality of sections different from the one section of the plurality of sections is a second section, the second section comprises a third coil, the third coil being independent of the corresponding first coil and circulating a third fluid, the third coil being adapted for connection to a second heat transfer device and being configured to receive the third fluid from the second heat transfer device.

16. The air-cooled condenser of claim 13 wherein the second coil has a substantially horizontal orientation to enable substantially vertical airflow through the second coil.

17. An air-cooled condenser comprising:

a cabinet;

a condenser coil positioned in the cabinet, the condenser coil being part of a first circuit circulating a refrigerant fluid;

an auxiliary cooling coil structurally independent of the condenser coil, the auxiliary cooling coil being positioned in the cabinet and being part of a second circuit circulating a second fluid;

the second fluid being one of oil, water or water with an additive;

the condenser coil and the auxiliary cooling coil having independent inlets and outlets; and

at least one fan positioned in the cabinet to circulate air through both the condenser coil and the auxiliary cooling coil.

18. The air-cooled condenser of claim 17 wherein the auxiliary cooling coil has a substantially horizontal orientation to enable substantially vertical airflow through the auxiliary cooling coil.

19. The air-cooled condenser of claim 17 wherein at least one of the condenser coil or the auxiliary cooling coil further comprise a multichannel coil.

20. The air-cooled condenser of claim 17 wherein the auxiliary cooling coil has a substantially vertical orientation to enable substantially horizontal airflow through the auxiliary cooling coil.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2025
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 072275/0395 →
NUNC PRO TUNC ASSIGNMENT Recorded Feb 4, 2022
From: YORK INTERNATIONAL CORPORATION
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 058956/0981 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2021
From: YORK INTERNATIONAL CORPORATION
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 058562/0695 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2010
From: VALIYA NADUVATH, MAHESH; YANIK, MUSTAFA KEMAL
To: JOHNSON CONTROLS TECHNOLOGY COMPANY
Reel/Frame 023835/0047 →