IP Library Granted Patent US 11,240,935
Granted Patent B2
US 11,240,935 · App. 16/926,663 · Granted Feb 1, 2022

Energy efficient data center liquid cooling with geothermal enhancement

Inventors: Timothy J. Chainer (Putnam Valley, NY); Pritish R. Parida (Fishkill, NY)
Assignee: International Business Machines Corporation
H05K7/20654G06F1/20H05K7/2079G06F2200/201
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,240,935
App. No.
16/926,663
Granted
Feb 1, 2022
Kind
B2
Abstract

A data center cooling system is operated in a first mode, has an indoor portion wherein heat is absorbed from components in the data center by a heat transfer fluid, and has an outdoor heat exchanger portion and a geothermal heat exchanger portion. The first mode includes ambient air cooling of the heat transfer fluid in the outdoor heat exchanger portion and/or geothermal cooling of the heat transfer fluid in the geothermal heat exchanger portion. Based on an appropriate metric, a determination is made that a switch should be made from the first mode to a second, different, mode; and, responsive thereto, the data center cooling system is switched to the second mode. The second mode includes at least another of ambient air cooling of the heat transfer fluid in the outdoor heat exchanger portion and geothermal cooling of the heat transfer fluid in the geothermal heat exchanger portion.

Claims (60)

1. A method comprising:

operating a data center cooling system in a first mode, said data center cooling system having an indoor portion wherein heat is absorbed from components in said data center by a heat transfer fluid, said data center cooling system having an outdoor heat exchanger portion and a geothermal heat exchanger portion, said first mode comprising at least one of:

ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion; and

geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

determining, based on an appropriate metric, that a switch should be made from said first mode to a second mode; and

responsive to said determining, switching said data center cooling system to said second mode, said second mode being different than said first mode, said second mode comprising at least another one of:

ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion; and

geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

wherein said determining step comprises determining based on at least one of time, heat dissipation from said components, outdoor air temperature, ground heat sink temperature, and temperature of said heat transfer fluid at a predetermined point;

wherein:

said first mode comprises geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion only;

said determining step comprises comparing said temperature of said heat transfer fluid at said predetermined point to a maximum allowable value; and

said second mode comprises said ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion and said geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

further comprising:

comparing said temperature of said heat transfer fluid at said predetermined point to a minimum allowable value while operating in said second mode; and

responsive to said temperature of said heat transfer fluid at said predetermined point being less than said minimum allowable value, ceasing one of said ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion and said geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

wherein said outdoor heat exchanger portion and said geothermal heat exchanger portion are arranged in parallel, and wherein said second mode comprises passing a first fraction of flow of said heat transfer fluid through said outdoor heat exchanger portion and a second fraction of said flow of said heat transfer fluid through said geothermal heat exchanger portion; and

wherein said second mode comprises cooling said second fraction of said flow of said heat transfer fluid through said geothermal heat exchanger portion by passing same through a liquid-to-liquid heat exchanger having a flow of groundwater that is cooler than said heat transfer fluid passing through said geothermal heat exchanger portion.

2. A method comprising:

operating a data center cooling system in a first mode, said data center cooling system having an indoor portion wherein heat is absorbed from components in said data center by a heat transfer fluid, said data center cooling system having an outdoor heat exchanger portion and a geothermal heat exchanger portion, said first mode comprising at least one of:

ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion; and

geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

determining, based on an appropriate metric, that a switch should be made from said first mode to a second mode; and

responsive to said determining, switching said data center cooling system to said second mode, said second mode being different than said first mode, said second mode comprising at least another one of:

ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion; and

geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

wherein said determining step comprises determining based on at least one of time, heat dissipation from said components, outdoor air temperature, ground heat sink temperature, and temperature of said heat transfer fluid at a predetermined point;

wherein:

said first mode comprises geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion only;

said determining step comprises comparing said temperature of said heat transfer fluid at said predetermined point to a maximum allowable value; and

said second mode comprises said ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion and said geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

further comprising:

comparing said temperature of said heat transfer fluid at said predetermined point to a minimum allowable value while operating in said second mode; and

responsive to said temperature of said heat transfer fluid at said predetermined point being less than said minimum allowable value, ceasing one of said ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion and said geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

wherein said outdoor heat exchanger portion and said geothermal heat exchanger portion are arranged in parallel, and wherein said second mode comprises passing a first fraction of flow of said heat transfer fluid through said outdoor heat exchanger portion and a second fraction of said flow of said heat transfer fluid through said geothermal heat exchanger portion; and

wherein said heat transfer fluid comprises a first heat transfer fluid, and wherein said second mode comprises:

cooling said second fraction of said flow of said first heat transfer fluid through said geothermal heat exchanger portion by passing same through a liquid-to-liquid heat exchanger having a flow of a second heat transfer fluid that is cooler than said first heat transfer fluid passing through said geothermal heat exchanger portion; and

cooling said second heat transfer fluid by passing same through a coil in contact with earth that is cooler than said second heat transfer fluid.

3. A method comprising:

operating a data center cooling system in a first mode, said data center cooling system having an indoor portion wherein heat is absorbed from components in said data center by a heat transfer fluid, said data center cooling system having an outdoor heat exchanger portion and a geothermal heat exchanger portion, said first mode comprising at least one of:

ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion; and

geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

determining, based on an appropriate metric, that a switch should be made from said first mode to a second mode; and

responsive to said determining, switching said data center cooling system to said second mode, said second mode being different than said first mode, said second mode comprising at least another one of:

ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion; and

geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

wherein said determining step comprises determining based on at least one of time, heat dissipation from said components, outdoor air temperature, ground heat sink temperature, and temperature of said heat transfer fluid at a predetermined point;

wherein:

said first mode comprises geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion only;

said determining step comprises comparing said temperature of said heat transfer fluid at said predetermined point to a maximum allowable value; and

said second mode comprises said ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion and said geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

further comprising:

comparing said temperature of said heat transfer fluid at said predetermined point to a minimum allowable value while operating in said second mode; and

responsive to said temperature of said heat transfer fluid at said predetermined point being less than said minimum allowable value, ceasing one of said ambient air cooling of said heat transfer fluid in said outdoor heat exchanger portion and said geothermal cooling of said heat transfer fluid in said geothermal heat exchanger portion;

wherein said outdoor heat exchanger portion and said geothermal heat exchanger portion are arranged in series, and wherein said second mode comprises passing an entire flow of said heat transfer fluid through said outdoor heat exchanger portion and said geothermal heat exchanger portion.

4. The method of claim 3 , wherein said second mode comprises cooling said flow of said heat transfer fluid through said geothermal heat exchanger portion by passing same through a coil in contact with earth that is cooler than said heat transfer fluid through said geothermal heat exchanger portion.

5. The method of claim 3 , wherein said second mode comprises cooling said flow of said heat transfer fluid through said geothermal heat exchanger portion by passing same through a liquid-to-liquid heat exchanger having a flow of groundwater that is cooler than said heat transfer fluid through said geothermal heat exchanger portion.

6. The method of claim 3 , wherein said heat transfer fluid comprises a first heat transfer fluid, and wherein said second mode comprises:

cooling said flow of said heat transfer fluid through said geothermal heat exchanger portion by passing same through a liquid-to-liquid heat exchanger having a flow of a second heat transfer fluid that is cooler than said first heat transfer fluid passing through said geothermal heat exchanger portion; and

cooling said second heat transfer fluid by passing same through a coil in contact with earth that is cooler than said second heat transfer fluid.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2020
From: CHAINER, TIMOTHY J.; PARIDA, PRITISH R.
To: INTERNATIONAL BUSINESS MACHINES CORPORATION
Reel/Frame 053183/0255 →
Continuity (3)
Division 15803755 · Nov 4, 2017
Division 13252888 · Oct 4, 2011
Related Publication 20200396867A1 · Dec 17, 2020
Cited By (1)
US 12,441,203