IP Library Granted Patent US 12666567
Granted Patent B2
US 12666567 · App. 18/570,362 · Granted Jun 23, 2026

Cooling liquid circulation unit, method for controlling same, and program

Inventors: Minoru Matsuo (Tokyo, JP); Naohiko Matsuda (Tokyo, JP); Shinnosuke Osafune (Tokyo, JP); Fumito Kajitani (Tokyo, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES, LTD.
H05K7/20281H05K7/20136H05K7/20209H05K7/20236H05K7/20263H05K7/20272
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 12666567
App. No.
18/570,362
Granted
Jun 23, 2026
Kind
B2
Abstract

A cooling liquid circulation unit circulates cooling liquid in an immersion tank for immersing and cooling electronic devices in the cooling liquid and includes a flow rate adjustment part provided in a cooling liquid circulation path for circulating the cooling liquid in the immersion tank, a heat exchanger for exchanging heat between the cooling liquid and a cooling medium, the heat exchanger being provided in the cooling liquid circulation path, and a cooling liquid circulation unit controller that includes a mode selection part for selecting any one of a plurality of cooling modes, a calculation part for calculating a necessary cooling amount based on parameters related to operation states of the electronic devices, and a cooling condition setting part for setting a target value of parameters related to the flow rate of the cooling liquid based on the selected cooling mode and the necessary cooling amount.

Claims (16)

1 . A liquid coolant circulation unit that circulates a liquid coolant to an immersion tank for cooling a plurality of electronic devices by immersing the plurality of electronic devices in the liquid coolant, the liquid coolant circulation unit comprising:

a flow rate adjustment unit provided in a liquid coolant circulation path for circulating the liquid coolant to the immersion tank;

a heat exchanger provided in the liquid coolant circulation path and exchanging heat between the liquid coolant and a cooling medium; and

a liquid coolant circulation unit control unit, wherein

the liquid coolant circulation unit control unit includes:

a mode selection unit that selects any one of a plurality of cooling modes;

a calculation unit that calculates a required cooling amount, based on parameters relating to operation states of the plurality of electronic devices; and

a cooling condition setting unit that sets a target value of a parameter relating to a flow rate of the liquid coolant, based on the selected cooling mode and the required cooling amount,

the liquid coolant circulation unit control unit includes a correction unit that corrects the required cooling amount, based on a deviation between a distribution of the parameters indicating the operation states with respect to a disposition of the plurality of electronic devices inside the immersion tank and a cooling efficiency distribution inside the immersion tank, and

the cooling condition setting unit sets the target value of the parameter relating to the flow rate of the liquid coolant, based on the selected cooling mode and the corrected required cooling amount.

2 . The liquid coolant circulation unit according to claim 1 , wherein the correction unit corrects the required cooling amount, based on a deviation between a power consumption distribution with respect to the disposition of the plurality of electronic devices inside the immersion tank and the cooling efficiency distribution inside the immersion tank.

3 . The liquid coolant circulation unit according to claim 1 , wherein the correction unit corrects the required cooling amount, based on a deviation amount between a power consumption distribution with respect to the disposition of the plurality of electronic devices inside the immersion tank and the cooling efficiency distribution inside the immersion tank, and on an average value of power consumption of the plurality of electronic devices.

4 . The liquid coolant circulation unit according to claim 1 , wherein the correction unit corrects the required cooling amount, based on a deviation between a calculation load distribution with respect to the disposition of the plurality of electronic devices inside the immersion tank and the cooling efficiency distribution inside the immersion tank.

5 . The liquid coolant circulation unit according to claim 1 , wherein the correction unit corrects the required cooling amount, based on a deviation amount between a calculation load distribution with respect to the disposition of the plurality of electronic devices inside the immersion tank and the cooling efficiency distribution inside the immersion tank, and on an average value of calculation loads of the plurality of electronic devices.

6 . The liquid coolant circulation unit according to claim 4 , wherein the calculation load distribution is estimated, based on a parameter relating to an execution status of a calculation job assigned to the plurality of electronic devices.

7 . The liquid coolant circulation unit according to claim 5 , wherein the calculation load distribution is estimated, based on a parameter relating to an execution status of a calculation job assigned to the plurality of electronic devices.