IP Library Granted Patent US 11,656,005
Granted Patent B2
US 11,656,005 · App. 15/143,203 · Granted May 23, 2023

CO2 cooling system and method for operating same

Inventors: Marc-André Lesmerises (Trois-Rivières, CA); Tommy Dolbec (Batiscan, CA)
Assignee: GESTION MARC-ANDRÉ LESMERISES INC.
F25B9/008F25B5/02F25B9/10F25B41/20F25B43/00F25B43/006F25B43/02F25B49/02F25C3/02F25B6/02F25B41/00F25B2309/061F25B2339/047F25B2400/075F25B2500/07F25B2600/2511F25B2700/191F25B2700/21
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Quick Facts
Patent No.
US 11,656,005
App. No.
15/143,203
Granted
May 23, 2023
Kind
B2
Abstract

A CO 2 cooling system includes a compression stage in which CO 2 refrigerant is compressed; a cooling stage in which the CO 2 refrigerant releases heat; a CO 2 liquid receiver in which the CO 2 refrigerant is accumulated in liquid and gaseous states; an evaporation stage in which the CO 2 refrigerant, having released heat in the cooling stage, absorbs heat. The evaporation stage has first and second evaporation sectors; a first metering device for feeding CO 2 refrigerant into the first evaporation sector at a first pressure; and a second metering device for feeding CO 2 refrigerant into the second evaporation sector at a second pressure. The first metering device and the second metering device are operated independently from one another. A plurality of CO 2 transfer lines connects the compression stage, the cooling stage, the CO 2 liquid receiver and the evaporation stage. The CO 2 refrigerant is circulable in a closed-loop circuit.

Claims (21)

1. A CO 2 cooling system, comprising:

a compression stage in which CO 2 refrigerant is compressed;

a cooling stage in which the compressed CO 2 refrigerant releases heat;

a CO 2 liquid receiver receiving CO 2 refrigerant from the cooling stage;

an evaporation stage in which the CO 2 refrigerant, having released heat in the cooling stage, absorbs heat, wherein the evaporation stage comprises a first evaporation sector and a second evaporation sector;

a CO 2 accumulator receiving CO 2 refrigerant exiting the evaporation stage, wherein a first portion of the CO 2 refrigerant from the CO 2 accumulator is directed to the compression stage;

a first metering device mounted downstream of the CO 2 liquid receiver and upstream of the first evaporation sector, wherein the first metering device is an expansion valve feeding CO 2 refrigerant from the CO 2 liquid receiver into the first evaporation sector;

a second metering device mounted downstream of the CO 2 accumulator and upstream of the second evaporation sector, wherein the second metering device is a pump pumping a second portion of the CO 2 refrigerant from the CO 2 accumulator into the second evaporation sector;

a first transfer line transferring a first portion of the CO 2 refrigerant from the cooling stage to the first metering device; and

a second transfer line transferring a second portion of the CO 2 refrigerant from the cooling stage to the CO 2 accumulator and then from the CO 2 accumulator to the second metering device;

wherein the CO 2 liquid receiver and the CO 2 accumulator are separate reservoirs;

wherein the first metering device and the second metering device are operated independently from one another, CO 2 pressure in the first evaporation sector being different than CO 2 pressure in the second evaporation sector;

wherein the CO 2 refrigerant is circulatable in a closed-loop circuit;

wherein the evaporation stage comprises a circuit of pipes extending under an ice-playing surface with the circuit of pipes including at least one first pipe line corresponding to the first evaporation sector and at least one second pipe line corresponding to the second evaporation sector; and

wherein the first pipe line extends below a central section of the ice-playing surface and the second pipe line extends below an outer section of the ice-playing surface.

2. The CO 2 cooling system of claim 1 , wherein:

CO 2 pressure in the first evaporation sector is higher than CO 2 pressure in the second evaporation sector.

3. The CO 2 cooling system of claim 1 , wherein the first transfer line and the second transfer line share a conduit section or a pipe section along a portion of their paths.

4. The CO 2 cooling system of claim 1 , wherein the second transfer line comprises a pressure differential unit between the cooling stage and the CO 2 accumulator.

5. The CO 2 cooling system of claim 4 , wherein the pressure differential unit is a valve.

6. The CO 2 cooling system of claim 1 , wherein the ice-playing surface is an ice hockey rink, a curling rink or a skating rink.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2025
From: CARNOT REFRIGERATION, INC
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 071199/0526 →
MERGER Recorded Apr 12, 2023
From: GESTION MARC-ANDRÉ LESMERISES INC.
To: CARNOT RÉFRIGÉRATION INC.
Reel/Frame 063333/0232 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2023
From: LESMERISES, MARC-ANDRÉ
To: GESTION MARC-ANDRÉ LESMERISES INC.
Reel/Frame 063189/0964 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2019
From: DOLBEC, TOMMY
To: LESMERISES, MARC-ANDRÉ
Reel/Frame 049104/0378 →
Continuity (2)
Provisional Application 62154982 · Apr 30, 2015
Related Publication 20160320098A1 · Nov 3, 2016