IP Library Granted Patent US 6,898,947
Granted Patent B2
US 6,898,947 · App. 10/368,140 · Granted May 31, 2005

Utilization of harvest and/or melt water from an ice machine for a refrigerant subcool/precool system and method therefor

Assignee: Global Energy Group, Inc.
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Quick Facts
Patent No.
US 6,898,947
App. No.
10/368,140
Granted
May 31, 2005
Kind
B2
Abstract

A system for providing liquid refrigerant subcooling. Subcooling heat exchange is accomplished by directing and controlling the flow of said harvest and/or melt water through a refrigerant to fluid heat exchanger, or by a passive heat sink method whereby the liquid refrigerant subcooler sits in a non-pumped open reservoir that overflows at each harvest cycle. A system for providing hot gas discharge refrigerant precooling. Precooling heat exchange is accomplished by directing and controlling the flow of said harvest and/or melt water through a refrigerant to fluid heat exchanger, or by a passive heat sink method whereby the hot gas discharge refrigerant precooler sits in a non-pumped open reservoir that overflows at each harvest cycle. A system that combines the first two systems described above for providing both the benefits of subcooling and precooling with the same harvest and/or melt water supply being used twice.

Claims (16)

1. A heat exchange refrigerant subcool system that utilizes stored discharge water from an ice machine that is then pumped through a heat exchanger for subcooling a refrigerant that has already passed through the condenser of said ice machine, comprising in combination:

a subcooler connected in fluid communication with the output of the condenser, enabling the refrigerant to flow in a first direction through said subcooler after first flowing through the condenser; and

said subcooler connected in fluid communication with the output of a pump that pumps stored ice machine discharge water to directly flow through said subcooler from a bottom portion to a top portion in a second direction opposite to said first direction and then to discharge, said pump controllably pumps said discharge water through said subcooler for maximum subcooling effect;

whereby said subcooler utilizes the pumped and flowing cold discharge water from an ice machine for providing maximum available subcooling to the liquid refrigerant of said ice machine.

2. The heat exchange refrigerant subcool system as set forth in claim 1 , wherein said subcooler is positioned within a water storage tank that receives the discharge water from said ice machine.

3. The heat exchange refrigerant subcool system as set forth in claim 2 , further including a drainage fluidly connected to said water storage tank allowing overflow to drain therefrom.

4. The heat exchange refrigerant subcool system as set forth in claim 3 , further including a second storage container for receiving said overflow.

5. The heat exchange refrigerant subcool system as set forth in claim 1 , further including a precooler connected in fluid communication with the output of said compressor, said precooler being connected in heat exchange relationship with the discharge water from said subcooler.

6. A storage system for capturing, storing and insulating from heat gain the discharged water from an ice making machine, comprising in combination:

a) a storage vessel for storing the discharge water from at least one ice making machine;

b) said storage vessel in fluid communication with one of a harvest water discharge output of the ice making machine and a melt water output from an ice storage bin of the ice making machine;

c) an overflow pipe connected in fluid communication with said storage vessel; and

d) a system for producing a flow of said discharge water from said storage vessel to a heat exchanger, including:

1) a pump connected in fluid communication between said storage vessel and said first heat exchanger;

2) a flow control device located between said pump and said first heat exchanger; and

3) means for positioning said storage vessel above a level of said heat exchanger allowing gravity to flow said discharge water from said storage vessel to said heat exchanger, whereby said discharge water flows by being pumped or by gravity, from said storage vessel to said heat exchanger.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2012
From: HEBERT, THOMAS H
To: OLIVE TREE PATENTS 1 LLC
Reel/Frame 028358/0073 →
ACKNOWLEDGEMENT SIGNED BY ASSIGNOR AND ASSIGNEE THAT AS OF OCTOBER 16, 2006 ALL PATENT RIGHTS REVERTED BACK TO ASSIGNOR Recorded Jul 7, 2009
From: GLOBAL ENERGY GROUP, INC.
To: HEBERT, THOMAS H.
Reel/Frame 022917/0495 →
ASSIGNMENT BACK TO INVENTOR HEBERT UPON HEBERT'S TERMINATION OF PRIOR ASSIGNMENTS AND ANY AMENDMENTS THERETO Recorded Feb 24, 2009
From: GLOBAL ENERGY GROUP, INC.
To: HEBERT, THOMAS H., MR.
Reel/Frame 022299/0640 →
Continuity (4)
Continuation 0986374700 · May 23, 2001
Division 0916881500 · Oct 8, 1998
Provisional Application 6008737200 · May 28, 1998
Related Publication 20030213261A1 · Nov 20, 2003