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US20080148751A1 - Method of controlling multiple refrigeration devices - Google Patents

Method of controlling multiple refrigeration devices
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Publication number
US20080148751A1
US20080148751A1US12/001,491US149107AUS2008148751A1US 20080148751 A1US20080148751 A1US 20080148751A1US 149107 AUS149107 AUS 149107AUS 2008148751 A1US2008148751 A1US 2008148751A1
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US
United States
Prior art keywords
temperature
case
superheat
control module
refrigerant
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US12/001,491
Inventor
Timothy Dean Swofford
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hill Phoenix Inc
Dover Systems Inc
Original Assignee
Hill Phoenix Inc
Dover Systems Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hill Phoenix Inc, Dover Systems IncfiledCriticalHill Phoenix Inc
Priority to US12/001,491priorityCriticalpatent/US20080148751A1/en
Assigned to DOVER SYSTEMS, INC.reassignmentDOVER SYSTEMS, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SWOFFORD, TIMOTHY DEAN
Publication of US20080148751A1publicationCriticalpatent/US20080148751A1/en
Assigned to HILL PHOENIX, INC.reassignmentHILL PHOENIX, INC.CHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: DOVER SYSTEMS, INC.
Abandonedlegal-statusCriticalCurrent

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Abstract

A refrigeration system for use with a plurality of temperature controlled cases is disclosed. The refrigeration system includes a cooling system having at least one compressor and a condenser for supplying liquid refrigerant to a cooling element associated with each case. Each cooling element receives liquid refrigerant through a liquid refrigerant supply line and returns vapor refrigerant through a suction line. The refrigeration system further includes a control module having a stored reference temperature (T ref) for each case, a temperature sensor disposed in each case for generating a signal representative of the actual temperature within the case (T act), and an expansion device provided at the liquid refrigerant supply line side of each case. The control module compares T ref with T act and moves the expansion devices between an open position and a closed position accordingly to obtain or maintain the desired temperature in each temperature controlled case.

Description

Claims (21)

1. In a refrigeration system having at least one compressor and a condenser for supplying liquid refrigerant to a plurality of cooling elements, the cooling element being associated with different temperature controlled cases for maintaining a desired temperature in each temperature controlled case, each cooling element receiving liquid refrigerant through a liquid refrigerant supply line and returning vapor refrigerant through a suction line, the improvement comprising:
a control module having a case temperature monitoring function including a case temperature setpoint for each temperature controlled case, and a superheat monitoring function including a superheat temperature setpoint for each temperature controlled case;
a sensor disposed in each temperature controlled case and configured to provide the control module with a signal representative of the actual case temperature within each temperature controlled case;
at least one of a temperature sensor and a pressure sensor proximate an outlet of the cooling elements and configured to provide the control module with a signal representative of an actual superheat temperature of the refrigerant exiting the cooling element; and
an expansion device provided at the supply line of each temperature controlled case,
wherein the control module compares the signals received from the sensors with the temperature setpoints for the respective temperature controlled cases and moves the expansion devices between an open position and a closed position in response to the signals to obtain or maintain a desired case temperature and a desired superheat temperature.
10. A refrigeration device comprising:
a case having a space configured to receive products to be cooled;
a case temperature sensor located within the space;
at least one cooling element coupled to the case and configured to provide cooling to the space;
a refrigeration system having a supply line and a return line configured to circulate a refrigerant through the cooling element;
a superheat temperature sensor arrangement coupled to at least one of the supply line and the return line;
an expansion device coupled to the supply line; and
a control module operable to maintain a desired temperature within the space by moving the expansion device between an open position and a closed position based on a signal received from the case temperature sensor and by modulating the expansion device when in the open position based on a signal received from the superheat temperature sensor arrangement.
17. A method of controlling temperature within more than one temperature controlled case coupled to a shared refrigeration system and operating at different desired temperatures, the method comprising:
providing a plurality of cases, each having a space configured to receive products to be cooled;
providing a case temperature sensor located within the space of each case;
providing at least one cooling element coupled to each case and configured to provide cooling to the space of the respective case;
providing a refrigeration system having refrigerant supply line and a refrigerant suction line;
coupling the cooling elements in parallel to the refrigeration system;
providing a superheat temperature sensor arrangement at one of the supply line and the suction line for each case;
providing a superheat valve for each case coupled at the supply line; and
providing a control module operable to maintain the desired temperatures within each space by moving the respective superheat valve between an open position and a closed position based on a signal received from the respective case temperature sensor and by modulating the respective superheat valve when in the open position based on a signal received from the respective superheat temperature sensor arrangement.
20. A refrigeration system, comprising:
a cooling system having at least one compressor and a condenser for supplying refrigerant to a plurality of parallel branch lines, each branch line having a supply line with a superheat valve and a return line coupled to a separate temperature controlled case, each temperature controlled case having a cooling element through which the refrigerant is configured to flow to provide cooling to a space within the temperature controlled space;
a control module having a case temperature setpoint representative of a desired storage temperature within the space for each temperature controlled case, where the temperature setpoint for at least one of the temperature controlled cases is different from the setpoint for the other temperature controlled cases, and a superheat temperature setpoint representative of a desired refrigerant superheat temperature proximate the outlet of the cooling element;
a case temperature sensor disposed in each temperature controlled case and configured to provide the control module with a signal representative of the actual case temperature within each temperature controlled case;
a superheat temperature sensor arrangement configured to provide a signal representative of an actual superheat temperature of the refrigerant proximate an outlet of the cooling element;
wherein the control module is operable to compare the signal representative of the actual case temperature with the case temperature setpoint for each temperature controlled case, and to compare the signal representative of the actual superheat temperature with the superheat temperature setpoint, and provide an output signal to each superheat valve to obtain or maintain the desired storage temperature in each temperature controlled case and to maintain the desired refrigerant superheat temperature, so that a single cooling system is operable to maintain different storage temperatures in a plurality of temperature controlled cases.
US12/001,4912006-12-122007-12-11Method of controlling multiple refrigeration devicesAbandonedUS20080148751A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US12/001,491US20080148751A1 (en)2006-12-122007-12-11Method of controlling multiple refrigeration devices

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US86965706P2006-12-122006-12-12
US12/001,491US20080148751A1 (en)2006-12-122007-12-11Method of controlling multiple refrigeration devices

Publications (1)

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US20080148751A1true US20080148751A1 (en)2008-06-26

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US12/001,491AbandonedUS20080148751A1 (en)2006-12-122007-12-11Method of controlling multiple refrigeration devices

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Cited By (19)

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Publication numberPriority datePublication dateAssigneeTitle
US20080209921A1 (en)*2007-03-022008-09-04Dover Systems, Inc.Refrigeration system
US20090090114A1 (en)*2007-10-092009-04-09Nico Technology Ltd.Refrigeration control device to reduce power consumption of a refrigeration appliance
US20100023171A1 (en)*2008-07-252010-01-28Hill Phoenix, Inc.Refrigeration control systems and methods for modular compact chiller units
US20100280669A1 (en)*2009-04-302010-11-04Hill Phoenix, Inc.Power failure controller for an electronically controlled expansion valve in a refrigeration system
US8020391B2 (en)2007-11-282011-09-20Hill Phoenix, Inc.Refrigeration device control system
US20110265504A1 (en)*2006-10-262011-11-03Hussmann CorporationRefrigerated merchandiser
US20120330465A1 (en)*2010-02-152012-12-27O'neill ZhengModel Based System and Method for Estimating Parameters and States in Temperature Controlled Spaces
US20130019617A1 (en)*2011-07-202013-01-24Thermo King CorporationDefrost for transcritical vapor compression system
US9080798B2 (en)2012-11-072015-07-14Hussmann CorporationControl method for modular refrigerated merchandiser
US9541311B2 (en)2010-11-172017-01-10Hill Phoenix, Inc.Cascade refrigeration system with modular ammonia chiller units
US9657977B2 (en)2010-11-172017-05-23Hill Phoenix, Inc.Cascade refrigeration system with modular ammonia chiller units
US9664424B2 (en)2010-11-172017-05-30Hill Phoenix, Inc.Cascade refrigeration system with modular ammonia chiller units
US9737156B2 (en)2013-12-232017-08-22Hussmann CorporationZone cooling in a refrigerated merchandiser
US9989300B1 (en)2013-10-282018-06-05Supercooler Technologies, Inc.Modular refrigeration device
USD854890S1 (en)2015-05-282019-07-30Supercooler Technologies, Inc.Supercooled beverage crystallization slush device with illumination
WO2020160817A1 (en)*2019-02-052020-08-13Audi AgMethod for operating a vehicle refrigeration system having a refrigerant circuit
US10959446B2 (en)2014-02-182021-03-30Supercooler Technologies, Inc.Supercooled beverage crystallization slush device with illumination
WO2021082591A1 (en)*2019-10-292021-05-06珠海格力电器股份有限公司Opening degree control method and apparatus for electronic expansion valve
IT202200026148A1 (en)*2022-12-202024-06-20Teklab Srl Method for managing a refrigeration system and refrigeration system

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US20090133416A1 (en)*2007-11-282009-05-28Hill Phoenix, Inc.Refrigeration device control system

Cited By (26)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20110265504A1 (en)*2006-10-262011-11-03Hussmann CorporationRefrigerated merchandiser
US8689573B2 (en)*2006-10-262014-04-08Hussmann CorporationRefrigerated merchandiser
US20080209921A1 (en)*2007-03-022008-09-04Dover Systems, Inc.Refrigeration system
US8973385B2 (en)2007-03-022015-03-10Hill Phoenix, Inc.Refrigeration system
US20090090114A1 (en)*2007-10-092009-04-09Nico Technology Ltd.Refrigeration control device to reduce power consumption of a refrigeration appliance
US8020391B2 (en)2007-11-282011-09-20Hill Phoenix, Inc.Refrigeration device control system
US8973379B2 (en)2008-07-252015-03-10Hill Phoenix, Inc.Refrigeration control systems and methods for modular compact chiller units
US20100023171A1 (en)*2008-07-252010-01-28Hill Phoenix, Inc.Refrigeration control systems and methods for modular compact chiller units
US20100280669A1 (en)*2009-04-302010-11-04Hill Phoenix, Inc.Power failure controller for an electronically controlled expansion valve in a refrigeration system
US8631663B2 (en)2009-04-302014-01-21Hill Phoenix, Inc.Power failure controller for an electronically controlled expansion valve in a refrigeration system
US9037302B2 (en)*2010-02-152015-05-19Carrier CorporationModel based system and method for estimating parameters and states in temperature controlled spaces
US20120330465A1 (en)*2010-02-152012-12-27O'neill ZhengModel Based System and Method for Estimating Parameters and States in Temperature Controlled Spaces
US9541311B2 (en)2010-11-172017-01-10Hill Phoenix, Inc.Cascade refrigeration system with modular ammonia chiller units
US9657977B2 (en)2010-11-172017-05-23Hill Phoenix, Inc.Cascade refrigeration system with modular ammonia chiller units
US9664424B2 (en)2010-11-172017-05-30Hill Phoenix, Inc.Cascade refrigeration system with modular ammonia chiller units
US20130019617A1 (en)*2011-07-202013-01-24Thermo King CorporationDefrost for transcritical vapor compression system
US9970696B2 (en)*2011-07-202018-05-15Thermo King CorporationDefrost for transcritical vapor compression system
US9080798B2 (en)2012-11-072015-07-14Hussmann CorporationControl method for modular refrigerated merchandiser
US9989300B1 (en)2013-10-282018-06-05Supercooler Technologies, Inc.Modular refrigeration device
US9737156B2 (en)2013-12-232017-08-22Hussmann CorporationZone cooling in a refrigerated merchandiser
US10959446B2 (en)2014-02-182021-03-30Supercooler Technologies, Inc.Supercooled beverage crystallization slush device with illumination
USD854890S1 (en)2015-05-282019-07-30Supercooler Technologies, Inc.Supercooled beverage crystallization slush device with illumination
WO2020160817A1 (en)*2019-02-052020-08-13Audi AgMethod for operating a vehicle refrigeration system having a refrigerant circuit
WO2021082591A1 (en)*2019-10-292021-05-06珠海格力电器股份有限公司Opening degree control method and apparatus for electronic expansion valve
IT202200026148A1 (en)*2022-12-202024-06-20Teklab Srl Method for managing a refrigeration system and refrigeration system
EP4390273A1 (en)*2022-12-202024-06-26Teklab SrlMethod for managing a refrigerating plant and refrigerating plant

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Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:DOVER SYSTEMS, INC., GEORGIA

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:SWOFFORD, TIMOTHY DEAN;REEL/FRAME:020649/0149

Effective date:20080221

ASAssignment

Owner name:HILL PHOENIX, INC., GEORGIA

Free format text:CHANGE OF NAME;ASSIGNOR:DOVER SYSTEMS, INC.;REEL/FRAME:022288/0539

Effective date:20080201

Owner name:HILL PHOENIX, INC.,GEORGIA

Free format text:CHANGE OF NAME;ASSIGNOR:DOVER SYSTEMS, INC.;REEL/FRAME:022288/0539

Effective date:20080201

STCBInformation on status: application discontinuation

Free format text:ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION


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