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US20080041077A1 - Method and apparatus for cooling - Google Patents

Method and apparatus for cooling
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Publication number
US20080041077A1
US20080041077A1US11/504,382US50438206AUS2008041077A1US 20080041077 A1US20080041077 A1US 20080041077A1US 50438206 AUS50438206 AUS 50438206AUS 2008041077 A1US2008041077 A1US 2008041077A1
Authority
US
United States
Prior art keywords
cooling unit
heat exchanger
air
module
cooling
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
US11/504,382
Inventor
Ozan Tutunoglu
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.)
Schneider Electric IT Corp
Original Assignee
American Power Conversion Corp
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 American Power Conversion CorpfiledCriticalAmerican Power Conversion Corp
Priority to US11/504,382priorityCriticalpatent/US20080041077A1/en
Assigned to AMERICAN POWER CONVERSION CORPORATIONreassignmentAMERICAN POWER CONVERSION CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: TUTUNOGLU, OZAN
Publication of US20080041077A1publicationCriticalpatent/US20080041077A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A cooling unit includes a first module having a first intake opening and a first exhaust opening formed therein. At least one first air moving device may be configured to draw air along a first flow path from the first intake opening to the first exhaust opening. A first heat exchanger may be positioned in the first flow path. The cooling unit may further include a second module having a second intake opening and a second exhaust opening. At least one second air moving device may be configured to draw air along a second flow path from the second intake opening and direct air to the second exhaust opening. A second heat exchanger may be positioned in the second flow path. A conduit system is in fluid communication with the first heat exchanger and the second heat exchanger. The conduit system may be configured to deliver coolant from the first heat exchanger of the first module to the second heat exchanger of the second module and from the second heat exchanger of the second module to the first heat exchanger of the first module. Methods of cooling a space with a cooling unit are further disclosed.

Description

Claims (31)

1. A cooling unit comprising:
a first module including a first intake opening and a first exhaust opening formed therein, at least one first air moving device configured to draw air along a first flow path from the first intake opening to the first exhaust opening, and a first heat exchanger positioned in the first flow path;
a second module including a second intake opening and a second exhaust opening, at least one second air moving device configured to draw air along a second flow path from the second intake opening and direct air to the second exhaust opening, and a second heat exchanger positioned in the second flow path; and
a conduit system in fluid communication with the first heat exchanger and the second heat exchanger, the conduit system being configured to deliver coolant from the first heat exchanger of the first module to the second heat exchanger of the second module and from the second heat exchanger of the second module to the first heat exchanger of the first module.
30. A cooling unit comprising:
a housing;
a compressor coupled to the housing;
a first heat exchanger coupled to the housing;
at least one first air moving device coupled to the housing and configured to direct air along a first flow path, the first heat exchanger being located along the first flow path;
a second heat exchanger coupled to the housing;
at least one second air moving device coupled to the housing and configured to direct air along a second flow path, the second heat exchanger being located along the second flow path;
a conduit system in fluid communication with the compressor, the first heat exchanger, the second heat exchanger, and back to the compressor; and
a bypass valve provided in the conduit system, the bypass valve being configured to divert a portion of coolant from the compressor to the second heat exchanger.
US11/504,3822006-08-152006-08-15Method and apparatus for coolingAbandonedUS20080041077A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US11/504,382US20080041077A1 (en)2006-08-152006-08-15Method and apparatus for cooling

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US11/504,382US20080041077A1 (en)2006-08-152006-08-15Method and apparatus for cooling

Publications (1)

Publication NumberPublication Date
US20080041077A1true US20080041077A1 (en)2008-02-21

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ID=39100053

Family Applications (1)

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US11/504,382AbandonedUS20080041077A1 (en)2006-08-152006-08-15Method and apparatus for cooling

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Cited By (43)

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US8402816B2 (en)2010-12-302013-03-26Schneider Electric It CorporationSystems and methods for detecting leaks
US8425287B2 (en)2007-01-232013-04-23Schneider Electric It CorporationIn-row air containment and cooling system and method
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US8672732B2 (en)2006-01-192014-03-18Schneider Electric It CorporationCooling system and method
US8701746B2 (en)2008-03-132014-04-22Schneider Electric It CorporationOptically detected liquid depth information in a climate control unit
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US9451731B2 (en)2006-01-192016-09-20Schneider Electric It CorporationCooling system and method
US9568206B2 (en)2006-08-152017-02-14Schneider Electric It CorporationMethod and apparatus for cooling
US20170242446A1 (en)*2015-04-272017-08-24Hewlett Packard Enterprise Development LpVirtualized fan speed measurement
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US9830410B2 (en)2011-12-222017-11-28Schneider Electric It CorporationSystem and method for prediction of temperature values in an electronics system
US9952103B2 (en)2011-12-222018-04-24Schneider Electric It CorporationAnalysis of effect of transient events on temperature in a data center
US20180142935A1 (en)*2016-07-252018-05-24Robert W. JacobiModular system for heating and/or cooling requirements
US9996659B2 (en)2009-05-082018-06-12Schneider Electric It CorporationSystem and method for arranging equipment in a data center
US20190025859A1 (en)*2017-07-192019-01-24Heatcraft Refrigeration Products LlcCooling system flood prevention tool
US20190050279A1 (en)*2017-11-202019-02-14Intel CorporationFunctional safety error reporting and handling infrastructure
US10408712B2 (en)2013-03-152019-09-10Vertiv CorporationSystem and method for energy analysis and predictive modeling of components of a cooling system
US10999954B2 (en)2019-04-232021-05-04Vertiv CorporationModular roof mounted cooling system and method for data center
US11076509B2 (en)2017-01-242021-07-27The Research Foundation for the State UniversityControl systems and prediction methods for it cooling performance in containment
US11076507B2 (en)2007-05-152021-07-27Schneider Electric It CorporationMethods and systems for managing facility power and cooling
US11326830B2 (en)2019-03-222022-05-10Robert W. JacobiMultiple module modular systems for refrigeration
CN114786983A (en)*2019-12-132022-07-22法雷奥热系统公司Cooling module for a motor vehicle
WO2023003762A1 (en)*2021-07-232023-01-26Nvidia CorporationIn-row cooling unit with interchangeable heat exchangers

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US8145363B2 (en)*2009-05-282012-03-27American Power Conversion CorporationSystems and methods for controlling load dynamics in a pumped refrigerant cooling system
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US8973380B2 (en)2009-05-282015-03-10Schneider Electric It CorporationSystems and methods for detecting refrigerant leaks in cooling systems
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