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公开(公告)号:US20180156492A1
公开(公告)日:2018-06-07
申请号:US15871826
申请日:2018-01-15
Applicant: Johnson Controls Technology Company
Inventor: William L. Kopko , Mustafa Kemal Yanik , Michael Lee Buckley , Glenn Eugene Nickey , Ian Michael Casper
CPC classification number: F24F13/30 , F28B1/06 , F28D1/0435
Abstract: A heat exchanger is provided with stacked coil sections. Each of the stacked coil sections is configured to circulate a fluid independent from the other coil section. An air moving device is used to circulate air through both of the stacked coil sections. The stacked coil sections are positioned to have the air exiting the one coil section entering the other coil section.
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公开(公告)号:US10317117B2
公开(公告)日:2019-06-11
申请号:US15137759
申请日:2016-04-25
Applicant: JOHNSON CONTROLS TECHNOLOGY COMPANY
Inventor: Jeb W. Schreiber , Jay A. Kohler , Paul De Larminat , Mustafa Kemal Yanik , William F. McQuade , Justin P. Kauffman , Soren Bierre Poulsen , Lee Li Wang , Satheesh Kulankara
Abstract: An evaporator (168) in a vapor compression system (14) (168) includes a shell (76), a first tube bundle (78); a hood (86); a distributor (80); a first supply line (142); a second supply line (144); a valve (122) positioned in the second supply line (144); and a sensor (150). The distributor (80) is positioned above the first tube bundle (78). The hood (88) covers the first tube bundle (78). The first supply line (142) is connected to the distributor (80) and an end of the second supply line (144) is positioned near the hood (88). The sensor (150) is configured and positioned to sense a level of liquid refrigerant (82) in the shell. The valve (122) regulates flow in the second supply line in response to the level of liquid refrigerant (82) from the sensor (150).
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公开(公告)号:US10215444B2
公开(公告)日:2019-02-26
申请号:US15871826
申请日:2018-01-15
Applicant: Johnson Controls Technology Company
Inventor: William L. Kopko , Mustafa Kemal Yanik , Michael Lee Buckley , Glenn Eugene Nickey , Ian Michael Casper
Abstract: A heat exchanger is provided with stacked coil sections. Each of the stacked coil sections is configured to circulate a fluid independent from the other coil section. An air moving device is used to circulate air through both of the stacked coil sections. The stacked coil sections are positioned to have the air exiting the one coil section entering the other coil section.
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