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US20010020366A1 - Method and apparatus for increasing the efficiency of a refrigeration system - Google Patents

Method and apparatus for increasing the efficiency of a refrigeration system
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Publication number
US20010020366A1
US20010020366A1US09/760,232US76023201AUS2001020366A1US 20010020366 A1US20010020366 A1US 20010020366A1US 76023201 AUS76023201 AUS 76023201AUS 2001020366 A1US2001020366 A1US 2001020366A1
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US
United States
Prior art keywords
vortex generator
refrigerant
compressor
refrigeration system
inlet
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.)
Granted
Application number
US09/760,232
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US6389818B2 (en
Inventor
Young Cho
Cheolho Bai
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.)
VAI Holdings LLC
Original Assignee
Vortex Aircon 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
Priority claimed from US09/517,922external-prioritypatent/US6250086B1/en
Priority claimed from US09/737,016external-prioritypatent/US6494935B2/en
Application filed by Vortex Aircon IncfiledCriticalVortex Aircon Inc
Priority to US09/760,232priorityCriticalpatent/US6389818B2/en
Priority to US09/802,763prioritypatent/US6430937B2/en
Assigned to VORTEX AIRCON, INC.reassignmentVORTEX AIRCON, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: BAI, CHEOLHO, CHO, YOUNG I.
Publication of US20010020366A1publicationCriticalpatent/US20010020366A1/en
Assigned to VAI HOLDINGS, LLCreassignmentVAI HOLDINGS, LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: VORTEX AIRCON
Application grantedgrantedCritical
Publication of US6389818B2publicationCriticalpatent/US6389818B2/en
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Abstract

A refrigeration system utilizing a vortex generator and a diffuser to reduce the pressure differential between the head pressure and suction pressure across a compressor.

Description

Claims (23)

We claim:
1. A refrigeration system having a compressor, a condenser, an expansion device and an evaporator arranged in succession and connected via conduit in a closed loop in order to circulate refrigerant through the closed loop, the refrigeration system comprising means for decreasing pressure differential across the compressor, thus decreasing compression ratio in the compressor.
2. The refrigeration system of
claim 1
wherein said means for decreasing comprises a vortex generator and a means for slowing refrigerant flow, in combination, that communicate with the expansion device, the evaporator and the compressor for increasing the inlet pressure of the compressor.
3. The refrigeration system of
claim 2
wherein said means for slowing refrigerant flow is a diffuser.
4. The refrigeration system of
claim 2
wherein said means for slowing refrigerant flow is a sudden expansion of the conduit.
5. The refrigeration system of
claim 2
wherein said vortex generator utilizes a center delivery for introducing recirculated refrigerant from the evaporator directly into the vortex flow.
6. A refrigeration system comprising:
a compressor;
a condenser;
an expansion device; and
an evaporator, all arranged in succession and communicating via conduit in a closed loop in order to circulate refrigerant through the closed loop;
a vortex generator for separating a stream of refrigerant under relatively high pressure into a vapor component and a liquid component, said vortex generator placed in the closed loop between the expansion device and the evaporator for accelerating the refrigerant vapor to a very high velocity at the exit of said vortex generator; and
a diffuser placed between the vortex generator and the compressor for increasing the pressure of the refrigerant before the refrigerant enters the compressor thereby reducing the pressure differential across the compressor and the compression ratio in the compressor.
7. The refrigeration system of
claim 6
wherein said vortex generator has a primary input, a secondary input, a vapor output and a liquid output, such that the output of the expansion device is connected to the primary input of the vortex generator, the vapor output of the vortex generator is connected to the input of the diffuser, the liquid output of the vortex generator is connected to the evaporator and the output of the evaporator is connected to the secondary input of the vortex generator.
8. The refrigeration system of
claim 6
further comprises a second vortex generator having an inlet and an outlet placed about one-fourth of the way in to the condenser.
9. The refrigeration system of
claim 8
wherein said expansion device is a third vortex generator having an inlet and an outlet.
10. The refrigeration system of
claim 6
wherein said expansion device is a first vortex generator having an inlet and an outlet.
11. The refrigeration system of
claim 6
, wherein said expansion device is a capillary tube for adjusting the pressure of the refrigerant that passes therethrough.
12. The refrigeration system of
claim 6
wherein said vortex generator has a center delivery for introducing recirculated refrigerant directly into the vortex flow.
13. A refrigeration system comprising:
a compressor having an inlet and an outlet;
a condenser having an inlet and an outlet, said condenser connected to the compressor via a first tube;
an expansion device having an inlet and an outlet, the inlet of the expansion device connected to the outlet of the condenser via a second tube;
a vortex generator for separating a stream of refrigerant into a vapor component and a liquid, said vortex generator having a primary input, a secondary input, a vapor output and a liquid output, such that the outlet of the expansion device is connected to the primary input of the vortex generator via a third tube;
an evaporator having an inlet and an outlet, the liquid outlet of the vortex generator being connected to the inlet of the evaporator via a fourth tube, and the outlet of the evaporator connected to the secondary input of the vortex generator via a fifth tube;
a diffuser having an inlet and an outlet, the vapor outlet of the vortex generator connected to the inlet of the diffuser via sixth tube, and the outlet of the diffuser connected to the inlet of the compressor via a seventh tube, the vortex generator and the diffuser increasing the pressure of the refrigerant entering the compressor thereby reducing the pressure differential across the compressor and the compression ratio in compressor.
14. The refrigeration system of
claim 13
, further comprising a bypass tube connecting the outlet of the evaporator to the inlet of the diffuser (i.e., connecting the fifth tube to the sixth tube).
15. The refrigeration system of
claim 14
, further comprising a valve in the bypass tube for regulating the amount of refrigerant that passes through the bypass tube.
16. The refrigeration system of
claim 14
, further comprising a second vortex generator having an inlet and an outlet placed about one-fourth of the way in to the condenser.
17. The refrigeration system of
claim 14
, wherein said expansion device is a third vortex generator having an inlet and an outlet.
18. The refrigeration system of
claim 13
, wherein said expansion device is a vortex generator having an inlet and an outlet.
19. The refrigeration system of
claim 13
, wherein said expansion device is a capillary tube for adjusting the pressure of the refrigerant that passes therethrough.
20. A method of improving the efficiency of a refrigeration system, the refrigeration system having a compressor, a condenser, an expansion device, and,-an evaporator, and a diffuser arranged in succession and connected via conduit in a closed loop in order to circulate refrigerant through the closed loop, the method comprising the steps of.
a) separating a stream of refrigerant exiting the expansion device using vortex generator into a vapor component and a liquid component;
b) directing the liquid component to the evaporator;
c) directing the high velocity vapor component exiting from vortex generator to a means for slowing the velocity of refrigerant flow and for increasing the pressure on the refrigerant before the refrigerant enters the compressor, thereby decreasing the pressure differential across the compressor and the compression ratio in compressor.
21. The method of
claim 20
wherein said means for slowing refrigerant flow comprises the step of directing the refrigerant into a diffuser.
22. The method of
claim 20
wherein said means for slowing refrigerant flow is a sudden expansion of the conduit.
23. The method of claims20 further comprising the step of directing a portion of the recirculated refrigerant from the evaportor through a central delivery of the vortex generator directly into the vortex flow.
US09/760,2322000-03-032001-01-12Method and apparatus for increasing the efficiency of a refrigeration systemExpired - Fee RelatedUS6389818B2 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US09/760,232US6389818B2 (en)2000-03-032001-01-12Method and apparatus for increasing the efficiency of a refrigeration system
US09/802,763US6430937B2 (en)2000-03-032001-03-08Vortex generator to recover performance loss of a refrigeration system

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
US09/517,922US6250086B1 (en)2000-03-032000-03-03High efficiency refrigeration system
US09/535,126US6425249B1 (en)2000-03-032000-03-24High efficiency refrigeration system
US09/737,016US6494935B2 (en)2000-12-142000-12-14Vortex generator
US09/760,232US6389818B2 (en)2000-03-032001-01-12Method and apparatus for increasing the efficiency of a refrigeration system

Related Parent Applications (3)

Application NumberTitlePriority DateFiling Date
US09/517,922Continuation-In-PartUS6250086B1 (en)2000-03-032000-03-03High efficiency refrigeration system
US09/535,126Continuation-In-PartUS6425249B1 (en)2000-03-032000-03-24High efficiency refrigeration system
US09/737,016Continuation-In-PartUS6494935B2 (en)2000-03-032000-12-14Vortex generator

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US09/802,763Continuation-In-PartUS6430937B2 (en)2000-03-032001-03-08Vortex generator to recover performance loss of a refrigeration system

Publications (2)

Publication NumberPublication Date
US20010020366A1true US20010020366A1 (en)2001-09-13
US6389818B2 US6389818B2 (en)2002-05-21

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US09/760,232Expired - Fee RelatedUS6389818B2 (en)2000-03-032001-01-12Method and apparatus for increasing the efficiency of a refrigeration system

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US (1)US6389818B2 (en)

Cited By (14)

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US20060150643A1 (en)*2005-01-132006-07-13Shaun SullivanRefrigerator
CN100419403C (en)*2005-07-202008-09-17中国计量学院 Equivalent test method for compressor cooling capacity with the same compression ratio and flow requirements as the national standard
US20080302108A1 (en)*2007-06-062008-12-11Sullivan Shaun EEnergy transfer apparatus and methods
US20090200005A1 (en)*2008-02-092009-08-13Sullivan Shaun EEnergy transfer tube apparatus, systems, and methods
WO2009123674A3 (en)*2008-02-282010-01-28Greencentaire, LlcCooling unit
US20130167557A1 (en)*2012-01-042013-07-04General Electric CompanyPower plant
US20150033791A1 (en)*2012-03-072015-02-05Denso CorporationEjector
WO2019136702A1 (en)*2018-01-122019-07-18Schneider Electric It CorporationSystem for head pressure control
CN111852602A (en)*2020-06-222020-10-30西安交通大学 A transcritical carbon dioxide power generation system based on vortex tube
US11397030B2 (en)2020-07-102022-07-26Energy Recovery, Inc.Low energy consumption refrigeration system with a rotary pressure exchanger replacing the bulk flow compressor and the high pressure expansion valve
US11421918B2 (en)*2020-07-102022-08-23Energy Recovery, Inc.Refrigeration system with high speed rotary pressure exchanger
US20220397317A1 (en)2021-06-092022-12-15Energy Recovery, Inc.Refrigeration and heat pump systems with pressure exchangers
WO2023073020A1 (en)*2021-10-262023-05-04Bitzer Kühlmaschinenbau GmbhSeparator device, compressor with a separator device, and refrigeration system with a separator device
US12209778B2 (en)2021-06-092025-01-28Energy Recovery, Inc.Refrigeration and heat pump systems with pressure exchangers

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* Cited by examiner, † Cited by third party
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US20060150643A1 (en)*2005-01-132006-07-13Shaun SullivanRefrigerator
US7565808B2 (en)2005-01-132009-07-28Greencentaire, LlcRefrigerator
CN100419403C (en)*2005-07-202008-09-17中国计量学院 Equivalent test method for compressor cooling capacity with the same compression ratio and flow requirements as the national standard
US20080302108A1 (en)*2007-06-062008-12-11Sullivan Shaun EEnergy transfer apparatus and methods
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US7726135B2 (en)2007-06-062010-06-01Greencentaire, LlcEnergy transfer apparatus and methods
US20090200005A1 (en)*2008-02-092009-08-13Sullivan Shaun EEnergy transfer tube apparatus, systems, and methods
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US20150033791A1 (en)*2012-03-072015-02-05Denso CorporationEjector
US9857102B2 (en)*2012-03-072018-01-02Denso CorporationEjector
US11268739B2 (en)2018-01-122022-03-08Schneider Electric It CorporationSystem for head pressure control
WO2019136702A1 (en)*2018-01-122019-07-18Schneider Electric It CorporationSystem for head pressure control
CN111852602A (en)*2020-06-222020-10-30西安交通大学 A transcritical carbon dioxide power generation system based on vortex tube
US11982481B2 (en)2020-07-102024-05-14Energy Recovery, Inc.Refrigeration system with high speed rotary pressure exchanger
US11397030B2 (en)2020-07-102022-07-26Energy Recovery, Inc.Low energy consumption refrigeration system with a rotary pressure exchanger replacing the bulk flow compressor and the high pressure expansion valve
US11421918B2 (en)*2020-07-102022-08-23Energy Recovery, Inc.Refrigeration system with high speed rotary pressure exchanger
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US12181195B2 (en)2020-07-102024-12-31Energy RecoveryLow energy consumption refrigeration system with a rotary pressure exchanger replacing the bulk flow compressor and the high pressure expansion system
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US12209778B2 (en)2021-06-092025-01-28Energy Recovery, Inc.Refrigeration and heat pump systems with pressure exchangers
US20220397317A1 (en)2021-06-092022-12-15Energy Recovery, Inc.Refrigeration and heat pump systems with pressure exchangers
US12392528B2 (en)2021-06-092025-08-19Energy Recovery, Inc.Control of refrigeration and heat pump systems that include pressure exchangers
WO2023073020A1 (en)*2021-10-262023-05-04Bitzer Kühlmaschinenbau GmbhSeparator device, compressor with a separator device, and refrigeration system with a separator device

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Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:VORTEX AIRCON, INC., NEW JERSEY

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:CHO, YOUNG I.;BAI, CHEOLHO;REEL/FRAME:011765/0702

Effective date:20010320

ASAssignment

Owner name:VAI HOLDINGS, LLC, NEW JERSEY

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:VORTEX AIRCON;REEL/FRAME:012569/0028

Effective date:20011226

FPAYFee payment

Year of fee payment:4

REMIMaintenance fee reminder mailed
LAPSLapse for failure to pay maintenance fees
STCHInformation on status: patent discontinuation

Free format text:PATENT EXPIRED DUE TO NONPAYMENT OF MAINTENANCE FEES UNDER 37 CFR 1.362

FPLapsed due to failure to pay maintenance fee

Effective date:20100521


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