Claims
- 1. A condenser in a refrigerant cycle system, the condenser comprising:a first heat exchange unit for condensing a refrigerant discharged from a compressor by radiating heat of the refrigerant; a second heat exchange unit provided downstream from the first heat exchange unit, wherein the refrigerant that passes through the first heat exchange unit flows into the second heat exchange unit, wherein each of the first heat exchange unit and the second heat exchange unit includes a plurality of tubes, constituting a refrigerant flow path, disposed in parallel with each other; first and second header tanks between which the first heat exchange unit and the second heat exchange unit are located, wherein one end of each of the plurality of the tubes is fluidly connected with the first header tanks while the other end of each of the plurality of the tubes is fluidly connected with the second header tanks; and a gas-liquid separator, integrated with the first header tank, for separating the refrigerant into a gas refrigerant and a liquid refrigerant to accumulate the liquid refrigerant, wherein a refrigerant inlet is provided in the first header tank for accepting the refrigerant discharged from the compressor, wherein a gas refrigerant bypass path is provided for leading, into the gas-liquid separator, a part of the refrigerant discharged from the compressor through the refrigerant inlet, wherein a gas return communication path is provided for leading the gas refrigerant in the gas-liquid separator to an inlet of the second heat exchange unit, wherein a primary refrigerant flow path is included in the first heat exchange unit for leading the refrigerant to the second heat exchange unit, and wherein a branch refrigerant flow path is included in the first heat exchange unit and independently separated from the primary refrigerant flow path for leading the refrigerant to the gas-liquid separator.
- 2. A condenser in a refrigerant cycle system according to claim 1,wherein the branch refrigerant flow path is separated from the primary refrigerant flow path due to a partition plate disposed inside the first header tank.
- 3. A condenser in a refrigerant cycle system according to claim 1,wherein the gas-liquid separator includes a sub communication path for providing a refrigerant flow path that fluidly intermediates between the first heat exchange unit and the second heat exchange unit.
- 4. A refrigerant cycle system comprising:a first heat exchange unit for condensing a refrigerant discharged from a compressor by radiating heat of the refrigerant; a second heat exchange unit provided downstream from the first heat exchange unit, wherein the refrigerant that passes through the first heat exchange unit flows into the second heat exchange unit; and a gas-liquid separator, into which a part of the refrigerant discharged from the compressor and a part of the refrigerant sent out from the first exchange unit flow, for separating the flowing refrigerants into a gas refrigerant and a liquid refrigerant and accumulating the liquid refrigerant, wherein: the gas refrigerant in the gas-liquid separator is lead to an inlet of the second heat exchange unit through a first flow path, the liquid refrigerant in the gas-liquid separator is led to the inlet of the second heat exchanging unit through a second flow path which is separated from the first flow path. a primary refrigerant flow path is included in the first heat exchange unit for leading the refrigerant to the second heat exchange unit, and a branch refrigerant flow path is included in the first heat exchange unit and independently separated from the primary refrigerant flow path for leading the refrigerant to the gas-liquid separator.
- 5. A refrigerant cycle system comprising:a first heat exchange unit for condensing a refrigerant discharged from a compressor by radiating heat of the refrigerant; a second heat exchange unit provided downstream from the first heat exchange unit, wherein the refrigerant that passes through the first heat exchange unit flows into the second heat exchange unit; and a gas-liquid separator, into which a part of the refrigerant discharged from the compressor and a part of the refrigerant sent out from the first exchange unit flow, for separating the flowing refrigerants into a gas refrigerant and a liquid refrigerant and accumulating the liquid refrigerant, wherein: the gas refrigerant in the gas-liquid separator is lead to an inlet of the second heat exchange unit, a primary refrigerant flow path is included in the first heat exchange unit for leading the refrigerant to the second heat exchange unit, a branch refrigerant flow path is included in the first heat exchange unit and independently separated from the primary refrigerant flow path for leading the refrigerant to the gas-liquid separator, each of the first heat exchange unit and the second heat exchange unit includes a plurality of tubes, constituting a refrigerant flow path, disposed in parallel with each other, one end of two ends of each of the plurality of the tubes is fluidly connected with the first header tank of two header tanks while the other end of the two ends of each of the plurality of the tubes is fluidly connected with a second header tank of the two header tanks, and the branch refrigerant flow path is separated from the primary refrigerant flow path due to a partition plate disposed inside one of the two header tanks.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-081275 |
Mar 2002 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
This application is based on and incorporates herein by reference Japanese Patent Application No. filed on Mar. 22, 2002.
US Referenced Citations (6)
Number |
Name |
Date |
Kind |
4580415 |
Sakuma et al. |
Apr 1986 |
A |
5228315 |
Nagasaka et al. |
Jul 1993 |
A |
5651265 |
Grenier |
Jul 1997 |
A |
6032473 |
Morimoto et al. |
Mar 2000 |
A |
6267173 |
Hu et al. |
Jul 2001 |
B1 |
6427480 |
Ito et al. |
Aug 2002 |
B1 |
Foreign Referenced Citations (16)
Number |
Date |
Country |
0 960 755 |
Dec 1999 |
EP |
2750761 |
Jan 1998 |
FR |
2757610 |
Jun 1998 |
FR |
A-S58-987679 |
Jun 1983 |
JP |
A-60-126545 |
Jul 1985 |
JP |
A-61-27466 |
Feb 1986 |
JP |
A-3-164661 |
Jul 1991 |
JP |
A-H04-92714 |
Mar 1992 |
JP |
A-H05-66071 |
Mar 1993 |
JP |
A-H06-50615 |
Feb 1994 |
JP |
A-H07-280362 |
Oct 1995 |
JP |
A-H09-60986 |
Mar 1997 |
JP |
A-H10-185336 |
Jul 1998 |
JP |
A-H11-190561 |
Jul 1999 |
JP |
A-2000-213826 |
Aug 2000 |
JP |
WO 9849502 |
Nov 1998 |
WO |