Embodiments of the present invention relate to a heat exchange assembly and an air conditioning system having same.
In heat exchangers such as microchannel heat exchangers, if the lower edges of a plurality of heat exchanger cores are inconsistent, condensed water dripping toward the water receiving tray is likely blown out of the heat exchanger core with a higher lower edge due to the distance between it and the water receiving tray. Consequently, peripheral components rust away or condensed water is blown onto an end user, which provides a poor user experience.
An objective of embodiments of the present invention is to provide a heat exchange assembly and an air conditioning system having same, thereby reducing the risk of condensed water being blown out of the heat exchanger core with a higher lower edge, for example.
Embodiments of the present invention provide a heat exchange assembly, which comprises: a heat exchanger comprising a first heat exchanger core, wherein the first heat exchanger core comprises a plurality of first heat exchange tubes; and a second heat exchanger core located on one side of the first heat exchanger core in a thickness direction of the first heat exchanger core, wherein the second heat exchanger core comprises a plurality of second heat exchange tubes, and a lower edge of the second heat exchanger core is higher than a lower edge of the first heat exchanger core; and a water guide device comprising a first water guide device, wherein at least part of the first water guide device is arranged below the second heat exchanger core and used for receiving and guiding condensed water from the second heat exchanger core.
According to an embodiment of the present invention, the first water guide device comprises a first water guide channel.
According to an embodiment of the present invention, the bottom of the first water guide channel is inclined relative to the horizontal plane, so that a first end of the bottom of the first water guide channel is higher than a second end thereof.
According to an embodiment of the present invention, the bottom of the first water guide channel is inclined relative to the horizontal plane, so that the middle of the bottom of the first water guide channel located between the first and second ends is higher than the first and second ends.
According to an embodiment of the present invention, the heat exchanger further comprises a manifold, the manifold being connected to the plurality of second heat exchange tubes of the second heat exchanger core below the second heat exchanger core, wherein the manifold also functions as the first water guide device, and the manifold is inclined relative to the horizontal plane, so that a first end of the manifold is higher than a second end thereof.
According to an embodiment of the present invention, the heat exchanger is inclined so that the manifold is inclined relative to the horizontal plane; alternatively, the plurality of first heat exchange tubes of the first heat exchanger core are vertically arranged, and the plurality of second heat exchange tubes of the second heat exchanger core are inclined so that the manifold is inclined relative to the horizontal plane.
According to an embodiment of the present invention, the heat exchanger further comprises a manifold, the manifold being connected to the plurality of second heat exchange tubes of the second heat exchanger core below the second heat exchanger core, wherein the manifold also functions as the first water guide device, and at least part of the outer surface of the manifold has a coating, the coating having at least one of different degrees of hydrophilicity in an axial direction of the manifold and different degrees of hydrophobicity in an axial direction of the manifold, so that the condensed water received from the second heat exchanger core flows along the manifold to at least one of a first end and a second end of the manifold.
According to an embodiment of the present invention, the water guide device further comprises a second water guide device located near an end portion of the first water guide device in a lateral direction perpendicular to a thickness direction and a vertical direction of the first heat exchanger core, and used for receiving and guiding condensed water received and guided by the first water guide device from the end portion of the first water guide device.
According to an embodiment of the present invention, the second water guide device comprises a second water guide channel or water guide tube.
According to an embodiment of the present invention, the second water guide device comprises a water guide tube vertically or obliquely arranged.
According to an embodiment of the present invention, the heat exchanger further comprises a manifold, the manifold being connected to the plurality of second heat exchange tubes of the second heat exchanger core below the second heat exchanger core, and the first water guide channel is integrated with the manifold.
According to an embodiment of the present invention, the heat exchanger further comprises a manifold, the manifold being connected to the plurality of second heat exchange tubes of the second heat exchanger core below the second heat exchanger core, wherein the manifold also functions as the first water guide device, and the plane where the first heat exchanger core is located is inclined relative to the horizontal plane.
According to an embodiment of the present invention, the plane where the second heat exchanger core is located is inclined relative to the horizontal plane.
According to an embodiment of the present invention, an angle between the plane where the first heat exchanger core is located and the horizontal plane is equal to an angle between the plane where the second heat exchanger core is located and the horizontal plane.
According to an embodiment of the present invention, the first water guide device comprises a water guide plate, the water guide plate comprising a first side away from the first heat exchanger core in a thickness direction of the first heat exchanger core and a second side close to the first heat exchanger core in a thickness direction of the first heat exchanger core, the water guide plate being inclined relative to the horizontal plane, so that the first side of the water guide plate is higher than the second side, the water guide plate being configured to guide condensed water received from the second heat exchanger core to the first heat exchanger core.
According to an embodiment of the present invention, the heat exchanger further comprises a manifold, the manifold being connected to the plurality of second heat exchange tubes of the second heat exchanger core below the second heat exchanger core, wherein the manifold also functions as the first water guide device, and part of the plurality of second heat exchange tubes near the manifold is bent toward the first heat exchanger core, so that the manifold comes into contact with the first heat exchanger core.
According to an embodiment of the present invention, the heat exchanger further comprises a connecting portion, wherein the plurality of first heat exchange tubes of the first heat exchanger core are connected to the plurality of second heat exchange tubes of the second heat exchanger core through the connecting portion.
According to an embodiment of the present invention, the water guide device further comprises a water receiving tray, wherein the second water guide device guides received condensed water into the water receiving tray.
According to an embodiment of the present invention, the size of the first heat exchanger core in a vertical direction is larger than the size of the second heat exchanger core in a vertical direction.
An embodiment of the present invention further provides an air conditioning system comprising: a heat exchange assembly as described above.
Using a heat exchange assembly and an air conditioning system having same according to embodiments of the present invention, the risk of condensed water being blown out of the heat exchanger core having a higher lower edge may be reduced, for example.
The present invention will be described in greater detail below in conjunction with the drawings and specific embodiments.
An air conditioning system according to embodiments of the present invention comprises a heat exchanger. Specifically, the air conditioning system according to embodiments of the present invention comprises a compressor, a heat exchanger serving as an evaporator, a heat exchanger serving as a condenser, and an expansion valve, etc.
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In an embodiment of the present invention, the manifold 7 also functions as the first water guide device 31, and at least part of the outer surface 73 of the manifold 7 has a coating, the coating having at least one of different degrees of hydrophilicity in an axial direction of the manifold 7 and different degrees of hydrophobicity in an axial direction of the manifold 7, so that condensed water received from the second heat exchanger core 12 flows along the manifold 7 to at least one of the first end 71 and the second end 72 of the manifold 7.
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In an embodiment of the present invention, the connecting portion 5 may comprise a plurality of connecting tubes, wherein the plurality of first heat exchange tubes 81 of the first heat exchanger core 11 are connected to the plurality of second heat exchange tubes 82 of the second heat exchanger core 12 respectively through the plurality of connecting tubes. The plurality of connecting tubes may be integrated with the plurality of first heat exchange tubes 81 of the first heat exchanger core 11 and the plurality of second heat exchange tubes 82 of the second heat exchanger core 12, wherein, for example, the heat exchanger 10 may be formed by bending a flat plate heat exchanger. The first heat exchanger core 11 further comprises fins arranged alternately with the plurality of first heat exchange tubes 81. The second heat exchanger core 12 further comprises fins arranged alternately with the plurality of second heat exchange tubes 82. In addition, the size of the first heat exchanger core 11 in a vertical direction may be larger than the size of the second heat exchanger core 12 in a vertical direction.
Although the first water guide device 31 and the second water guide device 32 have been described with reference to the drawings, a water guide device may have any suitable shape and structure, rather than being limited to the water guide devices shown in the drawings.
The use of a water guide device, heat exchange assembly, and air conditioning system according to embodiments of the present invention can reduce the risk of condensed water being blown out of the heat exchanger core with a higher lower edge, thereby ensuring that the condensed water is completely collected into a water receiving tray.
Although the above embodiments have been described, certain features in the above embodiments can be combined to form new embodiments.
While the present disclosure has been illustrated and described with respect to a particular embodiment thereof, it should be appreciated by those of ordinary skill in the art that various modifications to this disclosure may be made without departing from the spirit and scope of the present disclosure.
Number | Date | Country | Kind |
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202122963037.2 | Nov 2021 | CN | national |
This application is a National Stage application of International Patent Application No. PCT/CN2022/132757, filed on Nov. 18, 2022, which claims priority to Chinese Patent Application No. 202122963037.2, filed on Nov. 29, 2021, each of which is hereby incorporated by reference in its entirety.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2022/132757 | 11/18/2022 | WO |