Flow guiding device for Air Conditioner, Method for Heat Dissipation Air Conditioner, and Supplementary Device
Abstract
The present invention provides a flow guiding device for an air conditioner, a supplementary device for enhancing and accelerating heat dissipation of flow guiding device and a method for heat dissipation thereof. The flow guiding device which is disposed between a condenser fan and a condenser coil is configured on a bottom surface of the air conditioner and obliquely configured to the condenser fan. The flow guiding device includes a flake body and a plurality of flow guiding members, the flake body has holes disposed through the flake body, and flow guiding protrusions are disposed on two opposite sides of the flake body, and a space between two of the plurality of flow guiding protrusions is a concave. A plurality of flow guiding member disposed on the concaves, and parts of the plurality of holes on the two opposite sides connected to the plurality of flow guiding member.
Claims
exact text as granted — not AI-modifiedI claim:
1 . A flow guiding device for an air conditioner, the air conditioner comprising a condenser fan and a condenser coil, an airflow which is defined as a direction of the airflow is generated by operating the condenser fan and faces towards the condenser coil; the flow guiding device configured on a bottom surface of the air conditioner and obliquely configured to the condenser fan; wherein the flow guiding device comprises:
a flake body having a plurality of holes disposed through the flake body and a plurality of flow guiding protrusions; wherein the plurality of holes are disposed through two opposite sides of the flake body, the plurality of flow guiding protrusions which have spaces among them are disposed on two opposite sides of the flake body, and a space between two of the plurality of flow guiding protrusions is defined as a concave; a plurality of flow guiding member disposed on the plurality of concaves, and parts of the plurality of holes on the two opposite sides connected to the plurality of flow guiding member; wherein the flow guiding device is obliquely configured between the condenser fan and the condenser coil, one side of the two opposite sides faces towards the condenser fan is a windward side, and the windward side and the bottom surface form an angle; wherein when the airflow is formed by operating the condenser fan and parts of the airflow moves towards the windward side, parts of the airflow passes through the plurality of flow guiding protrusions, and water vapor on the bottom surface is driven along the direction of the airflow by the plurality of flow guiding member to move to the condenser coil.
2 . The flow guiding device according to claim 1 , wherein each of the plurality of flow guiding member is a solid cylinder, or each of the plurality of flow guiding member is a hollow cylinder, or parts of the plurality of flow guiding member are solid cylinders, and parts of the plurality of flow guiding member are hollow cylinders; wherein when each of the plurality of flow guiding member that is the hollow cylinders is combined to each of the plurality of hole, the hollow cylinder has a top side and a bottom side for combining to each of the plurality of hole, and the top side is a plane or an irregular shape.
3 . The flow guiding device according to claim 1 , wherein each of the plurality of flow guiding member disposed on each of the plurality of concave further has gas hole through itself, and a central axis of each of the plurality of flow guiding member is perpendicular to an axial of the gas hole.
4 . The flow guiding device according to claim 1 , wherein each of the plurality of flow guiding protrusion is a plane or a protrusion, when each of the plurality of flow guiding protrusion is a plane, the plane and the flake body form a tilt angle; and when each of the plurality of flow guiding protrusion is a protrusion, the protrusion protrudes from one of the two sides and has an arcuate surface.
5 . The flow guiding device according to claim 1 , wherein the flow guiding device has a top at a level lower than an axis of the condenser fan.
6 . A method for dissipating waste heat from an air conditioner, comprising a flow guiding device according to claim 1 configured in air conditioner, wherein the flow guiding device is configured between the condenser fan and the condenser coil, the flow guiding device configured on a bottom surface of the air conditioner and obliquely configured to the condenser fan; wherein when the condenser fan operates to create wind, parts of the airflow facing towards the windward side pass through the plurality of flow guiding protrusions of the gas guiding device, and the flow guiding member drives water on an inner bottom surface of the air conditioner to move to the condenser coil.
7 . The method for reducing temperature of waste heat discharged from an air conditioner according to claim 6 , wherein each of the plurality of flow guiding member is a solid cylinder, or each of the plurality of flow guiding member is a hollow cylinder, or parts of the plurality of flow guiding member are solid cylinders, and parts of the plurality of flow guiding member are hollow cylinders, when each of the plurality of flow guiding member to be the hollow cylinders is combined to each of the plurality of hole, the hollow cylinder has a top side and a bottom side for combining to each of the plurality of hole, and the top side is a plane or an irregular shape.
8 . The method for reducing temperature of waste heat discharged from an air conditioner according to claim 6 , wherein each of the plurality of flow guiding member disposed on each of the plurality of concave further has a gas hole through itself, and a central axis of each of the plurality of flow guiding member is perpendicular to an axial of the gas hole.
9 . The method for reducing temperature of waste heat discharged from an air conditioner according to claim 6 , wherein the flow guiding protrusion is a plane or a protrusion, when each of the plurality of flow guiding protrusion is the plane, the plane and the flake body form a tilt angle; and when each of the plurality of flow guiding protrusion is the protrusion, the protrusion protrudes from one of the two sides and has an arcuate surface.
10 . The method for reducing temperature of waste heat discharged from an air conditioner according to claim 6 , wherein the flow guiding device has a top at a level lower than an axis of the condenser fan.
11 . An air conditioner, comprising a housing, a condenser fan, a condenser coil, an evaporator fan, an evaporator coil, a compressor, an expansion valve, and a controller; wherein the condenser fan, the condenser coil, the evaporator fan, the evaporator coil, the compressor and the expansion valve are configured in the housing, the controller is electrically connected to the condenser fan, the evaporator fan and the compressor; one end of the condenser coil is connected to the compressor, and another end is connected to the expansion valve; one end of the evaporator fan is connected to the compressor, and another end is connected to the expansion valve; the condenser fan faces the condenser coil, and the evaporator fan faces the evaporator coil, characterized in that: a flow guiding device according to claim 1 is configured between the condenser fan and the condenser coil, and the flow guiding device configured on a bottom surface of the air conditioner and obliquely configured to the condenser fan.
12 . The air conditioner according to claim 11 , wherein the flow guiding device has a top at a level lower than an axis of the condenser fan.
13 . A supplementary device for enhancing and accelerating heat dissipation of gas guiding device, the supplementary device configured on the top of the gas guiding device according to claim 1 , wherein the supplementary device comprising:
a flake body; and a plurality of air deflectors are equidistantly disposed on one of the surfaces of the flake body; wherein the supplementary device is used for enhancing and accelerating water driven by the flow guiding device along a direction of wind to move to the condenser coil.
14 . The supplementary device for enhancing and accelerating heat dissipation of flow guiding device according to claim 13 , wherein each of the plurality of the air deflectors are a semi-cylindrical, a rod-like, a hollow tubular, a solid columnar or a wavy shape.
15 . The supplementary device for enhancing and accelerating heat dissipation of flow guiding device according to claim 13 , wherein the flake body is a plane or a curved surface.Join the waitlist — get patent alerts
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