The present application claims priority under 35 U.S.C. §119 to Japanese Patent Application No. 2007-192790 filed on Jul. 25, 2007. The content of the application is incorporated herein by reference in its entirety.
1. Field of the Invention
The present invention relates to an air conditioner having an electrical equipment box on the outside surface of an unit body set up in a ceiling space of a building or the like.
2. Description of the Related Art
There is known an air conditioner in which an electrical equipment box is provided on the outer surface of a unit body which is set up in a ceiling space of a building and contains a heat exchanger and an air blowing fan therein (for example, see Japanese Patent No. 2,562,675). In this type of air conditioner, the unit body is set up in the ceiling space, and thus air heat-exchanged by the heat exchanger in the unit body can be led to a proper position in a room through an air blow-out duct and blown out into the room, so that air-conditioning operation can be implemented without spoiling the beautify of the room.
A control board for controlling the operation of an electrical expansion valve connected to the air blowing fan and the heat exchanger is mounted in the electrical equipment box. This control board generates heat in connection with the driving operation of the air blowing fan and the electrical expansion valve, and thus the temperature in the electrical equipment box increases. Therefore, it is necessary to cool the electrical equipment box.
However, the electrical equipment box is disposed in the ceiling space together with the unit body, and thus even when the electrical equipment box is provided with an opening intercommunicating with the ceiling space, it is impossible to sufficiently cool the electrical equipment box. In addition, the air in the ceiling space generally contains lots of dust, and thus a filter for removing dust is required to be provided at the opening of the electrical equipment box, so that the construction of the electrical equipment box is cumbersome.
Therefore, an object of the present invention has been implemented in view of the foregoing situation, and has an object to provide an air conditioner in which an electrical equipment box mounted on the outer surface of an unit body set up in a ceiling space of a building can be simply cooled.
In order to attain the above object, according to the present invention, in an air conditioner having an electrical equipment box mounted on the outer surface of a unit body in which an air blowing fan and an indoor heat exchanger are mounted, the electrical equipment box has an accommodating portion in which a control board is mounted, and a projecting portion that is connected to the accommodating portion so that the inside of the projecting portion intercommunicates with the inside of the accommodating portion and has an air inlet port and an air discharge port, and the unit body has an opening formed in the outer surface thereof through which the projecting portion of the electrical equipment box is inserted, the projecting portion being secured to the outer side surface of the unit body under the state that the projecting portion projects through the opening into an air flowing passage of the air blowing fan.
In the above air conditioner, the projecting portion may be provided in proximity to an air suction port of the air blowing fan.
In the above air conditioner, the air discharge port may be formed in a surface of the projecting portion that faces the air suction port of the air blowing fan.
In the above air conditioner, the air inlet port may be provided to a side surface of the projecting portion.
According to the present invention, air introduced to the projecting portion by the air flow based on the air blowing fan flows in the projecting portion and the accommodating unit which intercommunicates with each other, and the electrical parts containing the control board, etc. in the accommodating portion are efficiently cooled by the air. Accordingly, the electrical equipment box mounted on the outer surface of the unit body set in the ceiling space of a building can be simply cooled.
An embodiment according to the present invention will be described hereunder with reference to the accompanying drawings.
The air conditioner 1 has a box-shaped unit body 5 formed of a steel sheet which is suspended through bolts in a ceiling space 3 of a building.
As shown in
The inside of the unit body 5 is divided into a machine chamber 9 at the left side of
As shown in
Furthermore, as shown in
In this embodiment, as shown in
As shown in
The box-shaped projecting portion 48 connects to the accommodating portion 45 to be near to the heat sink 44 side, and the insides of the projecting portion 48 and the inside of the heat sink 44 intercommunicate with each other through the opening 49. In addition, it has an air inlet port (slit) 46 and an air discharge port (slit) 47. The projecting portion 48 is homothetic to the accommodating portion 45. The homothetic ratio of the projecting portion 48 is equal to about one third in size of the accommodating portion 45, the volume thereof is remarkably smaller than the accommodating portion 45, the inside thereof is hollow and the hollow portion serves as an air flowing passage.
As shown in
As shown in
In this construction, air introduced from the air inlet port 46 cools the back surface of the control board 42, blown out from the discharge port 47 formed in the side plate 48B distant from the air inlet port 46 in the air suction axis direction of the air blowing fan 29B, and then sucked into the air blowing fan 29B.
Next, the operation will be described.
In this embodiment, when the air blowing fans 29A, 29B are driven, air is sucked from the air suction port 30 to the unit body 5. This air is heat-exchanged in the indoor heat exchanger 21 and blown out from the air blow-out port 40 of the unit body 5, and the air-conditioned air is blown into the room through an air blow-out port of the room which is connected to the air blown-out port 40 through the duct.
In this process, the projecting portion 48 projecting from the accommodating portion 45 is located in the air suction passage of the air blowing fan 29B, and thus a part of the sucked air is introduced from the air inlet port 46 of the projecting portion 48 into the projecting portion 48, and the air introduced into the projecting portion 48 induces turbulent flow while passing through the slit 46.
The back surface of the control board 42 is exposed in the accommodating portion 45, and thus it is heat-exchanged by forced convection when the air passes over the back surface of the control board, so that the temperature of the air is increased. The temperature-increased air is fed from the slit 47 of the side plate 48B of the projecting portion 48 to the outside of the projecting portion 48, and then led to the outer peripheral portion of the air suction port 60 of the air blowing fan 29B by air suction pressure.
In this construction, the air introduced from the air inlet port 46 is blown out from the discharge port 47 which is far away from the air inlet port 46, and thus the air is broadly circulated in the projecting portion 48 and effectively cools the back surface of the control board 42. Accordingly, according to this embodiment, the surface of the board is exposed to forced convection at all times by indoor air whose temperature is lower than air in the space under the roof in which the unit body 5 is set, so that the electrical equipment box 41 can be more simply cooled as compared with the conventional air conditioner. Furthermore, the amount of air passing through the inside of the electrical equipment box 41 is increased, and the increase of the temperature of the electrical equipment box 41 can be suppressed. As compared with the temperature of the electrical equipment box 41 when no slit is provided in the projecting portion 48, experiment data indicated the maximum temperature difference of about 4020 in some sites.
The present invention is not limited to the electrical equipment box cooling mechanism used in the above embodiment, and various modifications may be made without departing from the subject matter of the present invention. For example, in this embodiment, the main body of the projecting portion is designed in rectangular parallelepiped, however, the present invention is not limited to this shape. Furthermore, vertically cut-out slits are used as the opening portion, however, the main body of the projecting portion may be formed in a cylindrical shape and the slits may be designed in a mesh structure. Furthermore, the numbers of slits formed in the air inlet port and the air outlet port are not limited to those numbers illustrated in the figures.
Number | Date | Country | Kind |
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2007-192790 | Jul 2007 | JP | national |