The present invention relates to an air conditioner using flammable refrigerant.
An air conditioner using flammable refrigerant, to which a refrigerant gas sensor is attached to an indoor unit of the air conditioner, has been known.
[Patent Literature 1] Japanese Unexamined Patent Publication No. 2012-13348
The refrigerant gas sensor is typically attached so that an opening for introducing leaked refrigerant gas into the inside faces upward. With this arrangement, however, a small amount of a different gas such as propane and pesticide, which is sucked from the outside of the air conditioner, may be erroneously recognized as refrigerant gas.
An object of the present invention is to provide an air conditioner in which a different gas sucked from the outside of the air conditioner is not erroneously recognized as refrigerant gas.
According to the first aspect of the invention, an air conditioner uses flammable refrigerant and includes a refrigerant gas sensor inside the air conditioner, the refrigerant gas sensor including: a detecting element configured to detect leakage of refrigerant gas; and a casing member provided to surround the detecting element, the casing member having a first opening through which the refrigerant gas is introduced into an inside of the casing member, and the first opening being below the detecting element.
In this air conditioner, because the refrigerant gas sensor detects gas introduced into the casing member from below the casing member, it is extremely unlikely that the refrigerant gas sensor detects gas when an amount of the gas is small as in cases where the gas is propane or pesticide sucked from the outside of the air conditioner. It is therefore possible to prevent a different gas sucked from the outside of the air conditioner from being erroneously recognized as refrigerant gas.
According to the second aspect of the invention, the air conditioner of the first aspect is arranged such that the refrigerant gas sensor includes a printed board having a lower surface to which the detecting element is fixed, and the casing member is a cylindrical member fixed to the lower surface of the printed board.
In this air conditioner, because the casing member is provided to surround the detecting element and is a cylindrical member fixed to the lower surface of the printed board, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas and the prevention of the attachment of water or dust onto the detecting element.
According to the third aspect of the invention, the air conditioner of the first or second aspect further includes a surrounding member surrounding circumferences of the printed board and the casing member, a second opening being formed in a bottom surface of the surrounding member.
In this air conditioner, because the surrounding member is provided to cover the circumferences of the printed board and the casing member, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas, the prevention of the attachment of water or dust onto the printed board, and the prevention of the attachment of water or dust onto the detecting element.
According to the fourth aspect of the invention, the air conditioner of the first aspect is arranged such that the refrigerant gas sensor includes a printed board having a lower surface to which the detecting element is fixed, the casing member covering a circumference of the printed board.
In this air conditioner, because the casing member is provided to cover the circumference of the printed board, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas, and the prevention of the attachment of water or dust onto the printed board and the detecting element.
As described above, the present invention provides the following advantageous effects.
According to the first aspect of the invention, because the refrigerant gas sensor detects gas introduced into the casing member from below the casing member, it is extremely unlikely that the refrigerant gas sensor detects gas when an amount of the gas is small as in cases where the gas is propane or pesticide sucked from the outside of the air conditioner. It is therefore possible to prevent a different gas sucked from the outside of the air conditioner from being erroneously recognized as refrigerant gas.
According to the second aspect of the invention, because the casing member is provided to surround the detecting element and is a cylindrical member fixed to the lower surface of the printed board, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas and the prevention of the attachment of water or dust onto the detecting element.
According to the third aspect of the invention, because the surrounding member is provided to cover the circumferences of the printed board and the casing member, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas, the prevention of the attachment of water or dust onto the printed board, and the prevention of the attachment of water or dust onto the detecting element.
According to the fourth aspect of the invention, because the casing member is provided to cover the circumference of the printed board, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas, and the prevention of the attachment of water or dust onto the printed board and the detecting element.
The following will describe an air conditioner according to an embodiment of the present invention, with reference to drawings.
As shown in
In addition to the above, the air conditioner includes an outdoor fan 7 provided in the vicinity of the outdoor heat exchanger 3, and an indoor fan 8 provided in the vicinity of the indoor heat exchanger 5. The compressor 1, the four-pass switching valve 2, the outdoor heat exchanger 3, the electric expansion valve 4, the accumulator 6, and the outdoor fan 7 are provided in an outdoor unit 10, whereas the indoor heat exchanger 5 and the indoor fan 8 are provided in an indoor unit 20.
In this air conditioner, in a warming operation, as the four-pass switching valve 2 is switched to a position indicated by full lines and the compressor 1 is activated, high-pressure refrigerant discharged from the compressor 1 enters the indoor heat exchanger 5 through the four-pass switching valve 2. The refrigerant condensed in the indoor heat exchanger 5 is depressurized in the electric expansion valve 4 and then enters the outdoor heat exchanger 3. The refrigerant evaporated in the outdoor heat exchanger 3 returns to the sucking side of the compressor 1 via the four-pass switching valve 2 and the accumulator 6. In this way, a refrigerating cycle is formed such that the refrigerant circulates in the refrigerant circuit constituted by the compressor 1, the indoor heat exchanger 5, the electric expansion valve 4, the outdoor heat exchanger 3, and the accumulator 6. The room is warmed in such a way that room air is circulated by the indoor fan 8 through the indoor heat exchanger 5.
In the meanwhile, in a cooling operation (including a dehumidification operation), as the four-pass cooling operation 2 is switched to a position indicated by dotted lines and the compressor 1 is activated, high-pressure refrigerant discharged from the compressor 1 enters the outdoor heat exchanger 3 through the four-pass switching valve 2. The refrigerant condensed in the outdoor heat exchanger 3 is depressurized in the electric expansion valve 4 and then enters the indoor heat exchanger 5. The refrigerant evaporated in the indoor heat exchanger 5 returns to the sucking side of the compressor 1 via the four-pass switching valve 2 and the accumulator 6. In this way, a refrigerating cycle is formed such that the refrigerant circulates through the compressor 1, the outdoor heat exchanger 3, the electric expansion valve 4, the indoor heat exchanger 5, and the accumulator 6 in this order. The room is cooled in such a way that room air is circulated by the indoor fan 8 through the indoor heat exchanger 5.
This air conditioner uses flammable refrigerant. In the present invention, the term “flammable refrigerant” encompasses not only flammable refrigerant but also mildly flammable refrigerant. While the air conditioner uses R32 which is mildly flammable refrigerant, the air conditioner may use R290, for example. The air conditioner uses refrigerant having a higher specific gravity than air.
As shown in
An upper outlet port 22a is formed at an upper part of the front grill 22, whereas a lower outlet port 22b is formed at a lower part of the front grill 22. In an upper outlet path P1 communicating with the upper outlet port 22a, a vertical flap 24 is provided to change, in the up-down direction, the direction of the air flow blown out from the upper outlet port 22a. The vertical flap 24 is connected with a flap motor 24a (see
In the meanwhile, in a lower outlet path P2 communicating with the lower outlet port 22b, a shutter 30 configured to open and close the lower outlet port 22b and a horizontal flap 31 configured to change, in the left-right direction, the direction of the air flow blown out from the lower outlet port 22b are provided. The shutter 30 is connected with a shutter motor 30b. As shown in
An upper inlet port 23a is formed at an upper part of the front panel 23, a lower inlet port 23b is formed at a lower part of the front panel 23, and side inlet ports 23c (only the right one is shown in
As shown in
As the driving of the air conditioner starts, the fan motor 26 is driven so that the indoor fan 8 rotates. As the indoor fan 8 rotates, room air is sucked into the indoor unit 20 through the upper inlet port 23a, the lower inlet port 23b, and the side inlet ports 23c. The room air sucked into the indoor unit 20 is subjected to the heat exchange by the indoor heat exchanger 5, and is then blown out to the room through the upper outlet port 22a and the lower outlet port 22b. When the lower outlet port 22b is closed by the shutter 30, the room air sucked into the indoor unit 20 is blown out only through the upper outlet port 22a.
As shown in
As shown in
In this air conditioner, when refrigerant gas accidentally leaks out due to a reason such as the breakage of a refrigerant pipe in the indoor heat exchanger 5, the refrigerant gas having the higher specific gravity than air flows downward and reaches the drain pan 28. The refrigerant gas having reached the drain pan 28 flows from the left end 28L side toward the right end 28R side along the inclination of the drain pan 28. On this account, the refrigerant gas having reached the drain pan 28 tends to overflow the drain pan 28 on the refrigerant gas sensor 9 side in the longitudinal direction. In particular, the refrigerant gas tends to overflow through the notch 45 formed in the peripheral wall portion 42. The overflow refrigerant gas stagnates at the bottom of the indoor unit 20, and leaks out of the indoor unit 20.
The electronic component box 50 houses a controlling unit 51 therein for controlling components required for operations such as the cooling and warming operations of the air conditioner. As shown in
The refrigerant gas sensor 9 is a sensor configured to detect leaked refrigerant gas, and is provided to be flush with or lower than the drain pan 28 as shown in
As shown in
The casing member 62 has, at its lower end, a casing opening (first opening) 62a which is provided to introduce leaked refrigerant gas into the casing member 62. To the casing opening 62a, for example, a meshed filter is attached. As shown in
The phrase “the refrigerant gas sensor is provided to be flush with the drain pan” indicates that, as shown in
As shown in
In regard to this refrigerant gas sensor 9, to detach the refrigerant gas sensor 9 from the sensor mounting portion 70, to begin with, the screw (fixing member) S is taken out from the screw hole (sensor fixing portion) 71 in the forward direction (the direction in which the fixing member is taken out (see
In this indoor unit 20, as shown in
The communication pipes L1 and L2 are communication pipes (refrigerant pipes) connected with refrigerant pipes 5a and 5b extending from the indoor heat exchanger 5. The communication pipes L1 and L2 are provided below the indoor unit 20, behind the indoor unit 20, and on the outdoor unit 10 side. The two communication pipes L1 and L2 are covered with, for example, a single heat insulating material H. As such, the two communication pipes L1 and L2 are covered with the heat insulating material H. On this account, as compared to cases where the communication pipes L1 and L2 are naked, a hand or a screwdriver is less likely to make contact with the refrigerant gas sensor 9 and the screw S . It is therefore further difficult to detach the refrigerant gas sensor 9. The same effect is obtained when the two communication pipes are covered with different heat insulating materials, respectively.
As shown in
The phrase “the detaching direction of the refrigerant gas sensor (the direction in which the refrigerant gas sensor is detached)” indicates the direction in which the fixing member is detached, in cases where the refrigerant gas sensor is fixed to the sensor fixing portion via the fixing member. On this account, “the detaching direction of the refrigerant gas sensor (the direction in which the refrigerant gas sensor is detached)” indicates the direction in which the fixing member is detached, even if the refrigerant gas sensor drops down when the fixing member fixed to the sensor fixing portion is detached. In cases where the refrigerant gas sensor is slid in the detaching direction of the refrigerant gas sensor, the phrase “the detaching direction of the refrigerant gas sensor (the direction in which the refrigerant gas sensor is detached)” indicates the sliding direction. In cases where the refrigerant gas sensor is fixed to the sensor fixing portion via the fixing member and the refrigerant gas sensor is slid in the detaching direction of the refrigerant gas sensor as in the present embodiment, the phrase “the detaching direction of the refrigerant gas sensor (the direction in which the refrigerant gas sensor is detached)” indicates the direction in which the fixing member is taken out and the sliding direction of the refrigerant gas sensor. In the present embodiment, “the detaching direction of the refrigerant gas sensor (the direction in which the refrigerant gas sensor is detached)” is the forward direction because the direction in which fixing member is taken out and the sliding direction of the refrigerant gas sensor are both the forward direction. When the direction in which the fixing member is taken out is different from the sliding direction of the refrigerant gas sensor, these two directions are “the detaching directions of the refrigerant gas sensor (the direction in which the refrigerant gas sensor is detached)”.
Because the “regulating member” is configured to regulate the detachment of the refrigerant gas sensor, the regulating member is required to be provided at a position where the regulation of the detachment of the refrigerant gas sensor is possible. In the present embodiment, as shown in
The air conditioner of the present embodiment has the following characteristics. In this air conditioner, because the refrigerant gas sensor 9 detects gas introduced into the casing member 62 from below the casing member 62, it is extremely unlikely that the refrigerant gas sensor 9 detects gas when an amount of the gas is small as in cases where the gas is propane or pesticide sucked from the outside (e.g., the air-conditioned space) of the air conditioner. It is therefore possible to prevent a different gas sucked from the outside of the air conditioner from being erroneously recognized as refrigerant gas. Furthermore, because in this air conditioner the casing opening 62a faces downward, it is possible to prevent the deterioration of the detection accuracy of the refrigerant gas sensor 9 due to dust attached to the casing opening 62a. Furthermore, in this air conditioner, when water is splashed onto the refrigerant gas sensor 9, e.g., when a user or the like erroneously puts water into the indoor unit 20 or when condensed water spills over or is splashed from the drain pan 28, because the casing opening 62a faces downward, the water is less likely to attach to the detecting element 61, and hence malfunction of the refrigerant gas sensor 9 is avoided.
In addition to the above, in the air conditioner of the present embodiment, because the casing member 62 is provided to surround the detecting element 61 and is a cylindrical member fixed to the lower surface of the printed board 63, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas and the prevention of the attachment of water or dust onto the detecting element 61.
In addition to the above, in the air conditioner of the present embodiment, because the housing (surrounding member) 64 is provided to cover the circumferences of the printed board 63 and the casing member 62, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner as the refrigerant gas, the prevention of the attachment of water or dust onto the printed board 63, and the prevention of the attachment of water or dust onto the detecting element 61.
Thus, the embodiment of the present invention is described hereinabove. However, the specific structure of the present invention shall not be interpreted as to be limited to the above described embodiments. The scope of the present invention is defined not by the above embodiments but by claims set forth below, and shall encompass the equivalents in the meaning of the claims and every modification within the scope of the claims.
The following will describe an indoor unit of an air conditioner of a modification of the present invention with reference to
In this air conditioner, because the housing 64a (the “casing member” of the present invention) is provided to cover the circumference of the printed board 63, it is possible to ensure the prevention of the erroneous recognition of the different gas sucked from the outside of the air conditioner (e.g., the air-conditioned space) as the refrigerant gas, and the prevention of the attachment of water or dust onto the printed board 63 and the detecting element 61.
In the embodiment above, the casing opening (first opening) 62a for introducing refrigerant gas into the inside is horizontally provided below the detecting element 61, i.e., as shown in
While in the embodiment above the housing (surrounding member) 64 is provided to surround the circumferences of the printed board 63 and the casing member 62 and the slits (second openings) 66a are formed in the bottom surface of the housing (surrounding member) 64, a second opening may be formed in a part different from the bottom portion of the surrounding member. Furthermore, the surrounding member may not be provided.
While in the embodiment above the refrigerant gas sensor 9 includes the printed board 63, the refrigerant gas sensor may be differently arranged.
While in the embodiment above the indoor unit is a floor-mounted indoor unit, the indoor unit may not be floor-mounted, and may be wall-mounted.
While in the embodiment above the refrigerant gas sensor 9 is provided inside the indoor unit 20, the refrigerant gas sensor may be provided, for example, inside the outdoor unit.
The present invention makes it possible to prevent a different gas sucked from the outside of the air conditioner from being erroneously recognized as refrigerant gas.
Number | Date | Country | Kind |
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2014-223394 | Oct 2014 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2015/077567 | 9/29/2015 | WO | 00 |