The present invention relates to the field of air conditioner technologies, and in particular, to a fresh air assembly and an air conditioner.
A packaged terminal air conditioner (PTAC) window unit is a type of air conditioner mainly used for indoor refrigeration or heating in North America. Due to the characteristics of houses and climate factors in North America, this type of air conditioner is usually installed in wall holes of houses to realize indoor and outdoor air flow regulation. At present, a dehumidifier module is usually used to transmit fresh air to the indoor side of the PTAC window unit, so that a cross-flow impeller inputs the fresh air to the indoor. The dehumidifier module often produces high noise and vibration when it transmits fresh air. Because the PTAC window unit is installed in the wall hole, it causes severe noise interference to the indoor and affects the normal life of the residents. Moreover, the dehumidifier module consumes high energy, which increases the overall cost. In addition, the dehumidifier module needs to be removed for cleaning, and the operations are very inconvenient.
An objective of the present invention is to provide a fresh air assembly and an air conditioner that feature low noise, low energy consumption, low costs, and easy cleaning.
A main objective of the present invention is to provide a fresh air assembly and an air conditioner that feature low noise, low energy consumption, low costs, and easy cleaning.
To achieve the above objective, the present invention uses the following technical solutions: A fresh air assembly includes a housing, a cross-flow impeller, evaporators, and an air deflector. The cross-flow impeller, the evaporators, and the air deflector are all disposed inside the housing. The evaporators are disposed on one side of the cross-flow impeller in a direction around the cross-flow impeller. Both ends of the air deflector are connected to the housing to form a first cavity. One end of the evaporators is connected to the housing and the other end thereof is connected to the air deflector to form a second cavity, the second cavity communicates with the first cavity, the evaporators are enclosed with the air deflector to form a wind chamber, and the cross-flow impeller is disposed inside the wind chamber. The air deflector is provided with air-guiding holes, and the first cavity communicates with the second cavity through the air-guiding holes. The housing is provided with an air outlet and an air inlet, the air outlet communicates with the wind chamber, and the air inlet communicates with the first cavity.
Further, there are at least two evaporators, and the evaporators are connected in sequence.
Further, the evaporators are arc-shaped or semicircular, and the arc-shaped or semicircular evaporators are disposed on one side of the cross-flow impeller.
Further, there are at least two air-guiding holes, and the air-guiding holes are spaced on the air deflector.
Further, the housing includes a bottom plate, a top plate, an outer side plate, and an intermediate separator plate. One end of the outer side plate and one end of the intermediate separator plate are respectively connected to opposite ends of the bottom plate. The top plate is disposed at the other end of the intermediate separator plate, and is spaced from the other end of the outer side plate to form the air outlet.
Further, the bottom plate further includes two end plates. The two end plates are respectively connected to the two ends of the outer side plate, the two ends of the intermediate separator plate, the two ends of the bottom plate, and two ends of the top plate to form an internal space accommodating the air deflector, the evaporators, and the cross-flow impeller.
Further, the air deflector includes an arc segment and a bending segment. The arc segment is disposed on an outer side of the cross-flow impeller in the direction around the cross-flow impeller, and one end of the arc segment is connected to the top plate and the other end thereof is connected to the bending segment. The bending segment is fixedly connected to the bottom plate.
Further, the bending segment includes a connecting portion, an inclined portion, a vertical portion, and a flat portion. One end of the connecting portion is connected to the arc segment, and the other end thereof is connected to the inclined portion. One end of the vertical portion is connected to the inclined portion, the other end thereof is connected to the flat portion, and an included angle between the inclined portion and the vertical portion is an obtuse angle. The flat portion is fixedly connected to the bottom plate.
Further, a baffle plate is provided between the bending segment and the intermediate separator plate. The baffle plate divides the first cavity into an upper cavity and a lower cavity. The lower cavity communicates with the air inlet and the second cavity.
Further, the air inlet is provided with a damper on a side facing away from the first cavity.
Further, an opening apparatus is included. The damper is rotatably disposed on one side of the air inlet through a rotating shaft. The opening apparatus is capable of driving the damper to rotate, so that the damper covers the air inlet up or moves away from the air inlet.
Further, the opening apparatus includes a manual switch and a connecting rod. One end of the connecting rod is connected to the damper and the other end thereof is connected to the manual switch. The manual switch is capable of driving the connecting rod to move, so as to control the damper to cover the air inlet up or move away from the air inlet.
Further, the manual switch is disposed on the end plate. The connecting rod is L-shaped. The damper is provided with a connecting plate. One end of the connecting rod is rotationally connected to the connecting plate. The other end thereof is fixedly connected to the manual switch by bypassing the intermediate separator plate.
Further, the intermediate separator plate is provided with a fixing plate. The fixing plate is provided with a guide block. The guide block has a guide hole. One end of the connecting rod passes through the guide hole and is rotationally connected to the connecting plate.
Further, the manual switch includes a base provided with a chute and a shifting block disposed in the chute. The shifting block is fixedly connected to the connecting rod.
The present invention further proposes an air conditioner, including the fresh air assembly according to any implementation described above.
According to the fresh air assembly and the air conditioner of the present invention, a dehumidifier module is removed, and fresh air that is to enter an air-conditioned room is processed by using evaporators, thereby improving utilization of the evaporators. In addition, the evaporators are disposed around the cross-flow impeller, and this increases the space on the air intake side of the evaporators, ensures the intake volume and flow rate of the fresh air, and effectively ensures the volume of fresh air entering the room. Moreover, because the dehumidifier module is removed, noise is reduced, overall energy consumption and costs are decreased, and cleaning and maintenance are more convenient.
It should be understood that the specific embodiments described herein are merely used to explain the present invention but are not intended to limit the present invention.
Referring to
The working principle of the above-mentioned fresh air assembly is as follows: The cross-flow impeller 2 rotates to form a negative pressure between the wind chamber 7 and the second cavity 6, so that the evaporators 3 draw the air in the second cavity 6 into the wind chamber 7. Then, the air in the first cavity 5 flows into the second cavity 6 to supplement the air volume in the second cavity 6. Finally, fresh air flows into the first cavity 5 from the air inlet 16 to supplement the air volume in the first cavity 5. In this way, an air flow passage is formed. Afterwards, fresh air enters the first cavity 5 from the air inlet 16, flows into the second cavity 6 from the first cavity 5, is drawn into the wind chamber 7 by the evaporators 3, and is blown into a room from the air outlet 17 under the action of the cross-flow impeller 2. When the fresh air is drawn into the wind chamber 7 by the evaporators 3, the evaporators 3 dehumidify, cool, or heat the fresh air, and therefore functions of the evaporators 3 are fully utilized.
According to the fresh air assembly above, a dehumidifier module is removed, and fresh air that is to enter an air-conditioned room is processed by using the evaporators 3, thereby improving utilization of the evaporators 3. In addition, the evaporators 3 are disposed around the cross-flow impeller 2, and this increases the space on the air intake side of the evaporators 3, ensures the intake volume and flow rate of the fresh air, and effectively ensures the volume of fresh air entering the room. Moreover, because the dehumidifier module is removed, noise is reduced, overall energy consumption and costs are decreased, and cleaning and maintenance are more convenient.
Referring to
In another embodiment, the evaporators 3 are arc-shaped or semicircular, and the arc-shaped or semicircular evaporators 3 are disposed on one side of the cross-flow impeller 2 in the direction around the cross-flow impeller 2. Disposing the arc-shaped or semicircular evaporators 3 to manufacture the evaporators 3 at a time omits an assembly procedure required for using multiple evaporators 3, making the assembly more convenient.
Referring to
In another embodiment, there are at least two air-guiding holes 4231, and the at least two air-guiding holes 4231 are spaced on the air deflector 4. Disposing a plurality of air-guiding holes 4231 can increase the volume of fresh air flowing into the second cavity 6, thereby ensuring a sufficient volume of fresh air in the second cavity 6. In this way, the evaporators 3 can continuously draw the fresh air from the second cavity 6 into the wind chamber 7 and blow the fresh air from the wind chamber 7 into the room. Moreover, the plurality of air-guiding holes 4231 are spaced on the air deflector 4, and this can ensure sufficient strength of the air deflector 4, so as to prevent the structural strength of the air deflector 4 from being reduced because only one air-guiding hole 4231 with a large diameter is disposed to ensure the fresh air volume.
Referring to
Referring to
Referring to
Referring to
In another embodiment, the air inlet 16 is provided with a filter screen. Disposing the filter screen can prevent dust in the air from entering into the fresh air assembly, and prevent the dust from covering the evaporators 3 and the cross-flow impeller 2 and affecting the service life of the evaporators 3 and the cross-flow impeller 2.
Referring to
Referring to
Referring to
An embodiment of the present invention further provides an air conditioner, including the fresh air assembly according to any implementation described above.
According to the fresh air assembly and the air conditioner in the embodiments of the present invention, a dehumidifier module is removed, and fresh air that is to enter an air-conditioned room is processed by using the evaporators 3, thereby improving utilization of the evaporators 3. In addition, the evaporators 3 are disposed around the cross-flow impeller 2, and this increases the space on the air intake side of the evaporators 3, ensures the intake volume and flow rate of the fresh air, and effectively ensures the volume of fresh air entering the room. Moreover, because the dehumidifier module is removed, noise is reduced, overall energy consumption and costs are decreased, and cleaning and maintenance are more convenient.
The foregoing descriptions are only example embodiments of the present invention, and are not intended to limit the patent scope of the present invention. Any equivalent structural or procedural variations made using the content of the specification and drawings of the present invention, or those directly or indirectly applied to other related technical fields, are likewise included in the patent scope of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
201810954878.7 | Aug 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2018/106740 | 9/20/2018 | WO | 00 |