CN215597519U - Air conditioner and air conditioning system with air outlet under water washing - Google Patents
Air conditioner and air conditioning system with air outlet under water washing Download PDFInfo
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- CN215597519U CN215597519U CN202120367042.4U CN202120367042U CN215597519U CN 215597519 U CN215597519 U CN 215597519U CN 202120367042 U CN202120367042 U CN 202120367042U CN 215597519 U CN215597519 U CN 215597519U
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- 238000005406 washing Methods 0.000 title claims abstract description 165
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 title claims abstract description 146
- 238000004378 air conditioning Methods 0.000 title claims abstract description 9
- 230000008859 change Effects 0.000 claims abstract description 12
- 238000004891 communication Methods 0.000 claims description 3
- 238000007605 air drying Methods 0.000 abstract description 5
- 230000007613 environmental effect Effects 0.000 description 7
- 238000010438 heat treatment Methods 0.000 description 6
- 238000009434 installation Methods 0.000 description 4
- 238000000034 method Methods 0.000 description 3
- 230000008569 process Effects 0.000 description 3
- 238000005057 refrigeration Methods 0.000 description 2
- 239000003086 colorant Substances 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 238000005259 measurement Methods 0.000 description 1
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- 230000004048 modification Effects 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
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Abstract
The utility model provides an air conditioner and an air conditioning system with outlet air under water washing, comprising: the water washing device comprises a water washing motor, a floater sensor, a water adding device, a main control module and a water washing control module; the washing motor, the float sensor and the water adding device are all connected with the main control module through the washing control module in a circuit mode, so that the main control module obtains control instructions to control the washing control module to detect the water level by the float sensor, the water adding device is controlled to add water according to the water level change detected by the float sensor, and the washing motor is controlled to operate when the water level meets the conditions. The air conditioner with the lower air outlet and the water washing function can acquire a control instruction through the main control module to control the water washing control module to detect the water level by using the float sensor, control the water adding device to add water according to the water level change detected by the float sensor, control the water washing motor to operate when the water level meets the condition, and effectively solve the problems of air drying, high concentration of pm2.5 and over-low temperature of the bottom of a room.
Description
Technical Field
The utility model relates to the technical field of air conditioners, in particular to a water-washing lower air outlet air conditioner and a water-washing lower air outlet air conditioner.
Background
With the improvement of living standard of people, the air conditioner becomes a necessary electric appliance for modern people at home and in offices, and the air conditioner is used for a long time especially in summer and winter. The air conditioner can refrigerate in summer and heat in winter, can adjust the indoor temperature to be warm in winter and cool in summer, and provides a comfortable environment for users.
At present, most air conditioners have various modes such as refrigeration and heating, can automatically select refrigeration or heating according to outdoor environment temperature in the process of carrying out an automatic control mode, and can automatically set target temperature and fan rotating speed according to indoor and outdoor temperatures so as to achieve the aim of indoor constant temperature as far as possible. However, in the conventional air conditioner, it is difficult to make the indoor bottom temperature reach the set temperature in the heating process. Especially, when heating in winter, the cabinet air conditioner is easy to cause the problem that the temperature at the bottom of a room is too low. In addition, the existing air conditioner is easy to influence the air humidity in the heating process, so that the air is dry and the discomfort of a human body is caused.
SUMMERY OF THE UTILITY MODEL
The embodiment of the utility model provides a washing lower air outlet air conditioner and an air conditioning system, which solve the problem that the temperature of the bottom of a room is too low when a cabinet air conditioner heats in winter, improve the air humidity in the heating process and simultaneously reduce the pm2.5 concentration of the room.
The embodiment of the utility model provides a washing lower air outlet air conditioner, which comprises:
the water washing device comprises a water washing motor, a floater sensor, a water adding device, a main control module and a water washing control module;
the washing motor the float sensor with add the water installation and all pass through washing control module with main control module circuit connection, in order to pass through main control module acquires control command control washing control module utilizes the float sensor detects the water level, and according to the water level change control that the float sensor detected add the water installation and add water, control when the water level satisfies the condition the washing motor operation.
According to the air conditioner with the lower washing air outlet provided by one embodiment of the utility model, the air conditioner with the lower washing air outlet further comprises: a pm2.5 sensor;
the pm2.5 sensor is used for measuring pm2.5 concentration in the environment, the pm2.5 sensor with washing control module circuit connection.
According to the air conditioner with the lower washing air outlet provided by one embodiment of the utility model, the air conditioner with the lower washing air outlet further comprises: a WiFi control module; the WiFi control module is in circuit connection with the main control module.
According to the air conditioner with the lower washing air outlet provided by one embodiment of the utility model, the air conditioner with the lower washing air outlet further comprises: the system comprises a mobile phone client and a cloud server;
the mobile phone client is in communication connection with the WiFi control module through the cloud server.
According to the air conditioner with the lower washing air outlet provided by one embodiment of the utility model, the air conditioner with the lower washing air outlet further comprises: a humidity sensor;
the humidity sensor is in circuit connection with the water washing control module, so that the water washing control module controls the rotating speed of the water washing motor according to the humidity measured by the humidity sensor.
According to the air conditioner with the lower washing air outlet provided by one embodiment of the utility model, the air conditioner with the lower washing air outlet further comprises: the system comprises a heater, a warm air control module and a temperature sensor;
the heater with temperature sensor all passes through warm braw control module with main control module circuit connects, warm braw control module is according to the temperature control that temperature sensor measured the heater heats.
According to the air conditioner with the water washing lower outlet provided by the embodiment of the utility model, the number of the heaters is multiple, each heater is in circuit connection with the warm air control module, and the warm air control module controls the heaters with different numbers to heat according to the temperature measured by each temperature sensor.
According to the water-washing lower air outlet air conditioner provided by the embodiment of the utility model, the number of the temperature sensors is multiple, and the temperature sensors are sequentially installed from top to bottom.
An embodiment of the present invention further provides an air conditioning system, including: an upper air outlet air conditioner and a water washing lower air outlet air conditioner; the air conditioner that goes out under washing includes: the water washing device comprises a water washing motor, a floater sensor, a water adding device, a main control module and a water washing control module;
the washing motor the float sensor with add the water installation and all pass through washing control module with main control module circuit connection, in order to pass through main control module acquires control command control washing control module utilizes the float sensor detects the water level, and according to the water level change control that the float sensor detected add the water installation and add water, control when the water level satisfies the condition the washing motor operation.
The utility model provides a washing lower air outlet air conditioner which is provided with a washing motor, a floater sensor, a water adding device, a main control module and a washing control module, wherein the washing motor, the floater sensor and the water adding device are all in circuit connection with the main control module through the washing control module, a control instruction can be obtained through the main control module to control the washing control module to detect the water level by using the floater sensor, the water adding device is controlled to add water according to the water level change detected by the floater sensor, the washing motor is controlled to operate when the water level meets the condition, and the problems of air drying, high concentration of pm2.5 and low temperature of the bottom of a room are effectively solved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and those skilled in the art can also obtain other drawings according to the drawings without creative efforts.
Fig. 1 is a schematic structural view of a water-washed lower outlet air conditioner provided in an embodiment of the present invention;
in the figure, 1, a temperature sensor; 2. a warm air control module; 3. a heater; 4. a main control module; 5. a cloud server; 6. a mobile phone client; 7. a WiFi control module; 8. a water washing control module; 9. a humidity sensor; 10. washing the motor with water; 14. a fan motor; 15. a pm2.5 sensor; 16. a water adding device; 17. a float sensor.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The utility model provides a water-washing lower air-out air conditioner, which is described below by combining with figure 1 and comprises the following components: a washing motor 10, a float sensor 17, a water adding device 16, a main control module 4 and a washing control module 8. The washing motor 10, the float sensor 17 and the water adding device 16 are all in circuit connection with the main control module 4 through the washing control module 8. The main control module 4 is used for acquiring control instructions, the washing control module 8 is used for controlling components related to washing, so that the main control module 4 acquires the control instructions to control the washing control module 8 to detect the water level by using the float sensor 17, the water adding device 16 is controlled to add water according to the water level change detected by the float sensor 17, and the washing control module 8 controls the washing motor 10 to operate when the water level meets the conditions.
This air conditioner of air-out under washing is owing to air-out in the bottom, effectively solves the problem that room bottom temperature is low excessively to a certain extent. After the user selects the washing function and the main control module 4 receives the control instruction, the main control module 4 sends a signal to the washing control module 8. The water washing control module 8 receives the signal and then controls the float sensor 17, the float sensor 17 continuously judges the water quantity within the set time, if the water quantity is smaller than the minimum standard within the set time, a water shortage signal is fed back, and the water adding device 16 is controlled to add water according to the water level condition. After the floater sensor 17 judges that the maximum water adding amount is met, the water adding device 16 is controlled by the water washing control module 8 to automatically cut off water adding. Meanwhile, the washing control module 8 controls the washing motor 10 to operate.
For the change that detects room pm2.5 concentration, the air-out air conditioner still includes under the washing: pm2.5 sensor. The pm2.5 sensor 15 is in circuit connection with the water wash control module 8 for measuring the pm2.5 concentration in the environment and sending the measurement result to the water wash control module 8. During the working period of the water washing module, the humidity and the pm2.5 concentration of a room are continuously fed back, and a user can select to close according to prompts. When the humidity and pm2.5 of the space reach set values, the device corresponding to the water washing can be automatically disconnected.
In this embodiment, the air-out air conditioner still includes under the washing: the system comprises a WiFi control module 7, a mobile phone client 6 and a cloud server 5. The WiFi control module 7 is in circuit connection with the main control module 4. The mobile phone client 6 is in communication connection with the WiFi control module 7 through the cloud server 5.
The user can open the washing function and the warm air function of the air conditioner with the outlet air washed by water through the mobile phone client 6. The washing control module 8 can detect pm2.5 concentration/environmental humidity of a room through the pm2.5 sensor 15 in standby and startup states, and feeds back the concentration/environmental humidity to the indicator of the display screen of the mobile phone client 6, wherein the numerical value exceeds the set humidity and is displayed in blue to indicate that the humidity is too high, the numerical value is displayed in red when the humidity is lower than the set concentration, the icon indicates dryness, and the green indicates suitability. The user can select display functions such as warm air and the like through the operation interface of the mobile phone client 6, and the mobile phone client 6 sends a signal to the cloud server 5 to the main control module 4. The mobile phone client is remotely controlled, and the problem that people on duty and on business can not enjoy suitable room air when going home is solved. In addition, the mobile phone client 6 has a one-key setting function, and after the mobile phone client is selected to be started by a user, the washing function and the warm air function can be automatically started by the washing down air-out air conditioner.
Wherein, the air-out air conditioner still includes under the washing: a humidity sensor 9. The humidity sensor 9 is in circuit connection with the water washing control module 8, so that the water washing control module 8 controls the rotation speed of the water washing motor 10 according to the humidity measured by the humidity sensor 9. During operation, the main control module 4 sends a signal to the washing control module 8. The washing control module 8 receives the signal and then controls the humidity sensor 9 to acquire the ambient humidity, the washing control module 8 adjusts the washing rotating speed of the washing motor 10 according to the ambient humidity, and the washing rotating speed is negatively related to the ambient humidity, so that the air is humidified.
In the process of adjusting the washing rotating speed according to the environment humidity, a plurality of preset humidity intervals are needed to be determined, and each preset humidity interval corresponds to one washing rotating speed.
In this embodiment, the preset humidity intervals include a first preset humidity interval, a second preset humidity interval, a third preset humidity interval and a fourth preset humidity interval which are continuously arranged from small to large. If the environmental humidity is in a first preset humidity interval, adopting four-stage washing rotating speed; if the environmental humidity is in a second preset humidity interval, adopting three-level washing rotating speed; if the environmental humidity is in a third preset humidity interval, adopting a secondary washing rotating speed; and if the ambient humidity is in a fourth preset humidity range, adopting a first-stage washing rotating speed.
For example, if the ambient humidity is less than or equal to 15%, the water washing motor 10 adopts a four-stage rotation speed of 900 r/min. If the environmental humidity is more than 15% and less than or equal to 30%, the water washing motor 10 adopts three-level rotating speed of 750 r/min. If the environmental humidity is more than 30% and less than or equal to 60%, the water washing motor 10 adopts a second-stage rotating speed of 600 r/min. If the humidity is less than 60%, the first-stage rotating speed of 450r/min is adopted by the washing motor 10.
The utility model provides a washing lower air outlet air conditioner which is provided with a washing motor, a floater sensor, a water adding device, a main control module and a washing control module, wherein the washing motor, the floater sensor and the water adding device are all in circuit connection with the main control module through the washing control module, a control instruction can be obtained through the main control module to control the washing control module to detect the water level by using the floater sensor, the water adding device is controlled to add water according to the water level change detected by the floater sensor, the washing motor is controlled to operate when the water level meets the condition, and the problems of air drying, high concentration of pm2.5 and low temperature of the bottom of a room are effectively solved.
As shown in fig. 1, the air supply is controlled through the same fan motor 14 by the device corresponding to the washing and warm air functions, in this embodiment, the air conditioner further includes: the heater 3, the warm air control module 2 and the temperature sensor 1. The heater 3 and the temperature sensor 1 are both in circuit connection with the main control module 4 through the warm air control module 2, and the warm air control module 2 controls the heater 3 to heat according to the temperature measured by the temperature sensor 1. The temperature sensor 1 can detect the temperature in the height of 1m at the bottom of the room in the standby and on states, and feeds back the temperature to the mobile phone client 6, wherein the temperature includes a numerical value and prompt colors such as low blue temperature, proper green and high red temperature.
In order to adjust the temperature of the bottom of the room conveniently, the number of the heaters 3 is multiple, each heater 3 is in circuit connection with the warm air control module 2, and the warm air control module 2 controls the heaters 3 with different numbers to heat according to the temperature measured by each temperature sensor 1.
Further, the number of the temperature sensors 1 is also multiple, and the temperature sensors 1 are sequentially installed from top to bottom, so that the temperature at different heights of the bottom of a room can be measured. If the air temperature in the middle of the bottom of the room is lower than the preset temperature, the temperature sensor 1 acquires the air temperature at the lower end of the bottom of the room, and the number of the heaters 3 is increased according to the air temperature at the lower end of the bottom of the room. If the air temperature in the middle of the bottom of the room is higher than the preset temperature, the temperature sensor 1 obtains the air temperature at the upper end of the bottom of the room, and the number of the heaters 3 is reduced according to the air temperature at the upper end of the bottom of the room.
After the user selects to open, the air conditioner with the washed lower air outlet can automatically judge the indoor temperature and humidity and automatically open the warm air function and the water washing function. After the user selects the warm air function and the water washing function, the warm air function and the water washing function are respectively performed according to respective control logics. After the main control module 4 receives the control instruction, the main control module 4 sends a signal to the warm air control module 2, the warm air control module 2 receives the signal and then can control all the temperature sensors 1 to simultaneously start measuring the air temperature of the room, and each temperature sensor 1 can acquire the air temperature of the room at different heights. The warm air control module 2 controls different numbers of heaters 3 to heat according to the air temperature measured by each temperature sensor 1. At the same time, the main control module 4 sends a signal to the wash control module 8. Control humidity transducer 9 and acquire ambient humidity behind the washing control module 8 received signal, washing control module 8 adjusts the washing rotational speed of washing motor 10 according to ambient humidity, and the washing rotational speed is negative relevant with ambient humidity to carry out the humidification to the air, reduce pm2.5 concentration in the room simultaneously.
The utility model provides a washing lower air outlet air conditioner which is provided with a washing motor, a floater sensor, a water adding device, a main control module and a washing control module, wherein the washing motor, the floater sensor and the water adding device are all in circuit connection with the main control module through the washing control module, a control instruction can be obtained through the main control module to control the washing control module to detect the water level by using the floater sensor, the water adding device is controlled to add water according to the water level change detected by the floater sensor, the washing motor is controlled to operate when the water level meets the condition, and the problems of air drying, high concentration of pm2.5 and low temperature of the bottom of a room are effectively solved. In addition, different from the above embodiments, the water-washed downdraft air conditioner provided by the embodiment can adjust the temperature of the bottom of the room more effectively in the control process of the warm air function through the plurality of heaters and the temperature sensor.
The present invention also provides an air conditioning system comprising: an upper air outlet air conditioner and a water washing lower air outlet air conditioner. Go up the air-out air conditioner and be used for controlling the holistic temperature in room, the air-out air conditioner is used for adjusting the temperature of room bottom under the washing on the one hand, and on the other hand then is used for solving the problem that air drying and pm2.5 concentration are high. As shown in fig. 1, the water-wash lower outlet air conditioner includes: a washing motor 10, a float sensor 17, a water adding device 16, a main control module 4 and a washing control module 8. The washing motor 10, the float sensor 17 and the water adding device 16 are all in circuit connection with the main control module 4 through the washing control module 8. The main control module 4 is used for acquiring control instructions, the washing control module 8 is used for controlling components related to washing, so that the main control module 4 acquires the control instructions to control the washing control module 8 to detect the water level by using the float sensor 17, the water adding device 16 is controlled to add water according to the water level change detected by the float sensor 17, and the washing control module 8 controls the washing motor 10 to operate when the water level meets the conditions.
After a user selects to open the air conditioner, the temperature of the room is integrally adjusted by the upper air outlet air conditioner, and the indoor temperature and humidity can be automatically judged by the lower air outlet air conditioner after washing, so that the warm air function and the washing function can be automatically opened. After the user selects the warm air function and the water washing function, the warm air function and the water washing function are respectively performed according to respective control logics. After the main control module 4 receives the control instruction, the main control module 4 sends a signal to the warm air control module 2, the warm air control module 2 receives the signal and then can control all the temperature sensors 1 to simultaneously start measuring the air temperature of the room, and each temperature sensor 1 can acquire the air temperature of the room at different heights. The warm air control module 2 controls different numbers of heaters 3 to heat according to the air temperature measured by each temperature sensor 1. At the same time, the main control module 4 sends a signal to the wash control module 8. Control humidity transducer 9 and acquire ambient humidity behind the washing control module 8 received signal, washing control module 8 adjusts the washing rotational speed of washing motor 10 according to ambient humidity, and the washing rotational speed is negative relevant with ambient humidity to carry out the humidification to the air, reduce pm2.5 concentration in the room simultaneously.
In summary, according to the air conditioning system provided by the utility model, the water-washing lower air-out air conditioner is arranged, and the water-washing lower air-out air conditioner is controlled, so that the control instruction can be obtained by the main control module to control the water-washing control module to detect the water level by using the float sensor, the water adding device is controlled to add water according to the water level change detected by the float sensor, the water-washing motor is controlled to operate when the water level meets the condition, and the problems of air dryness, high pm2.5 concentration and low room bottom temperature are effectively solved.
Finally, it should be noted that: the above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.
Claims (9)
1. The utility model provides an air-out air conditioner under washing which characterized in that includes:
the water washing device comprises a water washing motor, a floater sensor, a water adding device, a main control module and a water washing control module;
the washing motor, the float sensor and the water adding device are all in circuit connection with the main control module through the washing control module, so that the main control module obtains a control instruction to control the washing control module to detect the water level by using the float sensor, and controls the water adding device to add water according to the water level change detected by the float sensor, the float sensor continuously judges the water amount within a set time, and if the water amount is less than the minimum standard within the set time, a water shortage signal is fed back, and the water adding device is controlled to add water according to the water level condition; after the floater sensor judges that the maximum water adding amount is met, the water adding device is controlled by the water washing control module to automatically cut off water adding; and controlling the washing motor to operate when the water level meets the condition.
2. The water wash lower outlet air conditioner of claim 1, further comprising: a pm2.5 sensor;
the pm2.5 sensor is used for measuring pm2.5 concentration in the environment, the pm2.5 sensor with washing control module circuit connection.
3. The water wash lower outlet air conditioner of claim 1, further comprising: a WiFi control module; the WiFi control module is in circuit connection with the main control module.
4. The water wash lower outlet air conditioner of claim 3, further comprising: the system comprises a mobile phone client and a cloud server;
the mobile phone client is in communication connection with the WiFi control module through the cloud server.
5. The water wash lower outlet air conditioner of claim 1, further comprising: a humidity sensor;
the humidity sensor is in circuit connection with the water washing control module, so that the water washing control module controls the rotating speed of the water washing motor according to the humidity measured by the humidity sensor.
6. The water wash downwind air conditioner of any one of claims 1 to 5, further comprising: the system comprises a heater, a warm air control module and a temperature sensor;
the heater with temperature sensor all passes through warm braw control module with main control module circuit connects, warm braw control module is according to the temperature control that temperature sensor measured the heater heats.
7. The air conditioner with washing lower outlet air of claim 6, wherein the number of the heaters is multiple, each heater is in circuit connection with the warm air control module, and the warm air control module controls different numbers of the heaters to heat according to the temperature measured by each temperature sensor.
8. The washing air conditioner with lower air outlet of claim 7, wherein the number of the temperature sensors is multiple, and each temperature sensor is sequentially installed from top to bottom.
9. An air conditioning system, characterized in that the air conditioning system comprises: an upwind air conditioner and a water wash downwind air conditioner as claimed in any one of claims 1 to 8.
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CN202120367042.4U CN215597519U (en) | 2021-02-09 | 2021-02-09 | Air conditioner and air conditioning system with air outlet under water washing |
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CN202120367042.4U CN215597519U (en) | 2021-02-09 | 2021-02-09 | Air conditioner and air conditioning system with air outlet under water washing |
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