Air conditioner control method, air conditioner and readable storage medium
By abolishing the water pump settings in the air-conditioning water supply pipeline, using the water pressure of tap water as the water supply power, and adjusting the opening of the humidification pipeline according to the real-time tap water parameter data, the problem of the existing air conditioner being unsatisfactory in the humidification mode is solved, and a better atomization effect is achieved.
Patent Information
- Application Number
- CN202510543614.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-06-17
AI Technical Summary
The existing automatic humidification and energy-saving air conditioners fail to achieve the ideal atomization effect in humidification mode, mainly because they fail to consider the dynamic changes of tap water.
By canceling the water pump settings in the water supply pipeline, using the water pressure of tap water as the water supply power, and adjusting the first control valve opening of the humidification pipeline based on the tap water parameter data (such as water temperature and water pressure) obtained in real time to ensure the best atomization effect.
This method can ensure better atomization effect in each period under the humidification mode under the condition of changing the water temperature and pressure of the tap water, and improve the ideal effect of humidification.
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Figure CN120160235A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioner control, and particularly to an air conditioner with a humidifying function, an air conditioner control method, and a readable storage medium. Background Art
[0002] Temperature, humidity, and air quality are key factors affecting the comfort of indoor occupants. There is a conventional automatic humidifying and energy-saving air conditioner that includes an outdoor unit and an indoor unit. A compressor and an outdoor heat exchanger are installed in the outdoor unit, and an indoor heat exchanger is installed in the indoor unit. The air conditioner further includes a water supply pipeline, which mainly includes a water inlet pipe, a water cooling pipeline, and a humidifying pipeline. The water inlet pipe of the water supply pipeline is connected to tap water, the water cooling pipeline is connected to the outdoor unit, and the humidifying pipeline is connected to the indoor unit; a water pump is provided upstream of the downstream of the water inlet pipe, the upstream of the water cooling pipeline, and the upstream of the humidifying pipeline; a second control valve is provided on the water cooling pipeline, and an outer spraying device is provided at the end of the water cooling pipeline, with the nozzle located above the outdoor heat exchanger; a first control valve is provided on the humidifying pipeline, and an inner spraying device is provided at the end of the water cooling pipeline. In addition, a humidity sensor is also provided in the indoor unit. This air conditioner can detect the indoor humidity through the humidity sensor, determine whether indoor humidification is required, and if so, turn on the booster pump and control the first control valve to open. In addition, the air conditioner can also enter the water cooling mode, control the opening of the booster pump and the second control valve.
[0003] However, the humidifying mode of the existing automatic humidifying and energy-saving air conditioner fails to achieve an ideal atomization effect. Summary of the Invention
[0004] The first object of the present invention is to provide an air conditioner control method for improving the humidifying atomization effect.
[0005] The second object of the present invention is to provide an air conditioner for improving the humidifying atomization effect.
[0006] The third object of the present invention is to provide a readable storage medium that can execute the air conditioner control method when read.
[0007] The air conditioner control method provided by the first object of the present invention includes obtaining humidity data; when the humidity data is less than a preset humidity value, entering the humidifying mode; using the water pressure of tap water as the water supply power for the water supply pipeline of the air conditioner; the air conditioner control method further includes when entering the humidifying mode: obtaining tap water parameter data; controlling the opening degree of the first control valve of the humidifying pipeline according to the tap water parameter data.
[0008] As can be seen from the above solution, through research, it is found that the water pressure and water temperature of tap water are not completely fixed. They are affected by various factors such as water usage demand, geographical location, seasonal changes, and the state of the water supply system. In actual use, the water pressure or water temperature often fluctuates, resulting in a certain impact on the atomization humidification effect. However, the existing automatic humidification energy-saving air conditioners use a booster pump to directly pump water without considering the dynamic changes of tap water. Therefore, the atomization effect is not ideal. For this reason, in the air conditioner control method of the present invention, firstly, the water pump is removed from the water supply pipeline, and the water pressure of tap water is used as the water supply power. This setting can eliminate the pressurization effect of the water pump and ensure a strong correlation between the tap water parameter data, the opening degree of the first control valve, and the atomization effect. When the system obtains tap water parameter data such as water temperature data and water pressure data through the multi-functional water pump, it can obtain the opening degree of the first control valve of the humidification pipeline according to the preset calculation method or preset data table. Therefore, even if the water temperature and / or water pressure of tap water change, a better atomization effect can be ensured at each time period in the humidification mode.
[0009] A further solution is that in the step of controlling the opening degree of the first control valve of the humidification pipeline according to the tap water parameter data: the tap water parameter data includes water temperature data and water pressure data, and the opening degree of the first control valve is positively correlated with the water temperature data and positively correlated with the water pressure data.
[0010] Another further solution is that in the step of controlling the opening degree of the first control valve of the humidification pipeline according to the tap water parameter data: the tap water parameter data includes water temperature data and water pressure data, and the opening degree value matching the obtained water temperature data and water pressure data is determined according to the pre-stored data table; the opening degree of the first control valve is controlled according to the opening degree value.
[0011] As can be seen from the above, the atomization ability of the atomizing nozzle is related to the water pressure and water temperature. Generally, the greater the pressure, the finer the atomization particles, and the higher the temperature, the faster the evaporation, and the better the overall humidification effect. The system can calculate the opening degree of the first control valve in real time according to the real-time obtained water temperature data and water pressure data. Of course, the system can also look up the matching opening degree value from the pre-stored data table according to the obtained water temperature data and water pressure data. Both methods can accurately control the opening degree of the first control valve according to the water temperature and water pressure of tap water.
[0012] A further solution is that after the step of controlling the opening degree of the first control valve of the humidification pipeline according to the tap water parameter data, it further includes obtaining tap water quality data; calculating and generating a water quality result according to the tap water quality data; if the water quality result does not meet the preset conditions, controlling to close the first control valve.
[0013] As can be seen from the above, the present invention also takes into account the quality of the humidifying water mist. A water quality detection unit is added to obtain one or more water quality-related parameters such as TDS value, pH value, conductivity EC, hardness, turbidity, etc. and calculate and generate a water quality result. If the water quality result does not meet the preset conditions, for example, the turbidity exceeds a certain value, the first control valve is closed to stop humidification.
[0014] A further solution is that in the step of calculating and generating a water quality result based on the tap water quality data: a weighted calculated value is generated based on at least two different water quality parameters to obtain the water quality result.
[0015] An even further solution is that in the step of generating a water quality result by calculating a weighted value based on at least two different water quality parameters: at least two different water quality parameters include at least two of TDS value, pH value, conductivity EC, hardness, turbidity.
[0016] As can be seen from the above, in this way, a weighted calculation is performed according to the influence degree of each water quality parameter on the human body, and then the water quality result is calculated, compared, judged and controlled, which can better ensure the safety of the humidification function.
[0017] Another further solution is that after the step of obtaining humidity data: obtain the water temperature data of tap water and the pipe temperature data of the outdoor heat exchanger; if the difference between the pipe temperature data and the water temperature data is greater than or equal to a preset difference, control to open the second control valve of the water cooling pipeline.
[0018] As can be seen from the above, it is judged whether the water cooling function condition is met based on the difference between the pipe temperature data and the water temperature data. Specifically, define T0 as the preset difference. When the pipe temperature data T 管 - water temperature data T < T0, it indicates that the numerical values of the two temperature data are not very different, and using water cooling has little effect on the heat dissipation of the refrigerant pipe, so the water cooling function is not turned on; when the air conditioner operates in the cooling mode, and the pipe temperature data T 管 - water temperature data T ≥ T0, it indicates that the pipe temperature of the outdoor unit is higher than the tap water temperature. Using water cooling can improve the heat dissipation effect of the heat exchanger and enhance the high-temperature cooling capacity. Therefore, the second control valve is opened, and the tap water reaches the outdoor unit through the water cooling pipeline and sprays the refrigerant pipe.
[0019] The air conditioner provided by the second object of the present invention includes a processor, and the processor is used to implement the air conditioner control method of the present invention when executing the computer program stored in the memory.
[0020] A further solution includes a water supply pipeline, which mainly includes a water inlet pipe, a water cooling pipeline, and a humidification pipeline; the water inlet pipe of the water supply pipeline is connected to tap water, the water cooling pipeline is connected to the outdoor unit of the air conditioner, and the humidification pipeline is connected to the indoor unit of the air conditioner; a first control valve is provided on the humidification pipeline, and an inner spray device is provided at the end of the humidification pipeline; a second control valve is provided on the water cooling pipeline, and an outer spray device is provided at the end of the water cooling pipeline; it further includes a water meter provided on the water supply pipeline for obtaining tap water parameter data; it also includes a water quality detection unit provided on the water supply pipeline for obtaining tap water quality data.
[0021] As can be seen from the above solution, the water supply pipeline cancels the setting of the water pump and uses the water pressure of tap water as the water supply power. This setting can eliminate the pressurization influence of the water pump and ensure a strong correlation between the tap water parameter data, the opening degree of the first control valve, and the atomization effect. When the system obtains tap water parameter data such as water temperature data and water pressure data through the multi-functional water pump, it can obtain the opening degree of the first control valve of the humidification pipeline according to the preset calculation method or preset data table. Therefore, even if the tap water temperature and / or water pressure change, a better atomization effect can be ensured at each time period in the humidification mode.
[0022] A further solution is that the outdoor unit includes an outdoor heat exchanger, the outdoor heat exchanger includes fins, and the fins are provided with refrigerant tube holes, and the spray pipe of the outer spray device is inserted into the refrigerant tube holes.
[0023] As can be seen from the above, the spray pipe is inserted and installed by borrowing the existing fin holes of the heat exchanger, without the need to design a new space structure on the upper part, which has high versatility, and the water can be effectively distributed on the upper part of the entire heat exchanger and flow down by gravity, improving the cooling effect.
[0024] The computer program stored on the readable storage medium provided by the third object of the present invention realizes the air conditioner control method of the present invention when executed by a processor. Description of the Drawings
[0025] Figure 1 It is a schematic diagram of an air conditioner embodiment of the present invention.
[0026] Figure 2 It is a partial schematic diagram of the outdoor heat exchanger of the air conditioner embodiment of the present invention.
[0027] Figure 3 It is the first flow block diagram of the air conditioner control method embodiment of the present invention.
[0028] Figure 4 It is the second flow block diagram of the air conditioner control method embodiment of the present invention. Detailed Embodiments
[0029] Air conditioner embodiments and air conditioner control method embodiments SeeFigure 1 and Figure 2 Figure 2 , the air conditioner of this embodiment includes an indoor unit 11 and an outdoor unit 12, and also includes a water supply pipeline 2. The water supply pipeline 2 mainly includes a water inlet pipe 23, a water-cooling pipeline 22 and a humidifying pipeline 21. The water inlet pipe 23 of the water supply pipeline 2 is connected to tap water. The water-cooling pipeline 22 and the humidifying pipeline 21 branch out from the end of the water inlet pipe 23. The water-cooling pipeline 22 is connected to the outdoor unit 12, and the humidifying pipeline 21 is connected to the indoor unit 11. Among them, the water inlet pipe 23 and the water-cooling pipeline 22 are both located outside the wall 9, and a part of the humidifying pipeline 21 is outside the wall 9 while the other part passes through the wall 9 and is connected to the indoor unit 11.
[0030] A first control valve 31 is provided on the humidifying pipeline 21, and a second control valve 32 is provided on the water-cooling pipeline 22. Both the first control valve 31 and the second control valve 32 are stop valves. The end of the humidifying pipeline 21 is provided with an inner spraying device 23. The inner spraying device 23 specifically includes a spraying pipe and a plurality of atomizing nozzles installed on the spraying pipe; the end of the water-cooling pipeline 22 is provided with an outer spraying device 24. The outer spraying device 24 specifically includes a spraying pipe, and the spraying pipe is provided with a plurality of spraying openings.
[0031] In the indoor unit 11, between the first control valve 31 and the inner spraying device 23, a filtering unit 43 and a water quality detection unit 42 are sequentially provided. The filtering unit 43 has a detachable and replaceable filter screen. The water quality detection unit 42 is used to detect tap water quality data. The tap water quality data includes TDS value, pH value, conductivity EC, hardness and turbidity. In the outdoor unit 22, a multi-functional water meter 41 is provided upstream of the second control valve 32 on the water-cooling pipeline 22. The multi-functional water meter 41 is used to detect tap water parameter data. The tap water parameter data includes water temperature data and water pressure data.
[0032] Among them, it should be specifically noted that in the present invention, the water supply pipeline 2 of the air conditioner uses the water pressure of tap water as the water supply power, that is, no water pump is provided in the water supply pipeline 2.
[0033] See Figure 1 and Figure 2 Figure 2 , the outdoor unit 12 includes an outdoor heat exchanger. The outdoor heat exchanger includes fins 121. The fins 121 are provided with refrigerant tube holes 120. The spraying pipe of the outer spraying pipe device 24 is sequentially inserted into the refrigerant tube holes 120 at the uppermost part of multiple fins 121, and the other refrigerant tube holes 120 are matched with the refrigerant tubes 122. Under this setting, the spraying pipe of the outer spraying pipe device 24 is inserted and installed by borrowing the existing refrigerant tube holes 120 of the heat exchanger, without the need to design a new space structure on the upper part of the fins, with high versatility, and water can be effectively distributed on the upper part of the entire heat exchanger and flow down by gravity, improving the cooling effect.
[0034] In addition, the indoor unit 11 is provided with a temperature and humidity sensor in the air duct communicating its air inlet and air outlet, and the temperature and humidity sensor is used to detect the temperature data and humidity data of the environment.
[0035] Certainly, the air conditioner of the present invention includes devices such as a processor and a memory, for example, a single-chip microcomputer including a central processing unit. And the processor is used to execute all steps of the air conditioner control method of the present invention when executing the computer program stored in the memory.
[0036] The so-called processor may be a central processing unit (CPU), or may also be other general-purpose processors, digital signal processors (DSPs), application specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.
[0037] The memory mainly includes a program storage area and a data storage area. Among them, the program storage area can store an operating system, application programs required for at least one function (such as a sound playback function, an image playback function, etc.); the data storage area can store data created according to the use of the handheld terminal (such as audio data, phone book, etc.). In addition, the memory may include a high-speed random access memory, and may also include a non-volatile memory, such as a hard disk, a memory, a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash card (FlashCard), at least one magnetic disk storage device, a flash memory device, or other volatile solid-state storage devices.
[0038] The air conditioner control method of the present invention mainly aims to improve the humidification atomization effect. Refer to Figure 3 and Figure 4 and in combination with Figure 1 , the air conditioner control method of the present invention includes: After the air conditioner is powered on and runs and obtains the user's humidification operation instruction, the system first executes step S1, and the temperature and humidity sensor detects in real time to obtain the humidity data of the environment. Subsequently, the system executes step S2 to determine whether the humidity data is less than the preset humidity value.
[0039] If the judgment result in step S2 is yes, then step S3 is executed to obtain the tap water parameter data including water temperature data and water pressure data through the multi-functional water meter 41.
[0040] Subsequently, the system executes step S4 to control the opening degree of the first control valve 31 of the humidifying pipeline 21 according to the tap water parameter data.
[0041] Since the changes in water temperature and water pressure will both affect the final atomization effect, in this air conditioner control method, it is desired to adjust the opening degree of the first control valve 31 in combination with the water temperature and water pressure of the tap water, so as to ensure that the atomization effect is as consistent as possible even under the changes of water temperature and water pressure.
[0042] Furthermore, based on the tap water parameter data, the first control valve 31 is controlled to open and maintain a certain flow opening degree δ b . The opening degree δ b is related to the humidifying water temperature T and water pressure P, that is, δ b = f(T, P). In particular, δ b = k·P·T, where k is a constant. At this time, the temperature and pressure of the tap water at a certain temperature and pressure will change after passing through the first control valve 31, and then pass through the filtering unit 43 to reach the inner spray pipe device 23 to achieve the best atomization humidification effect. The specific corresponding relationship can be obtained through experiments or theoretical analysis in combination with the performance parameters of the atomizing nozzle (requirements for atomization temperature and pressure). The example is as follows: The atomization ability of the atomizing nozzle of the inner spray pipe device 23 is related to the water pressure and water temperature. When the atomizing nozzle type is determined, the atomizing nozzle reaches the best atomization effect under a specific water temperature and water pressure condition. For example, assuming that the best atomization water temperature and water pressure of the above atomizing nozzle are 10°C and 150 kPa respectively, the opening degree of the first control valve 31 is controlled to 1.0 at this time, and this opening degree setting is default as the normal opening degree. Further, through testing, the opening degree values of the first control valve 31 required to achieve the best atomization effect under different water temperatures and different water pressures are obtained, as shown in Table 1 below:
[0043] Table 1 - Water Temperature - Water Pressure - Opening Degree Data Table Therefore, through Table 1 above, the opening degree of the first control valve 31 can be controlled in combination with different water quality parameter data to achieve the best atomization humidification effect. Preferably, more parameters can also be tested and the relationship formula between the globe valve opening degree and water temperature and water pressure can be fitted to adapt to more control conditions.
[0044] Among them, in step S4, as can be seen from the example in Table 1 above, the opening degree of the first control valve is positively correlated with the water temperature data, and the opening degree of the first control valve is positively correlated with the water pressure data.
[0045] In one embodiment, the system can combine the relational expression and calculate the opening degree of the first control valve in real time according to the water temperature data and water pressure data obtained in real time.
[0046] In another embodiment, in step S4, determine the opening value that matches the obtained water temperature data and water pressure data according to the pre-stored data table; control the opening degree of the first control valve 31 according to the opening value. For example, store the above Table 1 as the pre-stored data table, and the system can also find the matching opening value from the pre-stored data table according to the obtained water temperature data and water pressure data.
[0047] Subsequently, the system executes step S5 and step S6 to obtain the tap water quality data, calculate and generate the water quality result according to the tap water quality data; then execute step S7 to determine whether the water quality result meets the preset conditions. If not, execute step S8 to control the closing of the first control valve 31 and send a prompt message to replace the filter screen; if so, execute step S9 to operate in the humidification mode.
[0048] In steps S5 to S7, the tap water quality data includes one or more of multiple water quality parameters such as TDS value, pH value, conductivity EC, hardness, and turbidity.
[0049] In this embodiment, when using multiple water quality parameter indicators to judge the water quality conditions, a comprehensive water quality evaluation is required. Here, Y is defined as the comprehensive judgment parameter of the humidification water quality conditions, and the comprehensive judgment parameter of the humidification water quality conditions is the water quality result of the present invention, y1, y2,..., y j are different water quality indicators, and b1, b2,..., b j are the influence coefficients of different water quality indicators on the safety of humidification water quality. Then Y = y1×b1 + y2×b2 +... + y j ×b j . In particular, here it is set that the influence coefficients b j of different water quality indicators on the humidification safety are all positive values. The larger b j , the more significant the influence of this water quality indicator on the humidification safety and the higher the risk. On the contrary, it is safer. Thus, the larger the Y value, the worse the humidification water quality conditions and the higher the risk of humidification safety.
[0050] Further, define Y0 as the threshold value of the water quality condition for humidification safety, that is, the preset condition of the present invention is Y < Y0. In step S7, if Y ≥ Y0, that is, the judgment result is no, it indicates that the current water quality condition does not meet the requirements, there is a humidification safety risk, and the filter unit needs to be replaced in time. Therefore, at this time, the system control will close the first control valve 31 to stop the operation of the humidification mode and use voice push, panel display, mobile phone push and other methods to prompt the user to replace the filter screen in time and then execute the humidification mode. When Y < Y0, that is, when the preset condition is met, the judgment result of step S7 is yes, indicating that the water quality condition meets the humidification requirements. At this time, the air conditioner can be controlled to operate the humidification mode, and the air conditioner continues to execute the next step.
[0051] Specific examples of steps S5 to S7 are as follows: Example 1: Suppose the water quality parameter only includes the TDS value y1, y1 = 500 mg / L, and y1 is the water quality result. At this time, the comprehensive water quality evaluation index is Y = y1 = 500 mg / L. Here, the threshold value of the water quality condition for humidification safety is set as Y0 = 350 mg / L. Since Y > Y0, the current water quality condition is poor, there is a risk of humidification, and the first control valve 31 is closed under the system judgment.
[0052] Example 2: Suppose the water quality parameters include the TDS value y1 and the hardness value y2, y1 = 5 (actually measured 500 mg / L, normalized with a reference TDS value, such as 100 mg / L), y2 = 2 (similarly, actually measured 60 mg / L, normalized with a reference hardness value, such as 30 mg / L), b1 and b2 are the influence coefficients of the TDS index and the hardness index on the humidification water quality safety, b1 = 0.7, b2 = 0.5, and the comprehensive water quality evaluation index (water quality result) Y = y1×b1 + y2×b2 = 4.5. Here, the threshold value of the water quality condition for humidification safety is set as Y0 = 4. Since Y > Y0, the current water quality condition is poor, there is a risk of humidification, and the first control valve 31 is closed under the system judgment.
[0053] Specifically refer to Figure 4 , after the judgment result of step S2 is no and after step S9, step S10 is executed to obtain the operation parameter data of the outdoor unit and the water temperature data of the tap water. The operation parameter data of the outdoor unit mainly includes the pipe temperature data; then step S11 is executed to judge whether the water cooling condition is met. The water cooling condition is that the difference between the pipe temperature data and the water temperature data is greater than or equal to the preset difference. If the judgment result of step S11 is yes, step S12 is executed to control the opening of the second control valve 32 of the water cooling pipeline to perform water cooling on the outdoor unit heat exchanger. When the judgment result of step S11 is no and after step S12 is executed, both return to step S1.
[0054] Judge whether the water cooling function condition is satisfied based on the difference between the pipe temperature data and the water temperature data. Specifically, define T0 as the preset difference. When the pipe temperature data T 管 - the water temperature data T < T0, it indicates that the numerical values of the two temperature data are not much different, and the water cooling has little effect on the heat dissipation of the refrigerant pipe. Therefore, the water cooling function is not turned on. Thus, the present invention uses the pipe temperature data T 管 - the water temperature data T ≥ T0 as the water cooling condition. When the air conditioner operates in the cooling mode and the pipe temperature data T 管 - the water temperature data T ≥ T0, it indicates that the pipe temperature of the outdoor unit is higher than the tap water temperature. Using water cooling can improve the heat dissipation effect of the heat exchanger and enhance the high-temperature cooling capacity. Therefore, the second control valve 32 is opened, and the tap water reaches the outdoor unit through the water cooling pipeline and sprays the refrigerant pipe.
[0055] Mainly, after the system obtains the tap water parameter data such as the water temperature data and the water pressure data through the multi-functional water pump, it can obtain the opening degree of the first control valve of the humidifying pipeline according to the preset calculation method or the preset data table. Therefore, even if the tap water temperature and / or water pressure change, a better atomization effect can be ensured at each time period in the humidifying mode.
[0056] In addition, in the air conditioner control method of the present invention, firstly, the water supply pipeline cancels the setting of the water pump and uses the water pressure of the tap water as the water supply power. This setting can eliminate the pressurization influence of the water pump and ensure the strong correlation between the tap water parameter data, the opening degree of the first control valve, and the atomization effect.
[0057] Readable storage medium embodiment The readable storage medium of the present invention can be any form of storage medium readable by the processor of the computer device, including but not limited to non-volatile memory, volatile memory, ferroelectric memory, etc. A computer program is stored on the readable storage medium. When the processor of the computer device reads and executes the computer program stored in the memory, the steps of the above-mentioned air conditioner control method can be implemented.
[0058] The computer program includes computer program code, which may be in the form of source code, object code, executable files or some intermediate forms, etc. The computer-readable medium may include: any entity or device capable of carrying the computer program code, recording medium, USB flash drive, removable hard disk, magnetic disk, optical disc, computer memory, read-only memory (ROM), random access memory (RAM), electrical carrier signals, telecommunication signals, and software distribution media, etc. It should be noted that the content included in the computer-readable medium may be appropriately increased or decreased according to the requirements of legislation and patent practice within the jurisdiction. For example, in some jurisdictions, according to legislation and patent practice, the computer-readable medium does not include electrical carrier signals and telecommunication signals.
[0059] Finally, it should be emphasized that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention may have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An air conditioning control method, comprising: Get the humidity data of the indoor environment; When the humidity data is less than the preset humidity value, enter the humidification mode; Features: The water supply pipeline of the air conditioner uses the water pressure of tap water as the water supply power; The air conditioning control method further includes: When entering humidification mode: Get tap water parameter data; The opening degree of the first control valve of the humidification pipeline is controlled according to the tap water parameter data.
2. The air conditioning control method according to claim 1, characterized in that: In the step of controlling the opening of the first control valve of the humidification pipeline according to the tap water parameter data: The tap water parameter data includes water temperature data and water pressure data. The opening degree of the first control valve is positively correlated with the water temperature data, and the opening degree of the first control valve is positively correlated with the water pressure data.
3. The air conditioning control method according to claim 1, characterized in that: In the step of controlling the opening of the first control valve of the humidification pipeline according to the tap water parameter data: The tap water parameter data includes water temperature data and water pressure data, and the opening value matching the acquired water temperature data and water pressure data is determined according to a pre-stored data table; The opening degree of the first control valve is controlled according to the opening degree value.
4. The air conditioning control method according to any one of claims 1 to 3, characterized in that: After the step of controlling the opening of the first control valve of the humidification pipeline according to the tap water parameter data, the method further includes: Obtain tap water quality data; Calculate and generate water quality results according to the tap water quality data; If the water quality result does not meet the preset condition, the first control valve is controlled to close.
5. The air conditioning control method according to claim 4, characterized in that: In the step of calculating and generating water quality results according to tap water quality data: The water quality result is generated by performing weighted calculation based on at least two different water quality parameters.
6. The air conditioning control method according to claim 5, characterized in that: In the step of generating the water quality result by performing weighted calculation based on at least two different water quality parameters: The at least two different water quality parameters include at least two of TDS value, pH value, electrical conductivity EC, hardness, and turbidity.
7. The air conditioning control method according to any one of claims 1 to 3, characterized in that: After the steps of obtaining humidity data: Obtain the water temperature data of tap water and the tube temperature data of the outdoor heat exchanger; If the difference between the pipe temperature data and the water temperature data is greater than or equal to a preset difference, the second control valve of the water cooling pipeline is controlled to open.
8. Air conditioning, characterized in that: The invention comprises a processor, wherein the processor is used to implement the air conditioning control method according to any one of claims 1 to 6 when executing a computer program stored in a memory.
9. The air conditioner according to claim 8, characterized in that: Including water supply pipeline, the water supply pipeline mainly includes water inlet pipe, water cooling pipeline and humidification pipeline; The water inlet pipe of the water supply pipeline is connected to tap water, the water cooling pipeline is connected to the outdoor unit of the air conditioner, and the humidification pipeline is connected to the indoor unit of the air conditioner; The first control valve is arranged on the humidification pipeline, and an inner spray device is arranged at the end of the humidification pipeline; The water cooling pipeline is provided with a second control valve, and the end of the water cooling pipeline is provided with an outer spray device; Also included is a water meter arranged in the water supply pipeline, for obtaining tap water parameter data; It also includes a water quality detection unit arranged in the water supply pipeline, which is used to obtain tap water quality data.
10. The air conditioner according to claim 9, characterized in that: The outdoor unit includes an outdoor heat exchanger, the outdoor heat exchanger includes fins, the fins are provided with refrigerant pipe holes, and the spray pipes of the external spray device are inserted into the refrigerant pipe holes.
11. A readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the air conditioning control method as described in any one of claims 1 to 7 is implemented.