An indoor air conditioning system and equipment capable of continuous humidification and oxygen supply

By combining an indoor/outdoor split layout with an automatic water supply module, the interconnection problem between the oxygen generator and the humidifier is solved, enabling continuous humidification and self-cleaning, improving indoor oxygen content and air quality, extending equipment life, and enhancing user experience.

CN113757806BActive Publication Date: 2025-10-31凌成宇
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Patent Information

Application Number
CN202111087738.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-16
Publication Date
2025-10-31
Estimated Expiration
2041-09-16

AI Technical Summary

Technical Problem

Currently, home oxygen concentrators and humidifiers are separate devices with a lack of effective interconnection, resulting in cumbersome operation. Oxygen concentrators are prone to becoming unusable due to dust accumulation, and indoor oxygen levels remain unchanged. Humidifiers, which require frequent refilling, are also inconvenient to use.

Method used

It adopts an indoor-outdoor split layout, with the oxygen generator located outdoors. Outdoor air is delivered indoors through connecting pipelines. A humidification module and an automatic water supply module are installed indoors to achieve continuous humidification and self-cleaning filtration. The use of electrostatic adsorption filter and automatic water supply module together extends the life of the oxygen generator, and the negative ion content in the air is increased through a negative ion generator.

Benefits of technology

It improves indoor oxygen levels, reduces manual operation, extends the lifespan of the oxygen generator, lowers the maintenance rate, ensures air quality and humidity, enhances user experience, and features self-cleaning and air synchronization capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses an indoor air conditioning system capable of continuous humidification and oxygen supply, comprising an outdoor system and an indoor system. The indoor system is connected to the outdoor system via connecting pipelines. The indoor system includes a humidification module, an air outlet module, an automatic water supply module, and an indoor control module. The outdoor system includes an air intake cleaning module, an oxygen generation module, and an outdoor control module. This invention utilizes a separate layout for the indoor and outdoor systems, separating the oxygen generator and humidifier into indoor and outdoor units. The oxygen generator is placed outdoors, supplying oxygen from the outdoor air to the indoor unit, thereby increasing the oxygen content of the indoor air. Simultaneously, an automatic water supply module is added to the indoor humidification module to enable continuous humidification. The automatic water supply module works in conjunction with the air intake cleaning module located on the outdoor oxygen generator to filter the air entering the oxygen generator while also enabling the air intake cleaning module to self-clean.
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Description

Technical Field

[0001] This invention relates to the field of smart homes, and in particular to an indoor air conditioning system capable of continuous humidification and oxygen supply. Background Technology

[0002] Nowadays, people pursue health and comfort, striving for a better life. Air is something we breathe constantly, and improving air quality significantly enhances public health. However, most people in urban life today live indoors, where air quality inevitably differs from that of a natural forest. Prolonged periods in a relatively enclosed environment lead to carbon dioxide production during respiration, which is harmful to health, most notably causing drowsiness. Even if some homes have indoor plants that produce oxygen, the oxygen production is very limited, and plants also respire, producing carbon dioxide. Therefore, some advocate opening windows for ventilation. However, opening windows also introduces dust, making it a double-edged sword. Furthermore, in hot summers or cold winters, people use air conditioning or heating, further limiting ventilation. When air conditioning or heating is on, the indoor air becomes very dry, requiring humidification for comfortable breathing.

[0003] To achieve greater comfort, people invented air conditioners to regulate indoor temperature, humidifiers to humidify indoor air, and air purifiers to purify indoor air. However, a suitable method for providing oxygen indoors is lacking. Furthermore, these machines operate independently, without effective interconnection.

[0004] Currently, most home oxygen concentrators concentrate oxygen and output it through pipes, which are then connected to oxygen masks via inhalation tubes. When the concentrator is placed indoors, this method essentially concentrates the oxygen in the room and then outputs it through pipes, keeping the overall oxygen content in the room constant. Home humidifiers, on the other hand, require frequent refilling and water changes. Although some humidifiers have anti-dry-burning features and automatically stop working and enter standby mode when there is no water, the daily need to refill them is still inconvenient. Furthermore, there is no effective control and interconnection between air conditioners, humidifiers, air purifiers, and oxygen concentrators, requiring users to control multiple electrical devices, making operation overly cumbersome and reducing the user experience. Summary of the Invention

[0005] The technical problem to be solved by this invention is to overcome the shortcomings of the prior art by using a separate indoor and outdoor system layout for the oxygen concentrator and humidifier, etc. The oxygen concentrator is placed outdoors, and oxygen from the outdoor air is delivered indoors to increase the oxygen content of the indoor air. At the same time, an automatic water supply module is added to the indoor humidification module to realize continuous humidification operation. The automatic water supply module works with the air intake cleaning module set on the outdoor oxygen concentrator to filter the air entering the oxygen concentrator to extend the life of the oxygen concentrator and ensure oxygen production efficiency. At the same time, the air intake cleaning module also realizes self-cleaning.

[0006] To solve the above-mentioned technical problems, this application provides a technical solution: an indoor air conditioning system capable of continuous humidification and oxygen supply, comprising an outdoor system and an indoor system, characterized in that: the indoor system is connected to the outdoor system via connecting pipelines;

[0007] The indoor system includes a humidification module, an air outlet module, an automatic water supply module, and an indoor control module. The humidification module, air outlet module, and automatic water supply module are controlled by the indoor control module. The automatic water supply module controls water to enter the water storage tank in the humidification module, and the water and air mixed after being humidified by the humidification module are discharged into the room through the air outlet module connected to it. The indoor control module is connected to the cloud server wirelessly and / or via wired connection.

[0008] The outdoor system includes an air intake cleaning module, an oxygen generation module, and an outdoor control module. The air intake cleaning module and the oxygen generation module are controlled by the outdoor control module, and the outdoor control module communicates with the indoor control module through a connecting pipeline. The air purified by the air intake cleaning module enters the oxygen generation module to generate oxygen. The generated oxygen enters the indoor unit through the connecting pipeline and is discharged into the room through the air outlet module.

[0009] Furthermore, the aforementioned indoor air conditioning system capable of continuous humidification and oxygen supply is characterized in that: the air intake cleaning module includes a housing, an electrostatic adsorption filter, an air intake pipe, and an air delivery pipe. The housing is divided into an upper chamber and a lower chamber by the electrostatic adsorption filter. The air intake end of the air intake pipe is connected to the outside atmosphere and is located in the upper chamber. The air intake pipe extends through the electrostatic adsorption filter to the lower chamber, so that the end of the air intake pipe is located in the lower chamber. The beginning of the air delivery pipe is located inside the upper chamber. The end of the air delivery pipe is connected to the air intake of the oxygen generation module through a negative pressure fan. Furthermore, a pressure sensor and an air detection device that communicate with the outdoor control module are installed in the upper chamber.

[0010] Furthermore, the upper and lower ends of the housing are respectively provided with water inlet pipes and drain pipes that communicate with the upper and lower chambers, and both the water inlet pipes and drain pipes are provided with outdoor unit solenoid valves controlled by the outdoor control module. The water inlet pipe is connected to the automatic water supply module through the water supply pipeline.

[0011] Furthermore, a filter screen is provided at the other end of the air intake pipe, and a condenser is provided at the other end of the air delivery pipe. The condenser is located between a one-way damper and a negative pressure fan. The damper is opened and closed in a controlled manner to prevent water vapor from entering the pipe where the condenser and negative pressure fan are located.

[0012] Furthermore, the lower chamber is equipped with an outdoor unit liquid level sensor and an electric heating tube that communicate with the outdoor control module. The outdoor unit liquid level sensor is located at one end of the air intake pipe, and the electric heating tube is suspended on the side wall of the lower chamber below the outdoor unit liquid level sensor.

[0013] Furthermore, the automatic water supply module includes a water supply system, a water purification device, and a water supply pipeline. Water flowing out of the water supply system enters the water purification device for filtration and softening, and then enters the water storage tank in the humidification module through the water supply pipeline equipped with an indoor unit solenoid valve. The water storage tank is equipped with an outdoor unit liquid level sensor that communicates with the indoor controller, and the indoor unit solenoid valve is controlled by the indoor controller.

[0014] Furthermore, the water purification equipment includes a water purifier and a water softener. The inlet of the water purifier is connected to the water supply system, the outlet of the water purifier is connected to the inlet of the water softener, and the outlet of the water softener is connected to the water supply pipeline.

[0015] Furthermore, a negative ion generator is installed at the air outlet module.

[0016] Furthermore, the indoor control module communicates with the mobile control terminal via a communication module through wired and / or wireless communication, and the connecting pipelines include power supply cables, communication cables, oxygen supply pipelines, and water supply pipelines.

[0017] To address the aforementioned technical problems, this application provides another technical solution: an indoor air conditioning device capable of continuous humidification and oxygen supply, comprising an indoor unit and an outdoor unit, connected by a connecting pipeline. The indoor unit comprises an indoor unit body and the aforementioned indoor system disposed therein; the outdoor unit comprises an outdoor unit body and the aforementioned outdoor system disposed therein; the connecting pipeline includes a power supply cable, a communication cable, an oxygen supply pipe, and a water supply pipe; the indoor unit body has a reserved control interface for communication with an indoor controller in the indoor system; and a replaceable panel is provided on the outside of the indoor unit body, the panel containing a strong magnet and a wireless power supply module controlled by the indoor control module; the communication module is one or more of an infrared module, a radio frequency module, a WIFI module, and a Bluetooth module.

[0018] The beneficial effects of this invention are:

[0019] 1. This invention utilizes a separate indoor and outdoor system layout, separating the oxygen concentrator and humidifier into indoor and outdoor units. The oxygen concentrator is placed outdoors, supplying oxygen from the outdoor air to the indoor unit, thereby increasing the oxygen content of the indoor air. Simultaneously, an automatic water supply module is added to the indoor humidification module, enabling continuous humidification. The automatic water supply module works in conjunction with the air intake cleaning module located on the outdoor oxygen concentrator to filter the air entering the oxygen concentrator while also enabling the air intake cleaning module to self-clean, thus achieving long-term maintenance-free operation of the outdoor system.

[0020] 2. In this invention, the indoor and outdoor systems are connected via connecting pipelines. The air intake cleaning module and oxygen generation module in the outdoor system are controlled by the outdoor control module, and the indoor control module, along with the humidification module, air outlet module, and automatic water supply module in the indoor system, are controlled by the indoor control module. This establishes control communication between the various electrical devices. Simultaneously, the indoor control module communicates with a mobile control terminal via a communication module for wired and / or wireless communication. Through the control operation of the mobile control terminal, the starting and stopping of each electrical device are achieved. With the assistance of the automatic water supply module, continuous humidification and continuous oxygen generation are realized, reducing the number of personnel required to operate the electrical equipment, enhancing the user experience, and aggregating outdoor oxygen into the indoor environment to increase indoor oxygen levels. Since the oxygen concentrator is typically placed outdoors, the air intake cleaning module filters the air entering the oxygen concentrator, solving the problem of the oxygen concentrator becoming unusable due to dust accumulation.

[0021] 3. Under the action of a negative pressure fan, outdoor air enters the lower chamber through the intake pipe. Dust and other impurities in the air are adsorbed and filtered by an electrostatic adsorption filter before entering the oxygen generator through the air supply pipe. This ensures the purity of the oxygen generator's raw materials, which not only improves the oxygen production quality but also effectively extends the generator's lifespan and reduces its maintenance rate. Simultaneously, the inclusion of a pressure sensor and air detection device allows for the monitoring of the electrostatic adsorption filter's blockage level and the quality of the filtered air, facilitating dust removal and cleaning of the filter. The fan is positioned at the rear, ensuring the air is filtered and clean, thus extending the fan's lifespan. A multi-fan strategy can also be employed.

[0022] 4. Under the control of the outdoor unit's electromagnetic valve, water from the automatic water supply module enters the housing through the inlet pipe. The impact of the water washes away the dust adsorbed on the electrostatic adsorption filter and discharges it through the drain pipe. Simultaneously, when air quality is poor or the electrostatic adsorption effect is unsatisfactory, the electromagnetic valves on the inlet and drain pipes can work together to submerge the bottom outlet of the air intake pipe below the liquid surface, creating a water-washed air cleaning process. This dissolves dust and other impurities in the water, allowing the air to first enter the water before being drawn into the pipe by the negative pressure fan. Simultaneously, the fan power is increased to offset the reduced air intake caused by water resistance. The purified air ensures the purity of the oxygen generator's raw material, which not only improves the oxygen generator's oxygenation efficiency but also effectively extends its service life and reduces its maintenance rate.

[0023] 5. The other end of the air intake pipe of this invention is equipped with a filter screen, which can perform preliminary filtration of the air, filtering out large particles of dust and other impurities to the outside of the box, reducing the frequency of self-cleaning inside the box. The other end of the air supply pipe is equipped with a condenser. When air enters the spiral finned condenser tube (to maximize the contact area between the airflow and the condenser fins), the gas in the air will liquefy after contact with the condenser tube, and finally drip into the water tank below under the action of gravity, reducing the amount of water vapor in the air entering the oxygen generator and affecting the lifespan and oxygen production quality of the oxygen generator.

[0024] 6. This invention, through the action of an outdoor unit liquid level sensor and an electric heating element, enables the detection of the liquid level in the tank, thereby facilitating the control of the water volume within the tank. Simultaneously, the electric heating element heats and boils the water in the tank. Under the action of the liquid level sensor, the boiling water level is precisely near the electrostatic adsorption mesh. The boiling water can clean the dust on the mesh surface; the impact force generated by the boiling water dissolves dust and impurities on the electrostatic adsorption mesh into the water. Furthermore, due to the vaporization of the boiling water, the pressure inside the tank is higher than the pressure outside the tank; the steam performs work, and the water... Steam is ejected in reverse from the air inlet, which can carry away the dust on the filter screen set at the air inlet of the air inlet pipe. During this process, the air pressure sensor detects the gas pressure inside the chamber. If the chamber air pressure is too high and dangerous, heating will be stopped. After self-cleaning is completed, the wastewater is finally discharged from the drain pipe. In addition, a damper is installed between the condenser and the negative pressure fan. When the air intake cleaning module performs the self-cleaning operation, the one-way damper is closed to prevent high-pressure steam from passing through the negative pressure fan and entering the oxygen generator during heating, which would damage the negative pressure fan and the oxygen generator.

[0025] 7. This invention draws water from the municipal water supply network. After being purified by a water purification device, the water is connected to the humidification module and the air intake cleaning module through the water supply pipeline. Under the action of the corresponding liquid level sensor and solenoid valve, automatic water supply operation is realized, achieving continuous humidification and the self-cleaning function of the air intake cleaning module.

[0026] 8. The water purification equipment of the present invention includes a water purifier and a water softener, which filters and softens water to prevent impurities in the water from clogging the water supply pipes and humidification module, and also prevents the formation of scale.

[0027] 9. The air outlet module of this invention is equipped with a negative ion generator. The air blown out through the air outlet module passes through the negative ion generator, which can increase the negative ion content of the indoor air and promote the physical and mental health of people.

[0028] 10. The indoor control module of this invention communicates with the mobile control terminal via a communication module through wired and / or wireless communication, enabling communication between the indoor control module, the outdoor control module, and the mobile control terminal. The connecting pipelines include power cables, communication cables, oxygen supply pipelines, and water supply pipelines, enabling power supply and communication between the indoor and outdoor systems. The oxygen supply pipelines and water supply pipelines facilitate the delivery of oxygen from the outdoor oxygen generator to the indoor system, and the water supply pipelines enable the automatic water supply module to automatically supply water to the indoor and outdoor systems.

[0029] 11. The indoor unit of this invention has a replaceable panel on its outer side. The panel contains a strong magnet and a wireless power supply module controlled by the indoor control module. The strong magnets are arranged according to a certain rule to match the magnetic attachment components. These magnetic attachment components include magnetic clock components, magnetic Bluetooth speaker components, magnetic LCD display components, magnetic projection components, magnetic holographic projection components, and magnetic camera components. The design of the magnetic attachment components only needs to conform to the arrangement of the strong magnets within the replaceable panel and the weight and load requirements. The driving power for the magnetic attachment components is provided by the wireless power supply module. The replaceable panel can provide wireless power supply modules of different power levels depending on the power requirements of the magnetic attachment components.

[0030] 12. The indoor control module of this invention is connected to the cloud and can acquire air data information for a specific region stored in the cloud. This air data information is collected by air detection equipment installed in the specific region and uploaded to the cloud. The indoor control module can uniformly control the humidification module, oxygen generation module, and negative ion generation module, and can also call the communication module to control other indoor devices. For example, it can automatically turn on the air conditioner to adjust the indoor temperature and automatically turn on the air purifier to purify the indoor air, thereby adjusting the overall indoor air quality to make the indoor air data nearly identical to the air data acquired from the cloud, achieving a "synchronized air" function. Attached Figure Description

[0031] Figure 1 This is a structural block diagram of an indoor air conditioning system capable of continuous humidification and oxygen supply.

[0032] Figure 2 This is a schematic diagram of the intake cleaning module.

[0033] Figure 3 A schematic diagram of an indoor air conditioning device capable of continuous humidification and oxygen supply.

[0034] Figure 4 This is an assembly diagram of the indoor unit body, replaceable panel, and magnetic mounting components.

[0035] Figure 5 This is a schematic diagram of the magnetic attachment component. Detailed Implementation

[0036] Example: See Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5In the diagram, 1-Indoor unit, 2-Outdoor unit, 3-Connecting pipeline, 4-Water supply pipeline, 5-Water purification equipment, 6-Municipal pipeline network; 8-Mounting hole, 9-Mounting bracket, 10-Replaceable panel, 11-Strong magnet, 12-Wireless power supply module, 13-External component; a-Box, b-Inlet pipe, c-Outlet pipe, d-Electrostatic adsorption filter, e-Negative pressure fan, f-Air pressure sensor, g-Water inlet pipe, h-Drain pipe, i-Filter, j-Condenser, k-Electric heating element, m-Damper.

[0037] An indoor air conditioning system and equipment capable of continuous humidification and oxygen supply includes an outdoor system and an indoor system. The indoor system is connected to the outdoor system via connecting pipelines. The indoor system includes a humidification module, an air outlet module, an automatic water supply module, and an indoor control module. The outdoor system includes an air intake cleaning module, an oxygen generation module, and an outdoor control module. By using a separate layout for the indoor and outdoor systems, the oxygen generator and humidifier are separately installed indoors and outdoors. The oxygen generator is placed outdoors, supplying oxygen from the outdoor air to the indoor unit, thereby increasing the oxygen content of the indoor air. Simultaneously, an automatic water supply module is added to the indoor humidification module to enable continuous humidification. The automatic water supply module works in conjunction with the air intake cleaning module located on the outdoor oxygen generator to filter the air entering the oxygen generator while also enabling the air intake cleaning module to self-clean.

[0038] The present application will now be described in detail with reference to the accompanying drawings and embodiments. Example 1

[0039] like Figure 1 As shown, in order to solve the above-mentioned technical problems, the present application provides a technical solution as follows: an indoor air conditioning system capable of continuous humidification and oxygen supply, including an outdoor system and an indoor system, wherein the indoor system is connected to the outdoor system through connecting pipelines;

[0040] The indoor system includes a humidification module, an air outlet module, an automatic water supply module, and an indoor control module. The humidification module, air outlet module, and automatic water supply module are controlled by the indoor control module. The automatic water supply module controls the water to enter the water storage tank in the humidification module, and the indoor air humidified by the humidification module is discharged into the room through the air outlet module connected to it. The indoor control module is connected to the cloud server wirelessly and / or via wired connection.

[0041] The outdoor system includes an air intake cleaning module, an oxygen generation module, and an outdoor control module. The air intake cleaning module and the oxygen generation module are controlled by the outdoor control module, and the outdoor control module communicates with the indoor control module through connecting pipelines. The air purified by the air intake cleaning module enters the oxygen generation module to generate oxygen. The generated oxygen enters the indoor unit through the connecting pipelines and is discharged into the room through the air outlet module.

[0042] The indoor and outdoor systems are connected by connecting pipelines. Meanwhile, the air intake cleaning module and oxygen generation module in the outdoor system are controlled by the outdoor control module, and the indoor control module and the humidification module, air outlet module and automatic water supply module in the indoor system are controlled by the indoor control module, realizing the control connection between various module devices.

[0043] The indoor control module communicates with the mobile control terminal via wired and / or wireless communication. Through the mobile control terminal, it controls the start and stop of various electrical devices. With the assistance of the automatic water supply module, it achieves continuous humidification and oxygen production, reducing the number of personnel required to operate the electrical equipment, enhancing the user experience, and aggregating outdoor oxygen into the room to increase indoor oxygen levels. Since the oxygen concentrator is typically placed outdoors, the air intake cleaning module filters the air entering the oxygen concentrator, solving the problem of dust accumulation rendering it unusable.

[0044] The indoor control module connects to the cloud via a communication module, and the mobile control terminal connects to the cloud via a network. The cloud stores real-time updated air data for specific regions. These specific regions refer to scenic areas with excellent air quality worldwide. Air data for these regions is collected by air data acquisition devices installed in those regions and transmitted to the cloud for storage. The collected air data includes oxygen content, humidity, air cleanliness, negative ion concentration, and temperature. Upon receiving a command from the mobile terminal to synchronize air quality in the specific region, the indoor control module utilizes the communication module (including one or more of infrared, radio frequency, Bluetooth, and Wi-Fi modules) to control other indoor devices, such as turning on the air conditioner and air purifier. Simultaneously, the indoor unit starts up, generating oxygen, humidifying, and producing negative ions. By monitoring data from indoor air quality sensors, the module processes and regulates the operation of various indoor devices in real time to achieve comprehensive multi-dimensional adjustments to indoor air quality, including regulating oxygen content, humidity, air cleanliness, negative ion concentration, and temperature. This ensures that the indoor air data matches the air data for the specific region acquired from the cloud. Users can select their desired region or scenario for simulation based on air quality data stored in the cloud. The device will automatically coordinate its own functions and those of other air conditioning equipment until the air quality data matches the user's selected simulated location.

[0045] Multiple indoor air quality sensors can be configured to achieve more accurate indoor air quality detection. These sensors transmit the detected data to the indoor control module, providing a more precise view of the air quality throughout the entire room, rather than just the area near the unit, thus facilitating indoor air conditioning adjustments. Example 2

[0046] This embodiment is obtained by describing in detail the technical features such as the air intake cleaning module based on Embodiment 1. The remaining technical features are the same as in Embodiment 1 and will not be repeated here. Only the added technical features are described in detail below, and their specific features are as follows: Figure 2 As shown, the air intake cleaning module includes a housing a, an air intake pipe b, and an air delivery pipe c. The housing a is divided into an upper chamber and a lower chamber by an electrostatic adsorption filter d. One end of the air intake pipe b and the air delivery pipe c passes through the top of the housing and extends to the lower chamber and the upper chamber, respectively. The other end of the air intake pipe b is connected to the outside atmosphere, and the other end of the air delivery pipe c is connected to the air intake of the oxygen generation module through a negative pressure fan e. The upper chamber is equipped with a pressure sensor f and an air detection device that communicate with the outdoor control module.

[0047] Under the action of the negative pressure fan e, outdoor air enters the lower chamber through the air intake pipe b, and is filtered by the electrostatic adsorption filter d to adsorb and filter dust and other impurities in the air before entering the oxygen generator through the air supply pipe c. This ensures the purity of the oxygen generator's raw materials, which not only helps improve the oxygen production quality of the oxygen generator, but also effectively extends the service life of the oxygen generator and reduces its maintenance rate. At the same time, the setting of the air pressure sensor f and the air detection device enables the detection of the degree of blockage of the electrostatic adsorption filter d and the quality of the filtered air, which facilitates the replacement or dust removal and cleaning of the electrostatic adsorption filter d. The fan is located at the rear, and the air is filtered and clean, which extends the life of the fan. At the same time, a multi-fan strategy can be adopted. Example 3

[0048] This embodiment is obtained by adding technical features such as inlet pipe g and drain pipe h based on embodiment two. The other technical features are the same as those in embodiment two, and will not be repeated here. The following is a detailed description of the added technical features, which are as follows: the upper and lower ends of the housing a are respectively provided with inlet pipe g and drain pipe h that communicate with the upper chamber and the lower chamber, and both inlet pipe g and drain pipe h are provided with outdoor unit solenoid valves controlled by the outdoor control module. The inlet pipe g is connected to the automatic water supply module through the water supply pipeline.

[0049] Under the control of the outdoor unit's solenoid valve, water from the automatic water supply module enters the housing a through the inlet pipe g. Under the impact of the water, the dust adsorbed on the electrostatic adsorption filter d is washed away and discharged through the drain pipe h. At the same time, with the cooperation of the outdoor unit's solenoid valves on the inlet pipe g and the drain pipe h, the outlet of the air intake pipe b is submerged below the liquid surface, forming a water-washed air cleaning process. This dissolves dust and other impurities in the air into the water, ensuring the purity of the oxygen generator's raw materials. This not only helps improve the oxygen production quality of the oxygen generator but also effectively extends its service life and reduces its maintenance rate. Example 4

[0050] This embodiment is obtained by adding technical features such as filter i and condenser j to embodiment three. The other technical features are the same as those in embodiment three, and will not be repeated here. The following is a detailed description of the added technical features, which are as follows: filter i is provided at the other end of the air intake pipe b, and condenser j is provided at the other end of the air delivery pipe c. The condenser j is located between the one-way damper m and the negative pressure fan e. The one-way damper is controlled by the outdoor control module and is opened and closed as needed to prevent water vapor from entering the pipes where the condenser j and the negative pressure fan e are located.

[0051] The other end of the air intake pipe b is equipped with a filter screen i, which can perform preliminary filtration of the air, filtering out large particles of dust and other impurities to the outside of the housing a, reducing the frequency of self-cleaning inside the housing a. The other end of the air supply pipe c is equipped with a condenser j. Air enters the spiral finned condenser tube (to maximize the contact area between the airflow and the condenser fins). After contacting the condenser tube, the gas in the air will liquefy, and finally, under the action of gravity, it can drip into the water tank below, preventing it from entering the oxygen generator and affecting the lifespan and oxygen production quality of the oxygen generator. Example 5

[0052] This embodiment is obtained by adding technical features such as an outdoor unit liquid level sensor and an electric heating tube k based on embodiment four. The other technical features are the same as those in embodiment four, and will not be repeated here. The following is a detailed description of the added technical features, which are as follows: an outdoor unit liquid level sensor and an electric heating tube k that communicate with the outdoor control module are installed in the lower chamber. The outdoor unit liquid level sensor is installed at one end of the air inlet pipe, and the electric heating tube k is suspended on the side wall of the lower chamber below the outdoor unit liquid level sensor.

[0053] With the help of the outdoor unit's liquid level sensor and electric heating element K, the liquid level in tank A is detected, facilitating the control of the water volume within tank A. Simultaneously, the electric heating element K heats and boils the water in tank A. Under the influence of the liquid level sensor, the boiling water level is precisely near the electrostatic adsorption mesh. The boiling water cleans the mesh surface of dust; the impact force generated by the boiling dissolves dust and impurities on the electrostatic adsorption mesh into the water. Furthermore, due to water vaporization, the pressure inside tank A is higher than the pressure outside. The steam performs work, and the water... Steam is ejected in the opposite direction from the air inlet, which can carry away the dust on the filter screen i at one end of the air inlet pipe b. During this process, the pressure sensor f detects the gas pressure inside the chamber a. If the pressure in chamber a is too high and dangerous, heating will be stopped, and the wastewater will eventually be discharged from the drain pipe h. Furthermore, a damper m is installed between the condenser j and the negative pressure fan e. When the electrostatic adsorption screen d is cleaned with water vapor, the one-way damper is closed to prevent high-pressure steam from passing through the negative pressure fan and entering the oxygen generator, which could damage the negative pressure motor and the oxygen generator. Example 6

[0054] This embodiment is based on Embodiment 5, which describes the technical features of the automatic water supply module in detail. The other technical features are the same as those in Embodiment 5, and will not be repeated here. The following describes the added technical features in detail. The specific features are as follows: The automatic water supply module includes a water supply system, a water purification device and a water supply pipeline. The water flowing out of the water supply system enters the water purification device for filtration and softening, and then enters the water storage tank in the humidification module through the water supply pipeline equipped with an indoor unit solenoid valve. The water storage tank is equipped with an outdoor unit liquid level sensor that communicates with the indoor controller, and the indoor unit solenoid valve is controlled by the indoor controller.

[0055] Water from the municipal water supply network is purified by the water purification equipment and then connected to the humidification module and the air intake cleaning module through the water supply pipeline. Under the action of the corresponding liquid level sensor and solenoid valve, the water supply operation is automatically realized, achieving continuous humidification and the self-cleaning function of the air intake cleaning module. Example 7

[0056] This embodiment is based on Embodiment Six, further describing the technical features of the water purification equipment. The remaining technical features are the same as those in Embodiment Six, and will not be repeated here. The following describes the added technical features in detail. The specific features are: the water purification equipment includes a water purifier and a water softener. The inlet of the water purifier is connected to the water supply system, the outlet of the water purifier is connected to the inlet of the water softener, and the outlet of the water softener is connected to the water supply pipeline.

[0057] Water purification equipment includes water purifiers and water softeners, which filter and soften water to prevent impurities in the water from clogging water supply pipes and humidification modules, while also preventing the formation of scale. Example 8

[0058] This embodiment is obtained by adding technical features such as a negative ion generator based on embodiment seven. The other technical features are the same as those in embodiment seven, and will not be repeated here. The following describes the added technical features in detail. The specific feature is that a negative ion generator is provided at the air outlet module.

[0059] A negative ion generator is installed at the air outlet module. The air blown out of the air outlet module passes through the negative ion generator, which can increase the negative ion content of the indoor air and promote the physical and mental health of people. Example 9

[0060] This embodiment is obtained by adding technical features such as a mobile control terminal based on embodiment eight. The other technical features are the same as those in embodiment eight, and will not be repeated here. The following describes the added technical features in detail. The specific features are: the indoor control module communicates with the mobile control terminal via a communication module through wired and / or wireless communication, and the connecting pipelines include power supply cables, communication cables, oxygen supply pipelines and water supply pipelines.

[0061] The indoor control module communicates with the mobile control terminal via a communication module using wired and / or wireless communication. This enables communication between the indoor and outdoor control modules and the mobile control terminal, facilitating control of both modules via the mobile control terminal. The connecting pipelines include power cables, communication cables, oxygen delivery pipelines, and water supply pipelines, enabling power supply and communication between the indoor and outdoor systems. The oxygen delivery pipelines and water supply pipelines transport oxygen from the outdoor oxygen generator to the indoor system, while the water supply pipelines facilitate automatic water supply to both the indoor and outdoor systems via the automatic water supply module.

[0062] like Figure 3 As shown, in order to solve the above-mentioned technical problems, another technical solution provided by this application is: an indoor air conditioning device capable of continuous humidification and oxygen supply, including an indoor unit 1 and an outdoor unit 2, which are connected by a connecting pipeline 3. The indoor unit 1 includes an indoor unit body and the aforementioned indoor system installed therein, and the outdoor unit 2 includes an outdoor unit body and the aforementioned outdoor system installed therein. The connecting pipeline 3 includes a power supply cable, a communication cable, an oxygen supply pipeline, and a water supply pipeline. The indoor unit body has a reserved control interface for communication with the indoor controller in the indoor system, and a replaceable panel 10 is provided on the outside of the indoor unit body. The replaceable panel 10 has a built-in strong magnet 11 and a wireless power supply module 12 controlled by the indoor control module.

[0063] Water from the municipal water supply system 6 is purified by the water purification equipment 5 and then connected to the humidification module in the indoor unit 1 and the air intake cleaning module in the outdoor unit 2 through the water supply pipeline 4. Under the action of the corresponding liquid level sensor and solenoid valve, automatic water supply operation is realized, realizing continuous humidification and the self-cleaning function of the air intake cleaning module.

[0064] The communication module is mainly used to receive signals from mobile phones or remote controls and communicate with other devices to turn the machine on and off, and transmit information to the mobile phone to realize smart home functions. The communication module is one or more of the following: infrared module, radio frequency module, WIFI module and Bluetooth module. Through the function of infrared module and radio frequency device, it can be linked with other appliances in the house, such as controlling the air conditioner to turn on and off, the air purifier to turn on and off, and communicate with the data fed back by the indoor air quality sensor to realize the complete closed loop of the "air synchronization" function.

[0065] A replaceable panel 10 is provided on the outside of the indoor unit. The replaceable panel 10 has a built-in strong magnet 11 and a wireless power supply module 12 controlled by the indoor control module. It can not only magnetically attach components 13, but also provide power through the wireless power supply module 12, thus realizing a variety of possibilities. For example, it can magnetically attach clock components, LCD display components, projection components, holographic projection components, camera components, and speaker components, etc. With this foundation, it can provide a variety of possibilities while complying with magnetic and power supply specifications.

[0066] The following explanation uses a magnetic external speaker assembly as an example. Figure 4 and Figure 5 As shown, the mounting bracket 9 on the replaceable panel 10 extends into the mounting hole 8, so that it is fixedly installed on the indoor unit body. The strong magnet 11 on the magnetic external attachment component 13 is attracted to the replaceable panel 10, and the wireless power receiving module 14 on the magnetic external attachment component 13 obtains power to supply power to the magnetic external attachment component 13.

[0067] The reserved control interface can be connected to the replaceable panel 10 and the magnetic external component 13, so that it is controlled by the indoor control module, which facilitates the integration of various components and realizes centralized and unified control.

[0068] The description of the various embodiments above tends to emphasize the differences between the various embodiments. The similarities or similarities between them can be referred to, and for the sake of brevity, they will not be repeated here.

[0069] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention in any way. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present invention shall still fall within the scope of the technical solution of the present invention.

Claims

1. An indoor air conditioning system capable of continuous humidification and oxygen supply, comprising an outdoor system and an indoor system, characterized in that: The indoor system is connected to the outdoor system via connecting pipelines; the connecting pipelines contain water supply lines, from which water is supplied from the indoor system to the outdoor system. The indoor system includes a humidification module, an air outlet module, an automatic water supply module, and an indoor control module. The humidification module, air outlet module, and automatic water supply module are controlled by the indoor control module. The automatic water supply module controls water to enter the water storage tank in the humidification module, and the indoor air humidified by the humidification module is discharged into the room through the air outlet module connected to it. The indoor control module is connected to the cloud server wirelessly and / or via wired connection. It acquires air data information of a specific region stored in the cloud, and makes overall adjustments to the indoor air to make the indoor air data more similar to the air data acquired in the cloud, thus achieving the "synchronized air" function; The outdoor system includes an air intake cleaning module, an oxygen generation module, and an outdoor control module. The air intake cleaning module and the oxygen generation module are controlled by the outdoor control module, and the outdoor control module communicates with the indoor control module through a connecting pipeline. The air purified by the air intake cleaning module enters the oxygen generation module to generate oxygen. The oxygen generated enters the indoor system through the connecting pipeline and is discharged into the room through the air outlet module. The air intake cleaning module includes a housing, an electrostatic adsorption filter, an air intake pipe, and an air delivery pipe. The housing is divided into an upper chamber and a lower chamber by the electrostatic adsorption filter. The air intake end of the air intake pipe is connected to the outside atmosphere and is located in the upper chamber. The air intake pipe extends through the electrostatic adsorption filter to the lower chamber, so that the end of the air intake pipe is located in the lower chamber. The beginning of the air delivery pipe is located in the upper chamber. The end of the air delivery pipe is connected to the air intake of the oxygen generation module through a negative pressure fan. The upper chamber is equipped with a pressure sensor and an air detection device that communicate with the outdoor control module. The upper and lower ends of the housing are respectively provided with water inlet pipe and water outlet pipe communicating with the upper chamber and the lower chamber, and both the water inlet pipe and the water outlet pipe are provided with outdoor unit solenoid valves controlled by the outdoor control module. The water inlet pipe is connected to the automatic water supply module through the water supply pipeline. A filter screen is installed at the other end of the air intake pipe, and a condenser is installed at the other end of the air delivery pipe. The condenser is located between the one-way damper and the negative pressure fan. The one-way damper is controlled by the outdoor control module and is opened and closed as needed to prevent water vapor from entering the pipe where the condenser and negative pressure fan are located. The lower chamber is equipped with an outdoor unit liquid level sensor and an electric heating tube that communicate with the outdoor control module. The outdoor unit liquid level sensor is located at one end of the air inlet pipe, and the electric heating tube is suspended on the side wall of the lower chamber below the outdoor unit liquid level sensor.

2. The indoor air conditioning system capable of continuous humidification and oxygen supply according to claim 1, characterized in that: The automatic water supply module includes a water supply system, a water purification device, and a water supply pipeline. Water flowing from the water supply system enters the water purification device for filtration and softening, and then enters the water storage tank in the humidification module through the water supply pipeline equipped with an indoor unit solenoid valve. The water storage tank is equipped with an outdoor unit liquid level sensor that communicates with the indoor control module, and the indoor unit solenoid valve is controlled by the indoor control module.

3. The indoor air conditioning system capable of continuous humidification and oxygen supply according to claim 2, characterized in that: The water purification equipment includes a water purifier and a water softener. The inlet of the water purifier is connected to the water supply system, the outlet of the water purifier is connected to the inlet of the water softener, and the outlet of the water softener is connected to the water supply pipeline.

4. The indoor air conditioning system capable of continuous humidification and oxygen supply according to claim 3, characterized in that: A negative ion generator is installed at the air outlet module.

5. The indoor air conditioning system capable of continuous humidification and oxygen supply according to claim 4, characterized in that: The indoor control module communicates with the mobile control terminal via a communication module through wired and / or wireless communication. The connecting pipelines include power supply cables, communication cables, oxygen supply pipelines, and water supply pipelines.

6. An indoor air conditioning device capable of continuous humidification and oxygen supply, comprising an indoor unit and an outdoor unit, wherein the indoor unit and the outdoor unit are connected by a connecting pipeline, characterized in that: The indoor unit includes an indoor unit body and an indoor system as described in any one of claims 1-5 disposed therein; the outdoor unit includes an outdoor unit body and an outdoor system as described in any one of claims 1-5 disposed therein; the connecting pipelines include a power supply cable, a communication cable, an oxygen supply pipeline, and a water supply pipeline; the indoor unit body has a reserved control interface for communication with the indoor controller in the indoor system; and a replaceable panel is provided on the outside of the indoor unit body. The replaceable panel can function as a functional component with independent functions. The replaceable panel has a built-in strong magnet and a wireless power supply module controlled by the indoor control module. The communication module is one or more of an infrared module, a radio frequency module, a WIFI module, and a Bluetooth module.

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