Water supply system and water purifier
By designing a sealed heating inner tank and regulating valve for the water supply system in the water purifier, the problem of the water purifier being unable to provide boiling water is solved, achieving the generation of boiling water above 100℃, and pressure relief protection at high temperatures to ensure safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIAMEN BAILIN WATER PURIFICATION TECH CO LTD
- Filing Date
- 2025-08-29
- Publication Date
- 2026-07-28
AI Technical Summary
The heating function of existing water purifiers cannot achieve a true boiling effect and cannot provide boiling water above 100℃.
Design a water supply system including a sealed heating tank, a switch valve, an electric heating tube, and a regulating valve. The system heats water to above 100°C within the sealed heating tank and includes a regulating valve for pressure relief protection to ensure safety.
It achieves the boiling effect of water in the water purifier, ensuring user safety and comfort.
Smart Images

Figure CN224557304U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of water purification equipment technology, and in particular to a water supply system and a water purifier. Background Technology
[0002] Currently, water purifiers with heating functions on the market are mainly divided into storage type and instant heating type. Both heating methods can only reach 95℃ in the hot water of the current water purifiers, which cannot achieve the effect of "true boiling".
[0003] Therefore, there is an urgent need for a water supply system that can provide boiling water. Utility Model Content
[0004] This application provides a water supply system and a water purifier. It addresses the existing technology's urgent need for a water supply system capable of providing boiling water. The technical solution is as follows:
[0005] On the one hand, a water supply system is provided, the water supply system comprising:
[0006] The water supply system is installed inside the water purifier and is used to supply treated water to the outlet of the water purifier. It includes: a sealed heating inner tank, a switch valve, an electric heating element, and a regulating valve.
[0007] The top of the heating inner tank has an inlet pipe and an outlet pipe, and a section of the outlet pipe extends into the heating inner tank. The inlet port of the outlet pipe is at a predetermined distance from the top of the heating inner tank, and the end of the outlet pipe extending out of the heating inner tank faces the outlet. The switch valve is installed on the inlet pipe to control the opening and closing of the inlet pipe.
[0008] The heating section of the electric heating tube is installed inside the heating inner tank to heat the water flowing into the heating inner tank;
[0009] The regulating valve is installed on the water outlet pipe and is configured to control the opening and closing of the water outlet pipe, and to open when the gas pressure in the heating inner tank is greater than or equal to a preset threshold, so as to release pressure in the heating inner tank.
[0010] Optionally, the regulating valve is a valve body integrating an electromagnetic switch valve and a mechanical pressure relief valve. The electromagnetic switch valve in the regulating valve opens the water outlet pipe after receiving an opening signal, and the mechanical pressure relief valve in the regulating valve opens to release pressure after the gas pressure in the heating inner tank exceeds a preset threshold.
[0011] Optionally, the water supply system includes: a control console and a temperature sensor disposed on the outlet pipe on the side of the regulating valve away from the heating inner tank. The control console has a control component and a display screen, and the control component is communicatively connected to the display screen, the temperature sensor and the electric heating tube, respectively.
[0012] The control component is configured to acquire the temperature of the hot water in the outlet pipe through the temperature sensor and send the temperature information to the display screen for display.
[0013] Optionally, the switching valve is a first solenoid valve, and the water supply system includes: a first temperature sensor and a level gauge installed inside the heating tank, both of which are communicatively connected to the control component; the first solenoid valve is communicatively connected to the control component for controlling the opening and closing of the water inlet pipe.
[0014] Optionally, the water supply system further includes: a second solenoid valve and a normal temperature water pipe, wherein the normal temperature water pipe is connected in parallel and isolated from the water inlet pipe, and the outlet of the normal temperature water pipe is opened towards the outlet of the water purifier.
[0015] The second solenoid valve is installed on the ambient temperature water pipeline and is communicatively connected to the control component to control the on / off state of the ambient temperature water pipeline.
[0016] Optionally, the water supply system further includes: a condenser assembly installed at the water outlet of the water purifier, the condenser assembly including: a water channel and a condenser, the water channel being detachably installed at the water outlet of the water purifier, and the water channel having an inlet channel and an outlet channel that are interconnected, the inlet channel being connected to both the outlet pipe and the ambient temperature water pipe; the condenser installed at the outlet channel is capable of condensing the water vapor flowing through the water channel.
[0017] Optionally, the inner wall of the water inlet channel is sealed to the edge area of the water inlet end of the condenser using a sealing element.
[0018] Optionally, the inner wall of the water outlet channel and the side of the condenser have a gas guide channel that connects to the interior of the condenser.
[0019] Optionally, the heating inner tank has a baffle plate disposed at the outlet of the water inlet pipe, the baffle plate being disposed opposite to the outlet of the water inlet pipe.
[0020] Optionally, the water supply system includes a one-way valve installed on the water inlet pipe, through which the water flows into the heating inner tank.
[0021] On the other hand, a water purifier is provided, the water purifier comprising: a faucet assembly and a water supply system, the faucet assembly being provided with a water outlet, and the water supply system having a water outlet pipe cooperating with the faucet assembly; the water supply system being any of the water supply systems given above.
[0022] The faucet component has a water-out state and a water-out state.
[0023] The beneficial effects of the technical solutions provided in this application include at least the following:
[0024] By incorporating a sealed heating inner tank into the water supply system, with inlet and outlet pipes extending from the top, a valve on the inlet pipe allows room temperature water to be injected into the tank when open, and closes when the water level reaches a certain value. Additionally, the inner tank contains a heating section for an electric heating element, which heats the room temperature water within the sealed tank when operating normally. In this sealed heating system, the heating process increases the internal pressure of the inner tank, correspondingly raising the water's saturation temperature (boiling point), thus enabling the water to be heated to 100 degrees Celsius or higher, meeting the user's need for boiling water. Furthermore, a regulating valve on the outlet pipe allows for immediate opening or closing of the outlet. For example, when the regulating valve is open, hot water from the heating tank can be discharged through the outlet pipe and then from the water purifier's outlet. If the water inside the heating tank heats up to an excessively high temperature, causing the gas pressure inside the heating tank to exceed or equal a preset threshold, the system can release the pressure, ensuring user safety even in the event of a water supply system malfunction. Furthermore, the hot water outlet pipe extends into the heating tank, with a section of the pipe positioned a certain distance from the top of the tank. When water is added, it cannot completely fill the heating tank, creating a cavity at the top. This cavity acts as a buffer against the expansion of the water during heating, preventing the heating tank from rupturing due to excessive pressure. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of a water supply system installed on a water purifier according to an embodiment of this application;
[0027] Figure 2This is a schematic diagram of another water supply system installed on a water purifier according to an embodiment of this application;
[0028] Figure 3 This is a partial structural block diagram of the water supply system provided in the embodiments of this application;
[0029] Figure 4 This is a cross-sectional view of a condenser assembly provided in an embodiment of this application;
[0030] Figure 5 This is a partial structural schematic diagram of a water purifier provided in an embodiment of this application.
[0031] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation
[0032] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0034] It should be understood that the phrase "one embodiment" or "an embodiment" throughout the specification means that a specific feature, structure, or characteristic related to the embodiment is included in at least one embodiment of the present invention. Therefore, "in one embodiment" or "in an embodiment" appearing throughout the specification do not necessarily refer to the same embodiment. Furthermore, these specific features, structures, or characteristics may be combined in any suitable manner in one or more embodiments.
[0035] Please refer to Figure 1 , Figure 1 This is a schematic diagram of a water supply system installed on a water purifier according to an embodiment of this application. The water supply system 000 is integrated into the water purifier 00 and is used to supply treated water to the water outlet 10 of the water purifier 00. The water supply system 000 includes: a sealed heating inner tank 100, a switch valve 200, an electric heating element 300, and a regulating valve 400.
[0036] In the water supply system 000, the top of the heating inner tank 100 has an inlet pipe 101 and an outlet pipe 102 extending outwards. A portion 102a of the outlet pipe 102 extends into the heating inner tank 100, and the inlet port of this portion 102a is at a predetermined distance h from the top of the heating inner tank 100. The end of the outlet pipe 102 extending out of the heating inner tank 100 faces the water outlet 10 of the water purifier 00. A switch valve 200 is provided on the inlet pipe 101 to control the on / off state of the inlet pipe 101. For example, the heating inner tank 100 may have a baffle plate 103 provided at the outlet of the inlet pipe 101, which may be positioned opposite to the outlet of the inlet pipe 101. In this way, the baffle plate 103 disperses the room temperature water that enters the heating tank 100 from the water inlet pipe 101, reducing the impact on the temperature of the already heated water.
[0037] The heating section of the electric heating element 300 in the water supply system 000 is installed inside the heating inner tank 100 and is used to heat the water flowing into the heating inner tank 100. Here, the conductive connection end of the electric heating element 300 extends out of the heating inner tank 100 for electrical connection.
[0038] The regulating valve 400 in the water supply system 000 is installed on the water outlet pipe 102. The regulating valve 102 is configured to control the opening and closing of the water outlet pipe 102, and to open when the gas pressure in the heating inner tank 100 is greater than or equal to a preset threshold, so as to depressurize the heating inner tank 100.
[0039] In this embodiment, a sealed heating inner tank 100 is installed in the water supply system. An inlet pipe 101 and an outlet pipe 102 extend from the top of the heating inner tank 100. A switch valve 200 installed on the inlet pipe 101 injects room temperature water into the heating inner tank 100 when it is open. The switch valve 200 closes when the water level in the heating inner tank 100 reaches a certain value. Additionally, a heating section of an electric heating element 300 is installed inside the heating inner tank 100. Thus, when the electric heating element 300 is in normal working condition, it can heat the room temperature water inside the sealed heating inner tank 100. Here, in the sealed heating container system, the heating process increases the internal pressure of the inner tank, correspondingly raising the saturation temperature (i.e., boiling point) of the water. This allows the water inside the heating inner tank 100 to be heated to 100 degrees Celsius or higher, meeting the user's requirement for boiling water at that boiling point. Furthermore, a regulating valve 400 is installed on the water outlet pipe 102. This regulating valve 400 can instantly open or close the water outlet pipe 102. For example, when the regulating valve 400 is open, the hot water in the heating inner tank 100 can be discharged from the water outlet pipe 102 and then discharged from the water outlet 10 of the water purifier 00. If the water in the heating inner tank 100 heats up to an excessively high temperature, causing the air pressure in the heating inner tank 100 to exceed or equal to a preset threshold, the valve can also be opened to release the gas in the heating inner tank 100. That is, it can release pressure normally when the water supply system 000 is abnormal, ensuring the user's safety. Furthermore, the hot water outlet pipe 102 extends into the heating inner tank 100. A portion 102a of the outlet pipe 102 is a certain distance h from the top of the heating inner tank 100. When water is poured into the heating inner tank, the water cannot completely fill it, and a cavity will form in the area above the heating inner tank 100. This cavity will act as a buffer medium for the volume expansion of the water during heating, preventing the heating inner tank from rupturing due to excessive pressure. It should be noted that this setting of h is related to the size of the heating inner tank volume and can be set according to actual usage needs; it is not limited here.
[0040] In summary, the water supply system provided in this application embodiment can include: a sealed heating inner tank, a switch valve, an electric heating element, and a regulating valve. By incorporating a sealed heating inner tank into the water supply system, with an inlet pipe and an outlet pipe extending from the top of the inner tank, the switch valve on the inlet pipe allows room temperature water to be injected into the heating inner tank when open, and closes when the water level in the inner tank reaches a certain value. Furthermore, the heating inner tank is equipped with a heating section for the electric heating element, thus heating the room temperature water in the sealed heating inner tank when the electric heating element is in normal working condition. Here, as the temperature inside the heating inner tank gradually increases, the boiling point of the water gradually increases, thereby enabling the water in the heating inner tank to be heated to 100 degrees Celsius or higher, meeting the user's demand for boiling water at that boiling point. Furthermore, a regulating valve is installed on the water outlet pipe, which can instantly open or close the water outlet pipe. For example, when the regulating valve is open, the hot water in the heating tank can be discharged from the water outlet pipe and then discharged from the water purifier's outlet. If the water in the heating tank heats up too much, causing the gas pressure inside the heating tank to exceed or equal to a preset threshold, the valve can also be opened to release the gas inside the heating tank. In other words, it can normally release pressure when the water supply system is abnormal, ensuring the user's safety.
[0041] For example, the water supply system 000 may include a one-way valve 500 installed on the water inlet pipe 101, through which water can flow into the heating inner tank 100. In this way, the one-way valve 500 installed before the water inlet of the heating inner tank 100 can effectively prevent the hot water from flowing back into the water.
[0042] In this application, the regulating valve 400 installed on the water outlet pipe 102 can be a valve body that integrates an electromagnetic switch valve and a mechanical pressure relief valve. The electromagnetic switch valve in the regulating valve can open the water outlet pipe after receiving an opening signal, and the mechanical pressure relief valve in the regulating valve can open and release pressure after the gas pressure in the heating inner tank exceeds a preset threshold.
[0043] Optional, please refer to Figure 2 , Figure 2This is a schematic diagram of another water supply system installed on a water purifier according to an embodiment of this application. The water supply system 000 includes: a control console 600 and a temperature sensor 700 disposed on the outlet pipe 102 on the side of the regulating valve 400 away from the heating inner tank 100. The control console 600 has a control component 601 and a display screen 602. The control component 601 can be communicatively connected to the display screen 602, the temperature sensor 700, and the electric heating element 300, respectively. The control component 601 is configured to: acquire the temperature of the hot water in the outlet pipe 102 through the temperature sensor 700 and send the temperature information to the display screen 602 for display. In this way, the temperature sensor 700 can monitor the temperature of the hot water in the outlet pipe 102 in real time and display it on the display screen 602 for easy observation by the user.
[0044] Please refer to this. Figure 3 , Figure 3 This is a partial structural block diagram of the water supply system provided in the embodiments of this application. The control component 601 may include: a PLC control system 601a and a signal converter 601b. The temperature sensor 700 can be communicatively connected to the signal converter 601b, the signal converter 601b can be communicatively connected to the PLC control system 601a, and the display screen 602 can be communicatively connected to the PLC control system 601a.
[0045] In the embodiments of this application, such as Figure 2 As shown, the switching valve 200 can be a first solenoid valve. The water supply system 000 also includes a first temperature sensor 800 and a level gauge 900 installed inside the heating inner tank 100. Both the first temperature sensor 800 and the level gauge 900 can be communicatively connected to the control component 601. The first solenoid valve, communicatively connected to the control component 601, can control the opening and closing of the water inlet pipe 101. Thus, the control component 601 can obtain the water level inside the heating inner tank 100 through the level gauge 900, and control the switching valve 200 to open when the water level reaches a certain depth. Additionally, the control component 601 can obtain the water temperature inside the heating inner tank 100 through the first temperature sensor 800, and control the electric heating element 300 to stop heating when the water temperature reaches a certain temperature.
[0046] Optional, such as Figure 2 As shown, the water supply system 000 may further include: a second solenoid valve 1000 and a room temperature water pipe 1100, which is connected in parallel and isolated from the inlet water pipe 101. The outlet of the room temperature water pipe 1100 faces the outlet 10 of the water purifier 00. The second solenoid valve 1000 is mounted on the room temperature water pipe 1100 and is communicatively connected to the control component 601 to control the opening and closing of the room temperature water pipe 1100. Thus, by controlling the opening of either the first or second solenoid valve 1000, room temperature water can be diverted to either the inlet water pipe 101 or the room temperature water pipe 1100.
[0047] In the embodiments of this application, please refer to Figure 2 and Figure 4 , Figure 4 This is a cross-sectional view of a condenser assembly provided in an embodiment of this application. The water supply system 000 may further include a condenser assembly 1200 installed at the water outlet 10 of the water purifier 00. The condenser assembly 1200 includes a water channel 1201 and a condenser 1202. The water channel 1201 is detachably installed at the water outlet 10 of the water purifier 00, and has an inlet channel D1 and an outlet channel D2 that are interconnected. The inlet channel D1 can be connected to both the outlet pipe 102 and the ambient temperature water pipe 1100. The condenser 1202 can be installed at the outlet channel D2 to condense the water vapor flowing through the water channel. Thus, the condenser 1202, located within the water channel 1201, is used to quickly condense the steam from the boiling water path into water, preventing water vapor from splashing out of the outlet, thereby achieving the function of preventing scalding when dispensing boiling water. It should be noted that there is only one water inlet channel D1, and both room temperature water and hot water enter the water channel 1201 through the water inlet channel D1.
[0048] For example, such as Figure 4 As shown, the condenser 1202 may include: a shell K1, and a multi-layered metal mesh K2 arranged in an array within the shell K1 along the direction from the water inlet channel D1 to the water outlet channel D2. The shell K1 has an inlet communicating with the water inlet channel D1 and an outlet communicating with the water outlet channel D2. Thus, the multi-layered metal mesh K2 structure simultaneously generates turbulent reorganization of the water flow, reducing the velocity of the outlet water flow and achieving a splash reduction effect. Here, the mesh density of the multi-layered metal mesh K2 structure is 10-120 meshes, the spacing between adjacent mesh layers is 0.5-3 mm, and the meshes of each layer are arranged in an alternating pattern.
[0049] In this application, as Figure 4 As shown, the inner wall of the water inlet channel D1 in the water channel 1201 is sealed to the edge area of the water inlet end of the condenser 1202 using an annular seal 1203. This end-face sealing between the water inlet channel D1 and the water inlet end of the condenser 1202 forces the water vapor mixture to completely pass through the condenser. In other words, it completely passes through the multi-layer metal mesh K2 structure.
[0050] Optional, such as Figure 4 As shown, the inner wall of the water outlet channel D2 in the water channel 1201 can have a gas guide channel F1 connecting to the interior of the condenser 1202 between it and the side of the condenser 1202. In this way, a gap is provided between the condenser 1202 and the inner wall of the water outlet channel D2, connecting it to the atmospheric environment for gas intake and condensation. For example, the side wall of the condenser 1202 is provided with a gas guide channel F1 connecting the gas guide channel F1 to the interior of the condenser 1202.
[0051] In summary, the water supply system provided in this application embodiment can include: a sealed heating inner tank, a switch valve, an electric heating element, and a regulating valve. By incorporating a sealed heating inner tank into the water supply system, with an inlet pipe and an outlet pipe extending from the top of the inner tank, the switch valve on the inlet pipe allows room temperature water to be injected into the inner tank when open, and closes when the water level in the inner tank reaches a certain value. Furthermore, the inner tank is equipped with a heating section for the electric heating element, enabling the room temperature water in the sealed heating inner tank to be heated when the electric heating element is in normal working condition. Here, in the sealed heating container system, the heating process increases the internal pressure of the inner tank, correspondingly raising the saturation temperature (i.e., boiling point) of the water, thereby enabling the water in the inner tank to be heated to 100 degrees Celsius or higher, meeting the user's demand for boiling water at that boiling point. Furthermore, a regulating valve is installed on the water outlet pipe, which can instantly open or close the water outlet pipe. For example, when the regulating valve is open, the hot water in the heating tank can be discharged from the water outlet pipe and then discharged from the water purifier's outlet. If the water in the heating tank heats up too much, causing the gas pressure inside the heating tank to exceed or equal to a preset threshold, the valve can also be opened to release the gas inside the heating tank. In other words, it can normally release pressure when the water supply system is abnormal, ensuring the user's safety.
[0052] This application also provides a water purifier, please refer to the embodiments therein. Figure 5 , Figure 5 This is a partial structural schematic diagram of a water purifier provided in an embodiment of this application. The water purifier 00 may include: a faucet component 001 and a water supply system 000. The faucet component 001 is provided with a water outlet 10, and the water outlet pipe 102 in the water supply system 000 cooperates with the faucet component 001; wherein, the faucet component 001 has a water outlet state and a water not outlet state.
[0053] For example, in the case of a water supply system equipped with a control console, the control console can be installed on the faucet assembly. The user sends operation commands to the control console through the control panel on the faucet assembly and receives various detection signals through the control console.
[0054] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.
[0055] The above description is merely an optional embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A water supply system, characterized in that, The water supply system is installed inside the water purifier and is used to supply treated water to the outlet of the water purifier. It includes: a sealed heating inner tank, a switch valve, an electric heating element, and a regulating valve. The top of the heating inner tank has an inlet pipe and an outlet pipe, and a section of the outlet pipe extends into the heating inner tank. The inlet port of the outlet pipe is at a predetermined distance from the top of the heating inner tank. The end of the outlet pipe that extends out of the heating inner tank faces the outlet. The switch valve is installed on the inlet pipe to control the opening and closing of the inlet pipe. The heating section of the electric heating tube is installed inside the heating inner tank to heat the water flowing into the heating inner tank; The regulating valve is installed on the water outlet pipe and is configured to control the opening and closing of the water outlet pipe, and to open when the gas pressure in the heating inner tank is greater than or equal to a preset threshold, so as to release pressure in the heating inner tank.
2. The water supply system according to claim 1, characterized in that, The regulating valve is a valve body that integrates an electromagnetic switch valve and a mechanical pressure relief valve. After receiving an opening signal, the electromagnetic switch valve in the regulating valve opens the water outlet pipe, and the mechanical pressure relief valve in the regulating valve opens to release pressure after the gas pressure in the heating inner tank exceeds a preset threshold.
3. The water supply system according to claim 1 or 2, characterized in that, The water supply system includes: a control console and a temperature sensor installed on the outlet pipe and located on the side of the regulating valve away from the heating tank. The control console has a control component and a display screen. The control component is communicatively connected to the display screen, the temperature sensor and the electric heating tube, respectively. The control component is configured to acquire the temperature of the hot water in the outlet pipe through the temperature sensor and send the temperature information to the display screen for display.
4. The water supply system according to claim 3, characterized in that, The switching valve is a first solenoid valve, and the water supply system includes: a first temperature sensor and a level gauge installed inside the heating tank, both of which are communicatively connected to the control component; the first solenoid valve is communicatively connected to the control component to control the opening and closing of the water inlet pipe.
5. The water supply system according to claim 4, characterized in that, The water supply system also includes: a second solenoid valve and a normal temperature water pipe, wherein the normal temperature water pipe is connected in parallel and isolated from the water inlet pipe, and the outlet of the normal temperature water pipe is opened towards the outlet of the water purifier. The second solenoid valve is installed on the ambient temperature water pipeline and is communicatively connected to the control component to control the on / off state of the ambient temperature water pipeline.
6. The water supply system according to claim 5, characterized in that, The water supply system further includes a condenser assembly installed at the water outlet of the water purifier. The condenser assembly includes a water channel and a condenser. The water channel is detachably installed at the water outlet of the water purifier and has an inlet channel and an outlet channel that are interconnected. The inlet channel is connected to both the outlet pipe and the ambient temperature water pipe. The condenser is installed at the outlet channel and can condense the water vapor flowing through the water channel.
7. The water supply system according to claim 6, characterized in that, The inner wall of the water inlet channel is sealed to the edge area of the water inlet end of the condenser using a sealing element.
8. The water supply system according to claim 6, characterized in that, The inner wall of the water outlet channel and the side of the condenser have a gas guide channel that connects to the interior of the condenser.
9. The water supply system according to claim 1 or 2, characterized in that, The water supply system includes a one-way valve installed on the water inlet pipe, through which the water flows into the heating inner tank.
10. A water purifier, characterized in that, include: The faucet component and the water supply system according to any one of claims 1-9, wherein the faucet component is provided with a water outlet, and the water outlet pipe in the water supply system is compatible with the faucet component; The faucet component has a water-out state and a water-out state.