Water using device and control method thereof, electronic equipment, medium and program product
By integrating the functions of softening water, purifying water, cleaning water and heating water into a water-using device, the problems of high costs and large space occupancy caused by multiple products in the prior art are solved, and a more economical and space-efficient water use solution is achieved.
Patent Information
- Application Number
- CN202510177273.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-05-30
AI Technical Summary
In the prior art, multiple products are used to meet the various water needs of users, and there are defects of high costs and large space occupancy.
An integrated water use device is provided, including a softening water system, a purified water system, a purified water system and a heating system, through which the functions of softening water, purified water, a purified water, and a heating water are realized.
It reduces the cost of water use equipment, reduces space consumption, and meets the various water needs of users.
Smart Images

Figure CN120058147A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of water-using device control, and particularly relates to a water-using device, a control method thereof, an electronic device, a medium, and a program product. Background Art
[0002] With the increasing popularity of aquatic products in users' homes, the single water purification function can no longer meet the needs of some users. In household water use, it includes water purification needs, soft water needs, cleaning water needs, etc., and also includes normal temperature water needs and hot water needs. In order to meet various water use needs of users under their respective manufacturers, currently, there are many products on the market to meet these needs, such as water purifiers, water softeners, cleaning water machines, water heaters, mini water heaters, heating kettles, etc. However, these products generally can only meet a single function. If users need to meet multiple needs, they need to purchase many products. On the one hand, the cost is high, and at the same time, these products also occupy a large amount of household use space of users. Summary of the Invention
[0003] The technical problem to be solved by the present disclosure is to overcome the defects of high cost and large occupied space in the prior art of using multiple products to meet various needs of users, and to provide a water-using device, a control method thereof, an electronic device, a medium, and a program product.
[0004] The present disclosure solves the above technical problem through the following technical solutions:
[0005] The first aspect of the present disclosure provides a water-using device, including a softened water system, a purified water system, a cleaning water system, and a heating system;
[0006] The cleaning water system is used to filter the incoming water of the household device;
[0007] The softened water system is used to soften the filtered incoming water;
[0008] The purified water system is used to purify the incoming water of the household device;
[0009] The heating system is used to heat the purified incoming water.
[0010] Preferably, the heating system includes a storage-type heating module, and the storage-type heating module includes a first heat exchange tube, a second heat exchange tube, a water storage cavity, a softened water inlet, a cleaning water inlet, a purified water inlet, a softened water outlet, a cleaning water outlet, and a purified water outlet. The first heat exchange tube and the second heat exchange tube are both arranged in the water storage cavity;
[0011] The storage-type heating module is used to heat and store the softened incoming water.
[0012] Preferably, the softened water system includes a softening passage, and the softening passage includes a softening module, a soft water mixing passage, and a mixing valve.
[0013] Preferably, the water using device further includes a first pre-filter, and the first pre-filter is arranged in front of the softening passage;
[0014] The first pre-filter is used for filtering the water inlet before softening.
[0015] Preferably, the purified water system includes a purified water passage, a first flushing passage, and a second flushing passage. The purified water passage includes a solenoid valve, a second pre-filter, a water pump, a first one-way valve, a membrane filter element, a post-filter, and pipelines; the first flushing passage includes a waste water solenoid valve and pipelines; the second flushing passage includes a second one-way valve and pipelines;
[0016] and / or
[0017] The water using device further includes a temperature sensor, a first electric current limiting valve, and a second electric current limiting valve; the first electric current limiting valve is arranged on the warm cleaning water passage, and the second electric current limiting valve is arranged on the warm purified water passage;
[0018] The temperature sensor is used for detecting the outlet water temperature.
[0019] The second aspect of the present disclosure provides a control method for a water using device. The control method is applicable to the water using device described in the first aspect, and the control method includes:
[0020] In response to detecting that the current purified water temperature value does not reach the preset temperature value, obtain the current working voltage value of the water pump;
[0021] In response to the current working voltage value reaching the voltage upper limit value or the voltage lower limit value, control the purified water at the preset temperature value to flow out according to the received water taking instruction.
[0022] Preferably, the control method further includes:
[0023] In response to detecting that the current purified water temperature value at the water outlet reaches the preset temperature value, control the purified water at the water outlet to flow out according to the received water taking instruction;
[0024] and / or
[0025] The control method further includes:
[0026] In response to the current working voltage value of the water pump not reaching the voltage upper limit value or the voltage lower limit value, re-obtain the current voltage value of the water pump until the current purified water temperature value at the water outlet reaches the preset temperature value or the current working voltage value of the water pump reaches the voltage upper limit value or the voltage lower limit value.
[0027] The third aspect of the present disclosure provides an electronic device, including a memory, a processor, and a computer program stored on the memory and configured to run on the processor. When the processor executes the computer program, the control method of the water-using device described in the first aspect is implemented.
[0028] The fourth aspect of the present disclosure provides a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the control method of the water-using device described in the first aspect is implemented.
[0029] The fifth aspect of the present disclosure provides a computer program product, including a computer program. When the computer program is executed by a processor, the control method of the water-using device described in the first aspect is implemented.
[0030] On the basis of conforming to common knowledge in the art, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred examples of the present disclosure.
[0031] The positive and progressive effects of the present disclosure are as follows:
[0032] The water-using device of the present disclosure integrates a softened water system, a purified water system, a cleaning water system, and a heating system, and simultaneously has the functions of softening water, purifying water, cleaning water, and heating water, reducing the cost of the water-using device, reducing the occupied space of the water-using device, and meeting the various water-using needs of users. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 It is a schematic structural diagram of the water-using device provided in Embodiment 2 of the present disclosure.
[0034] Figure 2 It is a flowchart of the control method of the water-using device provided in Embodiment 1 of the present disclosure.
[0035] Figure 3 It is a schematic structural diagram of the electronic device for implementing the control method of the water-using device in Embodiment 3 of the present disclosure. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0036] The present disclosure will be further described below by way of embodiments, but the present disclosure is not limited to the scope of the described embodiments.
[0037] In the embodiments of the present disclosure, prefix words such as "first" and "second" are only used to distinguish different described objects, and have no restrictive effect on the position, order, priority, quantity, content, etc. of the described objects. In the embodiments of the present disclosure, the use of prefix words such as ordinal numbers for distinguishing described objects does not constitute a limitation on the described objects. The statement of the described objects refers to the description in the context of the claims or embodiments, and no redundant limitation should be formed due to the use of such prefix words. In addition, in the description of this embodiment, unless otherwise specified, the meaning of "a plurality" is two or more.
[0038] In the embodiments of the present disclosure, the processing of collection, storage, use, processing, transmission, provision, and disclosure of the user's personal information involved all comply with the provisions of relevant laws and regulations and do not violate public order and good customs.
[0039] Embodiment 1
[0040] Figure 1 is a schematic structural diagram of a water-using device provided for Embodiment 1 of the present disclosure, as Figure 1 shown, including a softened water system, a purified water system, a cleaning water system, and a heating system;
[0041] The cleaning water system is used to filter the incoming water of the household device;
[0042] In this embodiment, the cleaning water system is used to roughly filter the incoming water of the household device and is used for cleaning, washing, etc.;
[0043] The softened water system is used to soften the filtered incoming water;
[0044] In this embodiment, the softened water system is used to soften the filtered incoming water and is used for cleaning, washing, bathing, etc.;
[0045] The purified water system is used to purify the incoming water of the household device;
[0046] In this embodiment, the purified water system is used to purify and filter the incoming water of the household device and is used for cleaning, drinking, etc.;
[0047] The heating system is used to heat the purified incoming water.
[0048] As Figure 1 shown, the heating system includes a storage-type heating module, and the storage-type heating module includes a first heat exchange tube, a second heat exchange tube, a water storage cavity, a softened water inlet, a cleaning water inlet, a purified water inlet, a softened water outlet, a cleaning water outlet, a purified water outlet. The first heat exchange tube and the second heat exchange tube are both arranged in the water storage cavity;
[0049] The storage-type heating module is used to heat and store the softened incoming water.
[0050] In this embodiment, the water-using device includes a softened normal-temperature water passage, a softened hot water passage, a normal-temperature cleaning water passage, a warm cleaning water passage, a normal-temperature purified water passage, and a warm purified water passage.
[0051] Among them, the same storage-type heating module provides the heating function, and three types of water heating functions are realized by one storage-type heating module.
[0052] Specifically, a storage-type heating module (for example, a water heater) is selected to directly heat and store the softened water (such as adopting solutions like storage-type water heaters, etc.).
[0053] The storage-type heating module includes two heat exchange tubes (for example, a first heat exchange tube and a second heat exchange tube), which are arranged in the water storage cavity. The water in the water storage cavity surrounds the heat exchange tubes. When the water passes through the heat exchange tubes, the water in the water storage cavity heats the water in the heat exchange tubes.
[0054] The storage-type heating module includes a softened water inlet, a cleaning water inlet, a purified water inlet, a softened water outlet, a cleaning water outlet, and a purified water outlet.
[0055] In an optional embodiment, the softened water system includes a softening passage, and the softening passage includes a softening module, a soft water mixing passage, and a mixing valve.
[0056] In this embodiment, the mixing valve can be adjusted according to the user's needs and the local water quality conditions to obtain softened water with different softening effects.
[0057] In an optional embodiment, as Figure 1 shown, the water-using device further includes a first pre-filter, and the first pre-filter is arranged in front of the softening passage;
[0058] The first pre-filter is used to filter the water inlet before softening.
[0059] In this embodiment, the first pre-filter is arranged at the front end of the softening passage. Preferably, the first pre-filter can be selected from a pre-filter, PP cotton, activated carbon, etc.
[0060] In addition, the first pre-filter filters the water before softening and is also a filtering device for the cleaning water.
[0061] In an optional embodiment, as Figure 1 shown, the purified water system includes a purified water passage, a first flushing passage, and a second flushing passage. The purified water passage includes a solenoid valve, a second pre-filter, a water pump, a first one-way valve, a membrane filter element, a post-filter, and pipelines; the first flushing passage includes a waste water solenoid valve and pipelines; the second flushing passage includes a second one-way valve and pipelines;
[0062] In this embodiment, the second pre-filter is optional. An activated carbon filter is preferably used. When there is a first pre-filter, the second pre-filter can be present or absent.
[0063] Membrane filter: A nanofiltration filter or a reverse osmosis filter is preferably used.
[0064] The function of the second flushing passage is to flush the membrane filter with softened water, reducing the hardness of the water in front of the membrane of the membrane filter, avoiding scale formation on the surface of the membrane filter, and greatly extending the service life of the membrane filter. At the same time, when the first pre-filter uses a PP cotton filter or other materials that do not adsorb residual chlorine, during the soft water flushing through the second flushing passage, since the softened water contains the residual chlorine originally present in the tap water, it can effectively sterilize the surface of the membrane filter (it should be noted that the bacteria intercepted or bred on the surface of the membrane filter will increase with use, producing some by-products, resulting in a certain odor in the filtered purified water or accelerating the blockage of the membrane filter), thereby effectively ensuring the quality of the purified water and extending the service life of the membrane filter.
[0065] It should be noted that Figure 1 Whether some components in
[0066] are included or not does not affect the actual use. For example, the first pre-filter may not be provided in the water using device; Figure 1 In an optional embodiment, as
[0067] shown, the water using device further includes a temperature sensor, a first electric flow limiting valve, and a second electric flow limiting valve; the first electric flow limiting valve is arranged on the warm cleaning water passage, and the second electric flow limiting valve is arranged on the warm purified water passage;
[0068] In this embodiment, through the control of the water pump, multi-gear warm purified water is obtained.
[0069] The water using device of this embodiment integrates a softened water system, a purified water system, a cleaning water system, and a heating system, and has the functions of softened water, purified water, cleaning water, and heated water at the same time, reducing the cost of the water using device, reducing the occupied space of the water using device, and meeting the various water use requirements of users.
[0070] Embodiment 2
[0071] Corresponding to the foregoing embodiment of a water using device, the present disclosure also provides an embodiment of a control method for a water using device.
[0072] Figure 2 As shown in Figure 2 for a flowchart of a control method for a water using device provided in Embodiment 2 of the present disclosure, the control method is applicable to the water using device in Embodiment 1, and includes:
[0073] S1. In response to the detected current purified water temperature value not reaching the preset temperature value, obtain the current working voltage value of the water pump;
[0074] In this embodiment, the preset temperature value is set according to the actual situation and is not specifically limited here.
[0075] S2. In response to the current working voltage value reaching the upper voltage limit value or the lower voltage limit value, control the purified water at the preset temperature value to flow out according to the received water intake instruction.
[0076] In an optional embodiment, the control method further includes:
[0077] In response to the detected current purified water temperature value at the water outlet reaching the preset temperature value, control the purified water at the water outlet to flow out according to the received water intake instruction;
[0078] In an optional embodiment, the control method further includes:
[0079] In response to the current working voltage value of the water pump not reaching the upper voltage limit value or the lower voltage limit value, re-obtain the current voltage value of the water pump until the current purified water temperature value at the water outlet reaches the preset temperature value or the current working voltage value of the water pump reaches the upper voltage limit value or the lower voltage limit value.
[0080] In the specific implementation process, for example, taking the control of warm purified water as an example, the user selects the warm purified water temperature; the water pump is preset with a working voltage value, and the second electric current-limiting valve works at the maximum opening (controlling the water outlet flow through the opening) (the purpose is to make the working pressure behind the water pump as low as possible, so that the noise of the water pump is low); after a preset time (to avoid the influence of the water in the pipeline), detect whether the temperature sensor reaches the set temperature value. If not, use PID to control the working voltage value of the water pump to make the temperature of the warm purified water flowing out steadily approach the preset temperature value until the temperature reaches the preset temperature value;
[0081] Or when it is detected that the current working voltage value of the water pump reaches the upper voltage limit value or the lower voltage limit value (for example, the upper limit value can be 30V and the lower limit value can be 12V), control the purified water at the preset temperature value to flow out according to the received water intake instruction; when it is detected that the current working voltage value of the water pump does not reach the upper voltage limit value or the lower voltage limit value, re-obtain the current voltage value of the water pump until the current purified water temperature value at the water outlet reaches the preset temperature value or the current working voltage value of the water pump reaches the upper voltage limit value or the lower voltage limit value.
[0082] This embodiment can accurately control the water-using device by combining the purified water temperature value of the water-using device with the working voltage value of the water pump, meeting various water-using needs of users.
[0083] Embodiment 3
[0084] Figure 3FIG. 0 is a schematic structural diagram of an electronic device shown in Embodiment 3 of the present disclosure. The electronic device includes a memory, a processor, and a computer program stored on the memory and configured to run on the processor. When the processor executes the computer program, the control method of the water-using device described in any of the above embodiments is implemented. Figure 3 The electronic device 90 shown is merely an example and should not impose any limitation on the functions and usage scope of the embodiments of the present disclosure.
[0085] As Figure 3 shown, the electronic device 90 may be presented in the form of a general-purpose computing device, for example, it may be a server device. The components of the electronic device 90 may include, but are not limited to: at least one of the above-mentioned processors 91, at least one of the above-mentioned memories 92, and a bus 93 connecting different system components (including the memory 92 and the processor 91).
[0086] The bus 93 includes a data bus, an address bus, and a control bus.
[0087] The memory 92 may include volatile memory, such as a random access memory (RAM) 921 and / or a cache memory 922, and may further include a read-only memory (ROM) 923.
[0088] The memory 92 may further include a program tool 925 (or utility) having a set (at least one) of program modules 924. Such program modules 924 include, but are not limited to: an operating system, one or more application programs, other program modules, and program data. Each or some combination of these examples may include the implementation of a network environment.
[0089] The processor 91 executes various functional applications and data processing by running the computer program stored in the memory 92, such as the control method of the water-using device provided in any of the above embodiments.
[0090] The electronic device 90 may also communicate with one or more external devices 94 (such as a keyboard, a pointing device, etc.). Such communication may be carried out through an input / output (I / O) interface 95. And, the electronic device 90 may also communicate with one or more networks (such as a local area network (LAN), a wide area network (WAN), and / or a public network, such as the Internet) through a network adapter 96. As Figure 3 shown, the network adapter 96 communicates with other modules of the electronic device 90 through the bus 93. It should be understood that, although not shown in the figure, other hardware and / or software modules may be used in combination with the electronic device 90, including but not limited to: microcode, device drivers, redundant processors, external disk drive arrays, RAID (disk array) systems, tape drives, and data backup storage systems, etc.
[0091] It should be noted that although several units / modules or sub-units / modules of the electronic device are mentioned in the above detailed description, this division is merely exemplary and not mandatory. In fact, according to the embodiments of the present disclosure, the features and functions of two or more units / modules described above can be embodied in one unit / modules. Conversely, the features and functions of one unit / modules described above can be further divided and embodied by multiple units / modules.
[0092] Embodiment 4
[0093] Embodiment 4 of the present disclosure further provides a computer-readable storage medium, on which a computer program is stored, and when the program is executed by a processor, it implements the control method of the water-using device provided in any of the above embodiments.
[0094] Among them, the more specific computer-readable storage medium that can be adopted may include but is not limited to: portable disks, hard disks, random access memories, read-only memories, erasable programmable read-only memories, optical storage devices, magnetic storage devices, or any suitable combination of the above.
[0095] Embodiment 5
[0096] Embodiment 5 of the present disclosure further provides a computer program product, including a computer program, and when the computer program is executed by a processor, it implements the control method of the water-using device described in any one of the above.
[0097] Among them, the program code for executing the computer program product of the present disclosure can be written in any combination of one or more programming languages, and the program code can be executed completely on the user device, partially on the user device, executed as an independent software package, partially on the user device and partially on a remote device, or completely on a remote device.
[0098] Although the specific embodiments of the present disclosure are described above, those skilled in the art should understand that this is only an example, and the protection scope of the present disclosure is defined by the appended claims. Without departing from the principles and essence of the present disclosure, those skilled in the art can make various changes or modifications to these embodiments, but these changes and modifications all fall within the protection scope of the present disclosure.
Claims
1. A water-using device, characterized in that: Including softening water system, purified water system, cleaning water system and heating system; The cleaning water system is used to filter the water inlet to the household device; The softening water system is used to soften the filtered influent water; The water purification system is used to purify the water inlet of the household device; The heating system is used to heat the purified incoming water.
2. The water-using device according to claim 1, characterized in that: The heating system comprises a water storage type heating module, the water storage type heating module comprises a first heat exchange tube, a second heat exchange tube, a water storage cavity, a softened water inlet, a cleaning water inlet, a purified water inlet, a softened water outlet, a cleaning water outlet, and a purified water outlet, the first heat exchange tube and the second heat exchange tube are both arranged in the water storage cavity; The water storage heating module is used to heat and store softened incoming water.
3. The water-using device according to claim 1, characterized in that: The softened water system comprises a softening passage, and the softening passage comprises a softening module, a soft water mixing passage and a mixing valve.
4. The water-using device according to claim 3, characterized in that: The water-using device further comprises a first pre-filter element, which is arranged before the softening passage; The first pre-filter element is used to filter the incoming water before softening.
5. The water-using device according to claim 1, characterized in that: The purified water system comprises a purified water passage, a first flushing passage and a second flushing passage, wherein the purified water passage comprises a solenoid valve, a second pre-filter element, a water pump, a first non-return valve, a membrane filter element, a post-filter element and a pipeline; the first flushing passage comprises a wastewater solenoid valve and a pipeline; the second flushing passage comprises a second non-return valve and a pipeline; and / or, The water-using device further comprises a temperature sensor, a first electric flow-limiting valve and a second electric flow-limiting valve; the first electric flow-limiting valve is arranged on the warm cleaning water passage, and the second electric flow-limiting valve is arranged on the warm clean water passage; The temperature sensor is used to detect the outlet water temperature.
6. A method for controlling a water-using device, characterized in that: The control method is applicable to the water use device according to any one of claims 1 to 5, and the control method comprises: In response to the detected current purified water temperature value not reaching the preset temperature value, obtaining the current working voltage value of the water pump; In response to the current operating voltage value reaching the voltage upper limit value or the voltage lower limit value, the outflow of purified water at a preset temperature value is controlled according to the received water intake instruction.
7. The control method of the water-using device according to claim 6, characterized in that: The control method further comprises: In response to detecting that the current purified water temperature value at the water outlet reaches a preset temperature value, controlling the purified water to flow out of the water outlet according to the received water taking instruction; and / or, The control method further comprises: In response to the current operating voltage value of the water pump not reaching the voltage upper limit value or the voltage lower limit value, the current voltage value of the water pump is reacquired until the current purified water temperature value at the water outlet reaches the preset temperature value or the current operating voltage value of the water pump reaches the voltage upper limit value or the voltage lower limit value.
8. An electronic device comprising a memory, a processor, and a computer program stored in the memory and used to run on the processor, characterized in that: When the processor executes the computer program, the control method of the water use device according to any one of claims 6 to 7 is implemented.
9. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the control method of the water use device according to any one of claims 6 to 7 is implemented.
10. A computer program product, comprising a computer program, characterized in that When the computer program is executed by a processor, the control method of the water use device according to any one of claims 6 to 7 is implemented.
Citation Information
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