Outdoor water purifier based on water quality detection function
By integrating high-definition cameras and pH sensors into outdoor water purifiers for water quality detection and automatic cleaning using cylinder components, the problem of water quality detection and filter element cleaning when using external water sources is solved, and the water quality purification effect and convenience of equipment maintenance are improved.
Patent Information
- Application Number
- CN202510320637.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When using external water sources, it is difficult to quickly detect the water quality and clean the filter element, which affects the water quality purification effect and the difficulty of equipment maintenance.
An outdoor water purifier based on water quality detection function was designed, using a high-definition camera and pH sensor for water quality detection, generating a warning signal, and automatically cleaning the initial filter rack through the cylinder assembly, simplifying the filter element replacement process.
Multi-stage filtration of external water sources is realized, effectively removing impurities and microorganisms, improving the water quality purification effect, and through automatic cleaning and easy-to-replace filter element design, the service life of the equipment is extended and maintenance difficulty is reduced.
Smart Images

Figure CN120054082A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of outdoor water purifiers, specifically an outdoor water purifier based on a water quality detection function. Background Art
[0002] With the increasing popularity of outdoor sports (such as hiking, camping, mountain climbing, off-road cycling, etc.), when away from the urban water supply system, the source of water is limited to rivers, lakes, streams or even rainwater. The quality of these natural water sources is complex and may contain sediment and suspended matter, causing turbidity. Visible impurities affect the taste and carry bacteria.
[0003] Modern outdoor water purifiers increasingly integrate a variety of purification technologies. For example, technologies such as ceramic filtration and activated carbon adsorption are combined in one device to deal with complex and variable natural water sources. Such a water purifier can first remove sediment and larger microorganisms through ceramic filtration, then use activated carbon to adsorb organic pollutants and improve the taste, and finally ensure drinking safety by boiling the water.
[0004] It should be noted in combination with the above content that the Chinese patent with the publication number CN213527724U discloses a water quality detection device for a water purifier, which realizes quick disassembly and assembly of the filter element through a set structure. However, during actual use, for an outdoor water purifier carried outdoors, more attention is paid to how to purify external water and how to quickly clean the internal filter element after abnormal extraction of unknown external water.
[0005] In view of the above technical defects, a solution is now proposed. Summary of the Invention
[0006] The purpose of the present invention is to provide an outdoor water purifier based on a water quality detection function to solve the problems raised.
[0007] To achieve the above purpose, the present invention provides the following technical solution: An outdoor water purifier based on a water quality detection function, including a storage tube base. A pressure-resistant cylinder is arranged on the top of the storage tube base. A water viewing wall cover is arranged at the bottom of the outer wall on one side of the pressure-resistant cylinder. A control panel is arranged above the water viewing wall cover. A top cover is arranged on the top of the pressure-resistant cylinder. A water filtering inner cylinder connecting the top cover and the storage tube base is arranged inside the pressure-resistant cylinder. A water storage inner box is arranged at the top of one end of the water filtering inner cylinder.
[0008] Inside the water-viewing wall cover, there is a high-definition camera facing the water filtration inner cylinder. The high-definition camera is used to collect the value of the initial filtration sediment in the outdoor water purifier. At one end of the top cover away from the water storage inner box, there is a secondary filtration cylinder, and a pH sensor is arranged on the inner wall of the secondary filtration cylinder. The pH sensor is used to collect the potential hazard range value of the water to be filtered, and send the initial filtration sediment value and the initial filtration sediment value to the database inside the control panel for comparison and analysis. According to the analysis result, warning text is generated and displayed on the display screen of the control panel, thus constituting a water filtration supervision system.
[0009] Further, a water inlet pipe valve is embedded in the middle of one side of the pipe storage seat. On both sides of the bottom of the pipe storage seat, multiple groups of splicing hoses are symmetrically wound. At the top of one end of the pipe storage seat, there is a water accumulation cushion plate located below the water storage inner box, and one end of the water accumulation cushion plate is provided with a sleeve shell that is clamped with the bottom of the pressure-resistant cylinder body.
[0010] Further, on the bottom centers of both sides of the pressure-resistant cylinder body, elliptical viewing grooves penetrating the water-viewing wall cover and the water filtration inner cylinder are symmetrically arranged. Tempered glass is arranged on the inner wall of the elliptical viewing groove of the water filtration inner cylinder and the outer wall of the elliptical viewing groove of the water-viewing wall cover, so that the high-definition camera is in a closed environment. On the inner walls of both ends of the elliptical viewing groove of the water-viewing wall cover, supplementary light lamps are arranged, and between the supplementary light lamps and the tempered glass, a lifting cylinder connected to the high-definition camera is embedded. Part of the surface of the pressure-resistant cylinder body is provided with a solar panel.
[0011] Further, inside the water filtration inner cylinder, multiple groups of partition frames distributed at both ends of the elliptical viewing groove are arranged. At one end of the partition frame close to the water storage inner box, a horizontal pushing cylinder one is arranged. At the other end of the partition frame, a horizontal pushing cylinder two is arranged. An initial filtration frame is sleeved between two horizontally symmetrical partition frames, and a main filter element is arranged inside the initial filtration frame. Multiple groups of lifting cylinders are arranged on the surface of the partition frame, and a sealing plate is arranged between the top pair of partition frames.
[0012] Further, guide rails slidably connected to the initial filtration frame are arranged on the inner walls of both sides of the water filtration inner cylinder. Multiple storage boxes are arranged at one end of the partition frame close to the horizontal pushing cylinder two, and spare cores are arranged inside the storage boxes.
[0013] Further, a water pump is arranged on the top of the water storage inner box. At one end of the bottom of the water storage inner box, a vertically downward lifting column is arranged. On the end face of the lifting column, there is a spray plate located below the water storage inner box, and on the end face of the spray plate, there is a connecting frame slidably sleeved with the lifting column. At the bottom of one end of the water pump, there is a short pipe connected to the water storage inner box. Inside the water storage inner box, a telescopic pipe and a micro pump machine sleeved with the spray plate are arranged, which are used to pump the water in the water storage inner box into the spray plate for flushing the initial filtration frame.
[0014] Furthermore, a water outlet pipe valve connected to the secondary filter cartridge is provided at the top of the top cover. A sliding cylinder is provided at the center of the bottom of the top cover. The bottom of the sliding cylinder is connected to the sealing plate at the top of the partition frame, and a connecting rod is provided inside the sliding cylinder.
[0015] Furthermore, a pull ring hinged to the connecting rod is provided at the center of the top of the top cover. The bottom of the connecting rod is hinged to an upper sliding plate, and a first rubber cover is sleeved at the center of the bottom of the upper sliding plate. A lower fixing plate is provided at the bottom of the sliding cylinder. Side suction covers are provided on both sides of the bottom of the sliding cylinder. A second up-and-down one-way rotating rubber cover is provided at the center of the top of the lower fixing plate. A metal block is provided at the center of the top of the second rubber cover. A whistle is slidably sleeved on one end face of the top cover, and a compass is embedded at the top of one end of the top cover.
[0016] The beneficial effects of the present invention are as follows:
[0017] 1. Through the design of spliced hoses, the present invention facilitates the establishment of connections between different outdoor water sources and containers. Whether it is electric pumping or manual siphon water intake, there are corresponding communication routes to ensure that water can be taken from external water sources and transported into the container under both powered and non-powered conditions, adapting to various outdoor scenarios and emergency needs. The main filter element in the water filtering inner cylinder adopts a design with gradually increasing filter voids, and cooperates with the cartridge core with smaller filter voids in the secondary filter cartridge to achieve multi-stage filtration of external water sources, effectively removing impurities, particles, some microorganisms, etc. in the water, improving the water quality purification effect, and ensuring the safety of drinking water. Among them, the main filter element and the spare element adopt ceramic filter elements, which have the advantages of being washable and long service life, and the filter element type can be replaced according to actual configurations to further improve the filtration performance.
[0018] 2. The present invention generates supervision instructions through the control panel and controls the operation of the high-definition camera and pH sensor, thereby collecting data on the use of the outdoor water purifier. The data of both are processed and sent to the database for analysis to obtain the single-pumping risk coefficient, which is compared with the preset value. If the risk coefficient exceeds the standard, an alarm signal is sent and corresponding prompt text is generated and displayed on the display screen of the control panel, facilitating the user to promptly know the abnormal water quality situation and take measures.
[0019] 3. The present invention can start the backwashing scheme when the water quality is abnormal. Through the cooperation of components such as the horizontal push cylinder, the jacking cylinder, and the lifting column, the automatic cleaning of the primary filter frame is realized, prolonging the service life of the filter element. When the spare element needs to be replaced, the equipment structure design facilitates the opening of relevant cylinder parts, and the storage box and the primary filter frame are moved to a convenient operation position through the action of the cylinder, and can be easily taken out for filter element replacement, reducing the maintenance difficulty. Description of the Drawings
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0021] Figure 1 Is a three-dimensional view of the overall structure of the present invention;
[0022] Figure 2 Is a schematic structural view of the pressure-resistant cylinder body of the present invention;
[0023] Figure 3 Is a schematic structural view of the water-viewing wall cover of the present invention;
[0024] Figure 4 Is a schematic structural view of the connection between the water-filtering inner cylinder, the storage pipe base and the top cover of the present invention;
[0025] Figure 5 Is a schematic structural view of the storage pipe base of the present invention;
[0026] Figure 6 Is an exploded structural view of the water-filtering inner cylinder of the present invention;
[0027] Figure 7 Is a schematic structural view of the top of the water storage inner box of the present invention;
[0028] Figure 8 Is a bottom view structural view of the water storage inner box of the present invention;
[0029] Figure 9 Is an exploded structural view of the top cover of the present invention;
[0030] Figure 10 Is a schematic structural view of the inside of the sliding cylinder of the present invention.
[0031] Reference numerals: 1, storage pipe base; 101, splicing hose; 102, water accumulation cushion plate; 2, pressure-resistant cylinder body; 3, top cover; 301, secondary filter cylinder; 302, pull ring; 303, sliding cylinder; 304, connecting rod; 305, side suction hood; 306, upper sliding plate; 307, lower fixing plate; 4, water-viewing wall cover; 401, supplementary light; 402, high-definition camera; 5, control panel; 6, water-filtering inner cylinder; 601, partition frame; 602, first horizontal push cylinder; 603, lifting cylinder; 604, primary filter frame; 605, storage box; 606, second horizontal push cylinder; 7, water storage inner box; 701, water pump; 702, lifting column; 703, spraying plate; 704, connecting frame. Detailed implementation manners
[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0033] Embodiment 1: Please refer to Figure 1 - Figure 10 As shown in the figure, this embodiment is an outdoor water purifier based on the water quality detection function, including a storage pipe seat 1. A pressure-resistant cylinder 2 is arranged on the top of the storage pipe seat 1. A water viewing wall cover 4 is arranged at the bottom of the outer wall on one side of the pressure-resistant cylinder 2, and a control panel 5 is arranged above the water viewing wall cover 4;
[0034] A top cover 3 is arranged on the top of the pressure-resistant cylinder 2. A water filtering inner cylinder 6 connecting the top cover 3 and the storage pipe seat 1 is arranged inside the pressure-resistant cylinder 2. A water storage inner box 7 is arranged at the top of one end of the water filtering inner cylinder 6. When the user needs to draw water outdoors, take out the outdoor water purifier, open the two bottom covers at the bottom of the storage pipe seat 1, and take out multiple spliced hoses 101. One end of one group of spliced hoses 101 is sleeved with an inlet pipe valve, and the other end of this group of spliced hoses 101 is placed into the water source, while one end of the other group of spliced hoses 101 is sleeved with an outlet pipe valve, and the other end of this group of spliced hoses 101 extends into the container.
[0035] An inlet pipe valve is embedded in the middle of one side of the storage pipe seat 1. Multiple spliced hoses 101 are symmetrically wound around both sides of the bottom of the storage pipe seat 1. A water accumulation cushion plate 102 is arranged at the top of one end of the storage pipe seat 1 and is located below the water storage inner box 7, and a sleeve shell that is snap-connected to the bottom of the pressure-resistant cylinder 2 is arranged at one end of the water accumulation cushion plate 102.
[0036] Elliptical viewing grooves penetrating through the water viewing wall cover 4 and the water filtering inner cylinder 6 are symmetrically arranged at the centers of the bottoms of both sides of the pressure-resistant cylinder 2. Tempered glass is arranged on the inner wall of the elliptical viewing groove of the water filtering inner cylinder 6 and the outer wall of the elliptical viewing groove of the water viewing wall cover 4, so that the high-definition camera 402 is in a closed environment;
[0037] Fill light lamps 401 are arranged on the inner walls at both ends of the elliptical viewing groove of the water viewing wall cover 4, and a lifting cylinder connected to the high-definition camera 402 is embedded between the fill light lamps 401 and the tempered glass. A solar panel is arranged on a part of the surface of the pressure-resistant cylinder 2. The solar panel arranged on the outer wall of the pressure-resistant cylinder 2 can, in the case of power shortage or no external power supply for the device, place the outdoor water purifier in a sunny area and let it stand still, and use the solar panel to charge the battery arranged inside the outdoor water purifier to increase the battery life.
[0038] Inside the water filtering inner cylinder 6, there are multiple groups of partition frames 601 distributed at both ends of the elliptical viewing tank. At one end of the partition frame 601 close to the water storage inner box 7, there is a first horizontal push cylinder 602, and at the other end of the partition frame 601, there is a second horizontal push cylinder 606. An initial filter frame 604 is sleeved between two horizontally symmetrical partition frames 601, and a main filter element is arranged inside the initial filter frame 604. On the surface of the partition frame 601, there are multiple groups of lifting cylinders 603, and a sealing plate is arranged between the top pair of partition frames 601.
[0039] At the top of the water storage inner box 7, there is a water pump 701. At one end of the bottom of the water storage inner box 7, there is a vertically downward lifting column 702. On the end face of the lifting column 702, there is a spray plate 703 located below the water storage inner box 7, and on the end face of the spray plate 703, there is a connecting frame 704 slidably sleeved with the lifting column 702. At the bottom of one end of the water pump 701, there is a short pipe connected to the water storage inner box 7. Inside the water storage inner box 7, there are a telescopic pipe and a micro pump machine sleeved with the spray plate 703, which are used to pump the water in the water storage inner box 7 into the spray plate 703 for flushing the initial filter frame 604.
[0040] When the internal power of the outdoor water purifier is sufficient or there is external power supply, the water pump 701 is started through the control panel 5. At the bottom on both sides of the water pump 701, there are suction pipes sleeved with side suction covers 305. The suction pipes are connected to the top of the water filtering inner cylinder 6 through the side suction covers 305. At the bottom of the water filtering inner cylinder 6, there is a channel connected to the inlet pipe valve, thus forming a downward connected and sleeved pumping route with the water pump 701 as the starting point. On both sides of the water pump 701, there are push pipes close to the suction pipes, and the other ends of the push pipes are sleeved with the bottom of the secondary filter cylinder 301, thus forming a water delivery route. The pumping route and the water delivery route are connected to suck, filter, and transport the external water source into the container.
[0041] On the inner walls on both sides of the water filtering inner cylinder 6, there are guide rails slidably connected to the initial filter frame 604. At one end of the partition frame 601 close to the second horizontal push cylinder 606, there are multiple storage boxes 605, and spare cores are arranged inside the storage boxes 605. When the external water source enters the water filtering inner cylinder 6 along the inlet pipe valve, the external water source gradually submerges multiple groups of initial filter frames 604 from bottom to top. The main filter elements installed inside the initial filter frames 604 filter the external water source in sequence, and the filter pores of the main filter elements increase gradually. The main filter elements and the spare cores are ceramic filter elements, and this is not limited to this. They are specifically replaced according to the actual configuration of the outdoor water purifier.
[0042] When the external water source is multi-stage filtered by the water filtering inner cylinder 6 and then passes through the secondary filter cylinder 301 through the water delivery route, inside the secondary filter cylinder 301, there is a cylinder core with a filter pore smaller than any group of main filter elements in the water filtering inner cylinder 6, which re-filters the passing external water to achieve multi-stage treatment of the external water.
[0043] At the top of the top cover 3, there is a water outlet pipe valve connected to the secondary filter cartridge 301. At the center of the bottom of the top cover 3, there is a sliding cylinder 303. The bottom of the sliding cylinder 303 is connected to the sealing plate at the top of the partition frame 601. Inside the sliding cylinder 303, there is a connecting rod 304. At the center of the top of the top cover 3, there is a pull ring 302 hinged to the connecting rod 304. At the bottom of the connecting rod 304, there is a hinged upper sliding plate 306, and at the center of the bottom of the upper sliding plate 306, there is a rubber cover one sleeved. At the bottom of the sliding cylinder 303, there is a lower fixing plate 307. On both sides of the bottom of the sliding cylinder 303, there are side suction covers 305, and at the center of the top of the lower fixing plate 307, there is an up and down one-way rotating rubber cover two. At the center of the top of the rubber cover two, there is a metal block. At one end face of the top cover 3, there is a whistle slidingly sleeved, and at the top of one end of the top cover 3, there is a compass embedded.
[0044] If there is a power shortage inside the outdoor water purifier and no external power supply, open the rubber sheet covering the pull ring 302 at the center of the top of the top cover 3, and pour a small amount of clean water into the sliding cylinder 303 along the holes on the side of the pull ring 302 through a container. Insert it along the two gaps on both sides of the pull ring 302 and forcefully lift the pull ring 302. The pull ring 302 is composed of two groups of semi-circular metal rings, and there is a hinged kit between the two.
[0045] Hold the two groups of metal rings folded and combined together, and vertically reciprocate to stretch the pull ring 302. The pull ring 302 drives the connecting rod 304 to slide up and down, and the connecting rod 304 drives the upper sliding plate 306 to slide up and down inside the sliding cylinder 303. During the upward sliding of the upper sliding plate 306, a negative pressure suction is formed between the upper sliding plate 306 and the lower fixing plate 307.
[0046] It causes the rubber cover two at the top of the lower fixing plate 307 to be pulled and rotated upward. The bottom of the sliding cylinder 303 is connected to the inside of the water filtering inner cylinder 6, thereby forming a siphon down pipeline with the water inlet pipe valve, and guiding the external water source into the bottom of the sliding cylinder 303 in sequence along the water inlet pipe valve, the water filtering inner cylinder 6 and the middle of the lower fixing plate 307. When the upper sliding plate 306 is pressed down, the rubber cover one is pushed up by water or air, causing the temporary pipe inside the sliding cylinder 303 to be unblocked. There is a drain hole at the top of the sliding cylinder 303 connected to the secondary filter cartridge 301, and the drain hole is sleeved with the secondary filter cartridge 301 through a conduit, thereby forming a siphon conveying route. The siphon conveying route is connected to the siphon down pipeline to form a manual extraction of the external water source.
[0047] Embodiment 2: This embodiment is an outdoor water purifier based on the water quality detection function, including a high-definition camera 402 disposed inside the water viewing wall cover 4 and facing the water filtering inner cylinder 6, and the high-definition camera 402 is used to collect the initial filtration sediment quantity value inside the outdoor water purifier. One end of the top cover 3 away from the water storage inner box 7 is provided with a secondary filter cylinder 301, and a pH sensor is disposed on the inner wall of the secondary filter cylinder 301. The pH sensor is used to collect the potential risk range value of the water to be filtered, and send the initial filtration sediment quantity value and the initial filtration sediment quantity value to the database inside the control panel 5 for comparison and analysis, and generate warning text according to the analysis result and display it on the display screen of the control panel 5, thus constituting a water filtration supervision system.
[0048] During the use of the outdoor water purifier, the control panel 5 immediately generates a supervision instruction and sends the supervision instruction to the high-definition camera 402 and the pH sensor. The high-definition camera 402 collects photographing data by photographing the area inside the water filtering inner cylinder 6 exposed in the elliptical viewing groove, and the fill light 401 performs fill light processing on it, and drives the high-definition camera 402 to move up and down along the inside of the elliptical viewing groove through the lifting cylinder, thus collecting multiple groups of sediment sub-values. The sediment sub-value represents the amount of impurities intercepted by a single sample in the range of filtration, and forms a set of multiple groups of sediment sub-values for a single time. After removing the maximum value and the minimum value, take its average value and mark it as the initial filtration sediment quantity value CZ. The pH sensor collects data on the external water passing through the inside of the outdoor water purifier in the secondary filter cylinder 301, obtains the pH value of the external water after filtration, and marks it as the potential risk range value QW. The pH sensor is installed at the connection between the top of this filter cylinder 301 and the water outlet pipe valve, and sends the initial filtration sediment quantity value CZ and the potential risk range value QW to the inside of the database.
[0049] After receiving the initial filtration sediment quantity value CZ and the potential risk range value QW, the database immediately analyzes the single pumping risk of the outdoor water purifier, and passes through the formula Obtain the single pumping risk coefficient FR, where k and g are the proportionality coefficients of the initial filtration sediment quantity value CZ and the potential risk range value QW respectively, k > g > 0, and retrieve the pre-stored preset single pumping risk coefficient YR from the database for comparison and analysis with the single pumping risk coefficient FR:
[0050] If the single pumping risk coefficient FR > the preset single pumping risk coefficient YR, it is determined that the external water extracted this time is abnormal, and an alarm signal is generated. The database generates text in the style of "water source abnormality / value exceeding the standard / drinking risk / backwashing plan start / data record" according to the alarm signal and displays it on the display screen of the control panel 5.
[0051] When the backwashing program is started, the database starts the horizontal push cylinder 602, the lifting cylinder 603, and the lifting column 702 through the control panel 5. When the backwashing program is started, the suction of the external water source is paused. The lifting cylinder 603 in the topmost partition frame 601 retracts, prompting the primary filter frame 604 between the group of partition frames 601 to be released from restriction. The horizontal push cylinder 602 drives the primary filter frame 604 to move through relevant accessories until it is exposed below the spray plate 703. After it is cleaned, the lower primary filter frames 604 are cleaned step by step. The relevant accessories include buckles, kits, etc., but are not limited to this, and are specifically replaced according to actual usage needs.
[0052] Through the water source previously filled in the water storage inner box 7, the micropump is sleeved with the spray plate 703 through the telescopic tube and guides the remaining water in the water storage inner box 7 into the spray plate 703. The spray plate 703 is connected to the lifting column 702 through the connecting frame 704. The lifting column 702 adjusts the height of the spray plate 703 to match the height of the primary filter frame 604, constituting a static-distance spray cleaning of the primary filter frame 604. The spray cleaning wastewater drips on the water accumulation cushion plate 102, and the wastewater is discharged externally by manually opening the housing.
[0053] When it is necessary to replace the spare core, open the cylinder part at one end of the pressure-resistant cylinder 2 close to the spare core, which is clamped with the pressure-resistant cylinder 2. The horizontal push cylinder 606 drives the storage box 605 to move to the notch part of the pressure-resistant cylinder 2, facilitating the removal of the storage box 605. The lifting cylinder 603 retracts into the partition frame 601. The horizontal push cylinder 602 drives the primary filter frame 604 to push along the direction of the horizontal push cylinder 606, prompting the primary filter frame 604 to be exposed in the external area of the horizontal push cylinder 606, facilitating the removal of the primary filter frame 604 and replacing the main filter element inside it.
[0054] If the risk coefficient FR of a single water extraction < the preset risk coefficient YR of a single water extraction, then no signal is generated.
[0055] During the use of the outdoor water purifier, the inside of the elliptical viewing tank is supplemented with light through the supplementary light 401, facilitating the user to observe the water quality condition of the through extraction according to the elliptical viewing tank.
[0056] The compass on the top cover 3 is convenient for outdoor use. The direction can be identified according to the compass. At the same time, the whistle on the top cover 3 is convenient for the user to blow according to the environment and is used for warning and seeking help.
[0057] Combined with Embodiment 1 and Embodiment 2, it can be seen that the outdoor water purifier of the present invention has many advantages. The splicing hose 101 is convenient for connecting different outdoor water sources and containers. Both electric and manual water extraction are available, adapting to a variety of scenarios; the filter holes of the main filter element increase gradually, and in cooperation with the small filter hole cartridge core of the secondary filter cylinder 301, impurities are removed through multi-stage filtration. The main and spare cores are ceramic filter elements that can be cleaned and can be changed in type as needed.
[0058] The control panel 5 can command the high-definition camera 402 and the pH sensor to collect data. After analysis by the database, the pumping risk coefficient is compared with the preset value. When an abnormality occurs, an alarm is given and a prompt is provided. When the water quality is abnormal, backwashing can be started, and the cylinder assembly can clean the primary filter frame 604. The structural design is conducive to operation when replacing the spare element, reducing the maintenance difficulty.
[0059] The preferred embodiments of the present invention disclosed above are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the present invention to only the specific embodiments. Obviously, many modifications and changes can be made according to the content of this specification. These embodiments are selected and specifically described in this specification in order to better explain the principles and practical applications of the present invention, so that those skilled in the relevant technical fields can understand and utilize the present invention well. The present invention is only limited by the claims and their full scope and equivalents.
Claims
1. An outdoor water purifier based on water quality detection function, comprising a storage pipe seat (1), characterized in that: A pressure-resistant cylinder (2) is arranged on the top of the pipe storage seat (1); a water viewing wall cover (4) is arranged at the bottom of the outer wall of one side of the pressure-resistant cylinder (2); a control panel (5) is arranged above the water viewing wall cover (4); a top cover (3) is arranged on the top of the pressure-resistant cylinder (2); a water filtering inner cylinder (6) connected to the top cover (3) and the pipe storage seat (1) is arranged inside the pressure-resistant cylinder (2); a water storage inner box (7) is arranged at the top of one end of the water filtering inner cylinder (6); The water viewing wall cover (4) is provided with a high-definition camera (402) facing the water filter inner cylinder (6), and the high-definition camera (402) is used to collect the value of the primary filtration sediment inside the outdoor water purifier. The top cover (3) is provided with a secondary filter cylinder (301) at one end away from the water storage inner box (7), and the inner wall of the secondary filter cylinder (301) is provided with a pH sensor, and the pH sensor is used to collect the potential danger range value of the water to be filtered out, and send the primary filtration sediment value and the primary filtration sediment value to the database inside the control panel (5) for comparison and analysis, and generate warning text based on the analysis result and display it on the display screen of the control panel (5), thereby forming a water filtration supervision system.
2. The outdoor water purifier based on water quality detection function according to claim 1 is characterized in that: A water inlet valve is embedded in the middle of one side of the pipe storage seat (1), and multiple groups of spliced hoses (101) are symmetrically wound on both sides of the bottom of the pipe storage seat (1). A water accumulation pad (102) located below the water storage inner box (7) is arranged at the top of one end of the pipe storage seat (1), and a sleeve shell that is clamped with the bottom of the pressure-resistant cylinder (2) is arranged at one end of the water accumulation pad (102).
3. The outdoor water purifier based on water quality detection function according to claim 1 is characterized in that: Elliptical viewing grooves penetrating the water viewing wall cover (4) and the water filter inner cylinder (6) are symmetrically arranged at the center of the bottom of both sides of the pressure-resistant cylinder (2), and tempered glass is arranged on the inner wall of the elliptical viewing groove of the water filter inner cylinder (6) and the outer wall of the elliptical viewing groove of the water viewing wall cover (4), and fill-in lights (401) are arranged on the inner walls at both ends of the elliptical viewing groove of the water viewing wall cover (4).
4. The outdoor water purifier based on water quality detection function according to claim 3 is characterized in that: The water filter inner cylinder (6) is provided with a plurality of partition frames (601) distributed at both ends of the elliptical viewing groove, one end of the partition frame (601) close to the water storage inner box (7) is provided with a horizontal push cylinder 1 (602), and the other end of the partition frame (601) is provided with a horizontal push cylinder 2 (606), a primary filter frame (604) is sleeved between the two horizontally symmetrical groups of the partition frames (601), and a main filter element is provided inside the primary filter frame (604), and a plurality of lifting cylinders (603) are provided on the surface of the partition frame (601).
5. The outdoor water purifier based on water quality detection function according to claim 4 is characterized in that: Guide rails slidably connected to the primary filter frame (604) are arranged on the inner walls on both sides of the water filter inner cylinder (6); a plurality of storage boxes (605) are arranged at one end of the partition frame (601) close to the second horizontal push cylinder (606), and spare cores are arranged inside the storage boxes (605).
6. The outdoor water purifier based on water quality detection function according to claim 1 is characterized in that: A water pump (701) is arranged on the top of the water storage inner box (7), and a vertically downward lifting column (702) is arranged at one end of the bottom of the water storage inner box (7). A spray plate (703) located below the water storage inner box (7) is arranged on the end surface of the lifting column (702), and a connecting frame (704) slidably sleeved with the lifting column (702) is arranged on the end surface of the spray plate (703).
7. The outdoor water purifier based on water quality detection function according to claim 1 is characterized in that: The top of the top cover (3) is provided with a water outlet valve connected to the secondary filter cartridge (301), the bottom center of the top cover (3) is provided with a slide cylinder (303), and a connecting rod (304) is provided inside the slide cylinder (303).
8. The outdoor water purifier based on water quality detection function according to claim 7 is characterized in that: A pull ring (302) hinged to a connecting rod (304) is arranged at the top center of the top cover (3), an upper slide plate (306) is hinged to the bottom of the connecting rod (304), a lower fixing plate (307) is arranged at the bottom of the slide cylinder (303), and side suction covers (305) are arranged on both sides of the bottom of the slide cylinder (303).
Citation Information
Patent Citations
Water quality detection device for water purifier
CN213527724U