A pool water treatment doser
Patent Information
- Application Number
- CN202522042694.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-23
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-09-23
AI Technical Summary
[0004]在使用加药器对泳池水进行消毒处理的过程中,会出现由于实时水质监测不及时而导致的药剂量过少或过多的现象,影响泳池的正常使用
1.本实用新型所述的一种泳池水处理加药器,通过实时水质检测仪器和调节板的设置,可在泳池中实现对泳池水的实时水质检测,可根据实时情况控制排出药剂的速度,减少了因观测不及时而造成的泳池水中药剂含量过低或过高的问题;同时,进水口的大小依次改变设置,可实现在短时间内更大的药剂流速的改变量,在单位时间内更加可控制。
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Figure CN224691858U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of swimming pool water treatment technology, specifically a swimming pool water treatment chemical dosing device. Background Technology
[0002] Maintaining proper pool water quality is crucial for ensuring a healthy and comfortable swimming environment. Poor water quality not only affects the swimming experience but can also cause problems such as skin allergies and eye irritation.
[0003] Swimming pool water treatment dosing systems are key equipment for maintaining clean and safe water quality, used for the automatic or semi-automatic addition of chemical agents such as disinfectants, pH adjusters, and flocculants.
[0004] When using a dosing device to disinfect pool water, there may be instances where the dosage is too low or too high due to untimely real-time water quality monitoring, affecting the normal use of the pool.
[0005] Therefore, this utility model provides a swimming pool water treatment dosing device. Utility Model Content
[0006] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.
[0007] The technical solution adopted by this utility model to solve its technical problem is as follows: A swimming pool water treatment dosing device of this utility model includes a dosing tank; a tank cover is installed on the top of the dosing tank; a medicine chamber cover is rotatably connected to the top of the tank cover; a medicine chamber is threadedly connected to the bottom of the medicine chamber cover; multiple medicine outlet holes are opened on the side wall of the medicine chamber; a real-time water quality monitoring instrument is fixedly connected to the side wall of the dosing tank; a telescopic rod is slidably connected to the side wall of the real-time water quality monitoring instrument; an adjusting plate is fixedly connected to the end of the telescopic rod; multiple water inlets are opened on the side wall of the dosing tank; the size of the water inlet openings increases sequentially along the side closer to the real-time water quality monitoring instrument; through the setting of the real-time water quality monitoring instrument and the adjusting plate, real-time water quality monitoring of the swimming pool water can be achieved, and the rate of discharge of the chemicals can be controlled according to the real-time situation, reducing the problem of excessively low or high chemical content in the swimming pool water due to untimely observation; at the same time, the sequentially changing size of the water inlets allows for a larger change in the chemical flow rate in a short time, making it more controllable per unit time.
[0008] Preferably, a partition is fixed to the inner wall of the medicine compartment; the partition divides the interior of the medicine compartment into two spaces; by setting the partition, different agents can be placed in the spaces of the two medicine compartments separated by the partition as needed, avoiding different drugs from mixing and reacting with each other inside the medicine compartment, thereby losing their original effect or generating other useless substances, reducing the problem of poor disinfection and cleaning effect of swimming pool water due to agent failure; at the same time, the detachable setting of the medicine compartment facilitates the replacement of agents and also makes it easy to clean the medicine outlet, reducing its blockage.
[0009] Preferably, a mesh plate is fixed to the inner wall of the inlet; the mesh plate is located on the side closest to the inside of the dosing tank. A rubber strip is fixed to the side wall of the adjusting plate; the mesh plate serves two purposes: firstly, it blocks impurities carried in the water flow from entering the dosing tank and contaminating the chemicals, reducing the problem of drug deterioration caused by impurities; secondly, the mesh plate can retain some of the clumped chemicals inside the dosing tank, preventing them from flowing into the pool with the water flow and causing harm, reducing the problem of harm to the human body caused by clumped chemicals in the pool; at the same time, the rubber strip can scrape off impurities remaining on the surface of the dosing tank, reducing the problem of mechanical blockage caused by impurities.
[0010] Preferably, the side wall of the medicine container is fixed with multiple micro baffles; the micro baffles are arranged in a circle; the micro baffles and the medicine outlet are spaced apart; by setting the micro baffles, on the one hand, the problem of clumping and adhesion of the medicine inside the medicine container caused by long-term storage can be reduced; on the other hand, the medicine can also be made to react more fully with water.
[0011] Preferably, a buoyancy plate is fixed to the side wall of the dosing tank; the buoyancy plate is made of a lightweight reflective material; the buoyancy plate provides greater buoyancy to the dosing tank, reducing the problem of the dosing tank being submerged due to excessive weight; at the same time, the lightweight reflective material of the buoyancy plate reduces its own weight while making it more conspicuous and easier for staff to locate.
[0012] Preferably, a base is fixedly connected to the bottom of the dosing tank; a ring is rotatably connected to the bottom of the base; the ring can fix the dosing tank in a specific position, reducing the problem of it being difficult to find and retrieve while drifting in the pool; at the same time, the rotatable connection between the ring and the base allows the dosing tank to rotate slightly while it is fixed, which is more conducive to the mixing of the medicine inside the dosing tank.
[0013] The beneficial effects of this utility model are as follows: 1. The swimming pool water treatment dosing device of this utility model, through the setting of real-time water quality detection instruments and adjustment plates, can realize real-time water quality detection in the swimming pool, and can control the rate of chemical discharge according to the real-time situation, reducing the problem of the chemical content in the swimming pool water being too low or too high due to untimely observation; at the same time, the size of the water inlet can be changed sequentially to achieve a larger change in chemical flow rate in a short period of time, making it more controllable per unit time.
[0014] 2. The swimming pool water treatment dosing device of this utility model, through the setting of the mesh plate, on the one hand, blocks impurities carried by the water flow from the outside of the dosing tank, preventing them from entering the dosing tank and contaminating the chemicals, thus reducing the problem of chemical deterioration caused by impurity contamination; on the other hand, the mesh plate can also retain some of the clumped chemicals inside the dosing tank, preventing them from flowing into the pool with the water flow and causing harm, thus reducing the problem of harm to the human body caused by clumped chemicals in the pool; at the same time, the setting of the rubber strip can scrape off the impurities remaining on the surface of the dosing tank, reducing the problem of mechanical blockage caused by impurity residue. Attached Figure Description
[0015] The present invention will be further described below with reference to the accompanying drawings.
[0016] Figure 1 This is a perspective view of the present invention; Figure 2 This is a cross-sectional view of the present invention; Figure 3 This is a schematic diagram of the automatic monitoring and adjustment system in this utility model; Figure 4 This is a schematic diagram of the water inlet structure in this utility model; Figure 5 This is a schematic diagram of the structure of the medicine container in this utility model; In the diagram: 1. Dosing tank body; 11. Tank lid; 12. Chemical tank cover; 13. Chemical tank; 14. Discharge port; 15. Real-time water quality monitoring instrument; 16. Telescopic rod; 17. Adjusting plate; 18. Inlet; 2. Baffle; 3. Mesh plate; 31. Rubber strip; 4. Miniature baffle; 5. Buoyancy plate; 6. Base; 61. Ring. Detailed Implementation
[0017] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0018] like Figures 1 to 3As shown in the figure, a swimming pool water treatment chemical dosing device according to an embodiment of the present invention includes a dosing tank 1; a tank cover 11 is installed on the top of the dosing tank 1; a medicine chamber cover 12 is rotatably connected to the top of the tank cover 11; a medicine chamber 13 is threadedly connected to the bottom of the medicine chamber cover 12; multiple medicine outlet holes 14 are opened on the side wall of the medicine chamber 1; a real-time water quality monitoring instrument 15 is fixedly connected to the side wall of the real-time water quality monitoring instrument 15; a telescopic rod 16 is slidably connected to the side wall of the real-time water quality monitoring instrument 15; an adjusting plate 17 is fixedly connected to the end of the telescopic rod 16; multiple water inlets 18 are opened on the side wall of the dosing tank 1; the opening size of the water inlets 18 increases sequentially along the side closer to the real-time water quality monitoring instrument 15; during operation, the medicine chamber cover 12 is opened, the required chemical is added into the medicine chamber 13, the medicine chamber cover 12 is tightened, and the entire dosing tank 1 is placed into the swimming pool. At this time, the real-time water quality monitoring instrument 15 starts to work, and the telescopic rod 16 drives the adjusting plate 17 to move. When the real-time water quality monitoring instrument 15 detects a low concentration of chemicals in the water, the telescopic rod 16 moves the adjusting plate 17 toward the instrument, allowing pool water to enter the dosing tank 1 through the inlet 18 and mix with the chemicals in the chemical chamber 13 through the outlet 14, before finally being reintroduced into the pool through the inlet 18. Conversely, when the pool has sufficient chemicals, the telescopic rod 16 moves the adjusting plate 17 away from the instrument, blocking the inlet 18 and preventing chemicals from entering the pool. By using the real-time water quality monitoring instrument 15 and the adjusting plate 17, real-time water quality monitoring of the pool water can be achieved. The rate of chemical discharge can be controlled based on real-time conditions, reducing the problem of excessively low or high chemical concentrations in the pool water due to untimely observation. Furthermore, by sequentially changing the size of the inlet 18, a larger change in chemical flow rate can be achieved within a short time, making it more controllable per unit time.
[0019] like Figures 2 to 5 As shown, a partition 2 is fixedly connected to the inner wall of the medicine tank 13; the partition 2 divides the interior of the medicine tank 13 into two spaces; during operation, different agents can be placed in the spaces of the two medicine tanks 13 separated by the partition 2 as needed, such as adding chlorine tablets and slow-release algaecides simultaneously, to prevent them from mixing and reacting chemically inside the medicine tank 13, thereby losing their original effect or generating other useless substances; through the setting of the partition 2, different agents can be placed in the spaces of the two medicine tanks 13 separated by the partition 2 as needed, to prevent different drugs from mixing and reacting chemically inside the medicine tank 13, thereby losing their original effect or generating other useless substances, reducing the problem of poor disinfection and cleaning effect of pool water caused by agent failure; at the same time, the detachable setting of the medicine tank 13 facilitates the replacement of agents and also makes it easy to clean the medicine outlet 14, reducing its blockage.
[0020] like Figures 1 to 5As shown, a mesh plate 3 is fixedly connected to the inner wall of the inlet 18; the mesh plate 3 is located on the side closest to the inside of the dosing tank 1. A rubber strip 31 is fixedly connected to the side wall of the adjusting plate 17; when pool water enters the dosing tank 1 through the inlet 18, the mesh plate 3 can block impurities carried in the water flow outside the dosing tank 1, preventing them from entering the dosing tank 1 and contaminating the chemicals; when the chemicals return to the pool with the water through the inlet 18, the mesh plate 3 can also leave some of the clumped chemicals inside the dosing tank 1, preventing them from flowing into the pool with the water flow and causing harm; the rubber strip 31 can scrape off the impurities remaining on the side wall of the dosing tank 1; through the setting of the mesh plate 3, one side The screen 3 prevents impurities carried by the water flow from entering the dosing tank 1 and contaminating the chemicals, thus reducing the problem of drug deterioration caused by impurity contamination. On the other hand, the screen 3 can also retain some of the clumped chemicals inside the dosing tank 1, preventing them from flowing into the pool with the water flow and causing harm, thus reducing the problem of harm to the human body caused by clumped chemicals in the pool. At the same time, the rubber strip 31 can scrape off the impurities remaining on the surface of the dosing tank 1, reducing the problem of mechanical blockage caused by the residue of impurities.
[0021] like Figures 1 to 5 As shown, multiple micro-baffles 4 are fixed to the side wall of the medicine tank 13; the micro-baffles 4 are arranged circumferentially; the micro-baffles 4 and the medicine outlet 14 are spaced apart; when pool water enters the dosing tank 1 through the inlet 18, the water flow impacts the micro-baffles 4, causing the medicine tank 13 to rotate. On the one hand, this rotation can reduce the clumping and adhesion of the medicine inside the medicine tank 13 due to long-term storage; on the other hand, the micro-baffles 4 can also play a certain role in stirring, so that the medicine and pool water are mixed more thoroughly. Through the setting of the micro-baffles 4, on the one hand, the problem of clumping and adhesion of the medicine inside the medicine tank 13 due to long-term storage can be reduced; on the other hand, the medicine and water can be mixed and reacted more thoroughly.
[0022] like Figures 1 to 5 As shown, a buoyancy plate 5 is fixed to the side wall of the dosing tank 1; the buoyancy plate 5 is made of a lightweight reflective material; when the dosing tank 1 is placed in the pool, its weight may increase as more water flows into it. At this time, the buoyancy plate 5 will provide greater buoyancy to the dosing tank 1 to prevent it from sinking; by setting the buoyancy plate 5, greater buoyancy can be provided to the dosing tank 1, reducing the problem of submersion caused by excessive weight; at the same time, the lightweight reflective material of the buoyancy plate 5 reduces its own weight while making it more conspicuous and easier for staff to locate.
[0023] like Figures 1 to 5As shown, a base 6 is fixedly connected to the bottom of the dosing tank 1; a ring 61 is rotatably connected to the bottom of the base 6; when the dosing tank 1 is placed in the pool, a weight can be tied to one end of the rope and the other end can be tied inside the ring 61, which can act as an "anchor" to reduce its drifting in the pool; the ring 61 can fix the dosing tank 1 in a specific position, reducing the problem of it drifting in the pool and being difficult to find and retrieve; at the same time, the rotatable connection between the ring 61 and the base 6 allows the dosing tank 1 to rotate slightly while being fixed, which is more conducive to the mixing of the medicine inside the dosing tank 1.
[0024] Working principle: During operation, the medicine tank cover 12 is opened, the required medicine is added into the medicine tank 13, the medicine tank cover 12 is tightened, and the entire medicine tank 1 is placed into the pool. At this time, the real-time water quality monitoring instrument 15 starts working, and the telescopic rod 16 moves the adjusting plate 17. When the real-time water quality monitoring instrument 15 detects that the medicine content in the water is low, the telescopic rod 16 moves the adjusting plate 17 towards the real-time water quality monitoring instrument 15, so that the pool water enters the medicine tank 1 through the inlet 18 and mixes with the medicine inside the medicine tank 13 through the outlet 14, and finally... Finally, the water is reintroduced into the pool through inlet 18; conversely, when the pool has sufficient chemicals, the telescopic rod 16 moves the adjusting plate 17 away from the real-time water quality monitoring instrument 15, blocking inlet 18 and preventing chemicals from entering the pool; during operation, different chemicals can be placed in the spaces of the two chemical tanks 13 separated by the partition 2, such as adding chlorine tablets and slow-release algaecides simultaneously to prevent them from mixing and reacting chemically inside the chemical tanks 13, thus losing their original effect or generating other useless substances; when pool water enters the chemical tank through inlet 18... When the dosing tank 1 is inside the tank, the mesh plate 3 can block impurities carried by the water flow from entering the dosing tank 1 and contaminating the chemicals. When the chemicals return to the pool with the water from the inlet 18, the mesh plate 3 can retain some of the clumped chemicals inside the dosing tank 1, preventing them from flowing into the pool and causing harm. The rubber strip 31 can scrape off impurities remaining on the side wall of the dosing tank 1. When pool water enters the dosing tank 1 from the inlet 18, the water flow will impact the micro baffle 4, causing the chemical tank 13 to rotate. This rotation can reduce the risk of contamination. The medication inside the medication tank 13 may clump and adhere due to prolonged storage; on the other hand, the micro baffle 4 can also play a certain role in stirring, so that the medication mixes more thoroughly with the pool water; when the medication tank 1 is placed in the pool, its weight may increase as more water flows into the medication tank 1, at which time the buoyancy plate 5 will provide greater buoyancy to the medication tank 1 to prevent it from sinking; when the medication tank 1 is placed in the pool, one end of the rope can be tied with a weight and the other end can be tied inside the ring 61, which can act as an "anchor" to reduce the phenomenon of it drifting in the pool.
[0025] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.