Oxidation and antioxidation rehabilitation hydrotherapy system
By introducing a tunnel-like maze structure and an antioxidant and therapeutic hydrotherapy system into the therapeutic hydrotherapy pool, the problem of maintaining therapeutic-grade dissolved hydrogen concentration in existing hydrotherapy pools has been solved, achieving efficient generation and distribution of hydrogen and ozone, and improving the hydrotherapy effect and water activity.
Patent Information
- Application Number
- CN202511132772.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-13
- Publication Date
- 2025-11-11
AI Technical Summary
Existing rehabilitation hydrotherapy pools struggle to maintain therapeutic-grade dissolved hydrogen concentrations, and the water in these pools lacks specific properties, thus impacting rehabilitation outcomes.
The system employs a tunnel-style labyrinthine hydrotherapy pool combined with an oxidative and antioxidant rehabilitation hydrotherapy system, including a pool pump with a hair filter, a pressurized filtration device, a heating device, an oxidative and antioxidant rehabilitation hydrotherapy electrolysis component, a functional immersion-type pressure-bearing LED ultraviolet lamp assembly, a dissolved air cutting pump, an online multi-frequency ultrasonic cavitation dissolved air component, and a narrow-spacing high-speed magnetized hydrolysis component, forming a circulation loop. The water flow is treated by electrolysis, magnetization, and ultraviolet light to generate and maintain high concentrations of hydrogen and ozone.
It achieves a uniform distribution of hydrogen concentration and oxidizing substances in the hydrotherapy pool water, enhancing the hydrotherapy effect. It also maintains a therapeutic-grade dissolved hydrogen concentration through dynamic purification, improving the water's activity and permeability, reducing impurities, and enhancing the effectiveness of rehabilitation activities.
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Figure CN120918939A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of rehabilitation hydrotherapy devices, and in particular to an oxidative and antioxidant rehabilitation hydrotherapy system. Background Technology
[0002] Hydrotherapy refers to water-based treatments or exercises primarily for relaxation, fitness, and rehabilitation. It involves treatment or exercise while the body is partially or fully immersed in water. Hydrotherapy encompasses several schools of thought. Modern rehabilitation hydrotherapy utilizes advanced laminar flow technology to provide resistance-assisted movement (countercurrent or co-current) to patients in the water. The water flow rate is adjusted according to the clinical purpose. Whether performing concentric resistance exercises against the current or eccentric contractions with the current, gradually increasing the water flow rate can serve as an effective indicator of muscle strength progress.
[0003] Rehabilitation hydrotherapy pools are generally rectangular, and can be as large as swimming pools depending on the needs, with a huge water volume, or they can be smaller. Various suitable hydrotherapy equipment is placed in the hydrotherapy pool. The water in modern hydrotherapy pools is ordinary water without any other characteristics. Summary of the Invention
[0004] This application provides an oxidative and antioxidant rehabilitation hydrotherapy system that effectively achieves and maintains the required dissolved hydrogen concentration, and can also simultaneously generate ozone water and slightly acidic hypochlorous acid water.
[0005] The oxidation and antioxidant rehabilitation hydrotherapy system provided in this application adopts the following technical solution: An oxidative and antioxidant rehabilitation hydrotherapy system includes a tunnel-type maze hydrotherapy pool, a pool pump with a hair filter, a pressurized filtration device, a heating device, an oxidative and antioxidant rehabilitation hydrotherapy electrolysis component, a functional immersion overcurrent pressure-bearing LED ultraviolet lamp assembly, a dissolved air cutting pump, an online multi-frequency ultrasonic cavitation dissolved air assembly, and a narrow-spacing high-speed magnetized hydrolysis assembly. The outlet of the tunnel-type maze hydrotherapy pool is connected in sequence through pipes to the pool pump with a hair filter, the pressurized filtration device, the heating device, the oxidative and antioxidant rehabilitation hydrotherapy electrolysis component, the functional immersion overcurrent pressure-bearing LED ultraviolet lamp assembly, the dissolved air cutting pump, the online multi-frequency ultrasonic cavitation dissolved air assembly, and the narrow-spacing high-speed magnetized hydrolysis assembly, and then connected to the return outlet of the tunnel-type maze hydrotherapy pool to form a circulation loop. The interior of the tunnel-type maze hydrotherapy pool is equipped with a U-shaped channel.
[0006] Preferably, the interior of the tunnel-type maze spa pool is provided with a U-shaped channel, and the water flow channel is formed by alternating baffles in the U-shaped channel. The water outlet and the water return are respectively located at both ends of the maze channel.
[0007] Preferably, the labyrinth passage is equipped with an air flotation device for dredging and removing impurities near the water outlet.
[0008] Preferably, the negative pressure port of the dissolved gas cutting pump is connected to a negative pressure gas supply pipeline, and the gas supply pipeline is connected to the negative pressure end of the dissolved gas cutting pump through a solenoid valve, and can be connected to a hydrogen source or a carbon dioxide source as needed.
[0009] Preferably, the narrow-pitch high-speed magnetized hydrolysis component includes a sanitary stainless steel shell, and a solid block composed of two rows of alternating Gaussian neodymium boron strong magnets and isolation layer blocks is provided inside the shell, forming a narrow-pitch flow channel with a thickness of less than 3 mm, and the outer wall of the solid block and the inner wall of the shell form a labyrinth turbulent flow channel.
[0010] Preferably, the oxidative and antioxidant rehabilitation hydrotherapy electrolysis component includes at least one electrolysis unit, each electrolysis unit comprising a triangular prism structure formed by splicing three sets of slender micro-pitch stacked electrode plates, and the triangular prism structure is provided with a turbulence cone component inside.
[0011] Preferably, the micro-distance stacked electrode plate is composed of three layers of electrode sheets, and the distance between the electrode sheets is 1mm micro-distance.
[0012] Preferably, the functional immersion overcurrent pressure-bearing LED ultraviolet lamp assembly includes a triangular LED light strip assembly encapsulated in a quartz sleeve, and the LED light strip assembly is connected to a micro air pump through a heat dissipation frame to form an active cooling structure.
[0013] Preferably, the LED light strip assembly integrates ultraviolet LED beads with wavelengths of 253.7nm and 240-320nm.
[0014] Preferably, the LED light strip assembly is installed in a quartz sleeve that is closed at one end, and the other end of the quartz sleeve is welded with an external quartz thread, which is connected to a sanitary stainless steel chuck with an internal thread through a threaded connection.
[0015] In summary, this application has the following beneficial effects: 1. The high-concentration hydrogen-rich pool water, after electrolysis treatment in the tunnel-style labyrinth spa pool, flows forward against the pool water in the tunnel for circulation. After one circulation, the spa pool water can maintain a high concentration of hydrogen, ozone, and oxidants, so that the spa pool water has biological functions. This helps the hydrogen concentration and oxidants produced after electrolysis to be evenly distributed throughout the water body and provides sufficient time for rehabilitation activities.
[0016] 2. The water in the spa pool is tap water or natural well water, which has a certain degree of conductivity. When a conductor cuts magnetic lines of force at high speed, it will generate an induced electromotive force, which will generate electricity. When the magnetic force is strong enough and the flow rate is fast enough, the generated potential voltage will form an electric current due to the conductivity of water, resulting in water electrolysis and producing hydrogen bubbles and oxygen bubbles. In addition, the spa pool water is highly magnetized, which generates small molecule water, increasing its activity and permeability to enhance the spa effect. The Gauss neodymium boron magnet is sealed with stainless steel.
[0017] 3. By setting turbulence cones and turbulence plates on the inside and outside of the triangular prism structure respectively, the turbulence components can disturb the water flow when the water flows through the plastic tube of the electrolysis unit. This allows the water to pass through the holes and mesh on the micro-particle stacked electrode plate, which will carry out the micro-nano bubbles generated during electrolysis to facilitate electrolysis. Alternatively, a turbine-shaped turbulence component can be installed at the water inlet of the plastic tube of the electrolysis unit to disturb the water flow and facilitate electrolysis operation. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the oxidation and antioxidant rehabilitation hydrotherapy system in this embodiment; Figure 2 This is a schematic diagram of the internal structure of the oxidative, antioxidant, and therapeutic hydrotherapy electrolysis component in this embodiment; Figure 3 This is a schematic diagram of the internal structure of the narrow-pitch high-speed magnetized hydrolysis component in this embodiment; Figure 4 This is a front view of the internal structure of the functional immersion overcurrent pressure-bearing LED ultraviolet lamp in this embodiment; Figure 5 This is a side view of the internal structure of the functional immersion overcurrent pressure-bearing LED ultraviolet lamp in this embodiment; Explanation of reference numerals in the attached diagram: 1. Maze-like hydrotherapy pool; 101. Pool body; 102. Divider; 103. Baffle; 104. Water flow channel; 2. Outlet; 3. Return outlet; 4. Pool pump with hair filter; 5. Pressurized filtration device; 6. Heating device; 7. Oxidative, antioxidant, and therapeutic hydrotherapy electrolysis assembly; 701. Electrolysis unit; 70101. Insulating tube; 70102. Slender micro-particle stacked electrode plate; 70103. Insulating plastic screw; 8. Functional immersion-grade, overcurrent-bearing, pressure-bearing LED ultraviolet lamp assembly; 801. Quartz sleeve; 802. 9. Aluminum triangular strip heat dissipation frame; 10. Dissolved gas cutting pump; 11. Online multi-frequency ultrasonic cavitation dissolved gas assembly; 12. Narrow-pitch high-speed magnetized hydrolysis assembly; 1101. Sanitary stainless steel shell; 1102. Water outlet pipe; 1103. Sanitary stainless steel quick-release chuck; 1104. Water inlet; 1105. Solid isolation block; 110501. Gauss neodymium boron strong magnet; 110502. Isolation layer block; 1106. Narrow-pitch flow channel; 1107. Resonant cavity; 1108. First stop block; 1109. Second stop block; 12. Air flotation impurity removal device. Detailed Implementation
[0019] The present application will now be described in further detail with reference to the accompanying drawings. It should be noted that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the scope of protection of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content. Example
[0020] This invention discloses an oxidative and antioxidant rehabilitation hydrotherapy system, such as Figure 1 As shown, the system includes a tunnel-type maze-style hydrotherapy pool 1, which has an outlet 2 and a return outlet 3. The outlet 2 of the tunnel-type maze-style hydrotherapy pool 1 is sequentially connected to a pool pump 4 with a hair filter, a pressurized filtration device 5, a heating device 6, an oxidative and antioxidant rehabilitation hydrotherapy electrolysis component 7, a functional immersion overcurrent pressure-bearing LED ultraviolet lamp group 8, a dissolved air cutting pump 9, an online multi-frequency ultrasonic cavitation dissolved air component 10, and a narrow-spacing high-speed magnetized hydrolysis component 11. The drain outlet of the narrow-spacing high-speed magnetized hydrolysis component 11 is connected to the return outlet 3 on the tunnel-type maze-style hydrotherapy pool 1.
[0021] like Figure 1 As shown, the water flows back into the tunnel-type labyrinth hydrotherapy pool 1 after passing through the pool pump 4 with hair filter, pressurized filtration device 5, heating device 6, oxidative and antioxidant rehabilitation hydrotherapy electrolysis component 7, functional immersion overcurrent pressure-bearing LED ultraviolet lamp group 8, dissolved air cutting pump 9, online multi-frequency ultrasonic cavitation dissolved air component 10, and narrow-spacing high-speed magnetization hydrolysis component 11.
[0022] like Figure 1As shown, the tunnel-type maze hydrotherapy pool 1 includes a long, narrow pool body 101. A partition plate 102 is installed inside the pool body 101 along its long axis, dividing the interior of the pool body 101 into a U-shaped channel. The outlet 2 and return outlet 3 of the tunnel-type maze hydrotherapy pool 1 are respectively located at both ends of the U-shaped channel. Several baffles 103 are alternately arranged inside the U-shaped channel, dividing the internal space of the U-shaped channel into a serpentine maze-like water flow channel 104. This greatly increases the electrolysis efficiency. The high-concentration hydrogen-rich pool water after electrolysis flows forward against the current within the channel, forming a circulating electrolysis to maintain a high concentration. A series of treated electrolyzed water flows into the water flow channel 104 of the pool body 101 through the return outlet 3, forming a serpentine guided water flow path inside the water flow channel 104, and is discharged through the outlet 2, achieving dynamic purification of the water flow. This helps to evenly distribute the hydrogen concentration and oxidants produced after electrolysis throughout the water body and provides sufficient time for the necessary electrochemical reactions to take place to maintain its therapeutic effect.
[0023] Specifically, the hydrogen-rich pool water in the hydrotherapy pool needs to be changed regularly after prolonged use. The discharged water can be used directly to irrigate crops, a process known as hydrogen agriculture, or for irrigating traditional Chinese medicine, creating hydrogen-based medicinal herbs. This system can be used directly for both hydrogen agriculture and hydrogen-based medicinal herbs. If the water contains a certain amount of ozone during irrigation, it can kill harmful bacteria, viruses, and insect eggs in the soil, thus promoting crop growth. After all, high-temperature soil sterilization is too energy-intensive. It can also be used for treating polluted water, such as removing algae.
[0024] like Figure 1 As shown, through continuous water circulation and a maze-like path, the water body can dynamically and for a long time interact with the pool environment, thereby achieving continuous maintenance and dynamic purification of the water quality after electrolysis, especially the concentration of hydrogen and oxidants.
[0025] like Figure 1 As shown, in large, open bodies of water without passageways (such as traditional swimming pools), even with similar treatment methods, it is difficult to reach and maintain the overall dissolved hydrogen concentration at an effective therapeutic threshold. This is mainly due to the large volume of water, which makes the generated dissolved hydrogen easily diluted and difficult to accumulate effectively. However, if such large bodies of water are physically partitioned and modified to form a passageway-like maze structure, this problem can be effectively avoided, thereby successfully reaching and maintaining the required therapeutic-grade dissolved hydrogen concentration.
[0026] like Figure 1As shown, a flotation device 12 for sludge removal is installed in the U-shaped channel of the pool body 101 near the outlet 2. This device utilizes micro-nano bubbles generated in the water flow or additionally injected. Because a large number of micro-nano bubbles create a flotation phenomenon, as they rise, they adhere to suspended particles, oil, and fine impurities in the water (including those light impurities that remain after preliminary treatment and are difficult to settle or filter). The bubbles envelop the impurities and float to the surface, forming a layer of scum, thus achieving solid-liquid separation of the impurities from the water. It is essential to install several flotation devices 12 on the water surface; these devices can be purchased as commercially available products.
[0027] like Figure 1 As shown, the water, after being cleaned by air flotation, enters the hair filter 4 through a drain pipe connected to the outlet 2 of the pool body 101. The pool pump 4 with the hair filter is a pre-filtration device that uses physical barriers, utilizing the pores of the filter screen and filter element to trap larger impurities in the water flow, especially hair, fibers, leaves, etc., preventing them from entering subsequent filtration devices and heating equipment, thus protecting the subsequent equipment from clogging and damage. The filtration device is used for fine filtration; after hair filtration, the water flow enters the fine filtration stage. This is usually achieved through sand filtration, disc filtration, ultrafiltration, or other deep filtration technologies. When the water flows through the dense filter media, tiny suspended particles, silt, and some colloidal substances are trapped, thereby further reducing the turbidity of the water and improving its clarity. The heating equipment transfers energy to the water flow through a heater to increase the water temperature. The system automatically adjusts the heating amount according to the changes in the external seasons and the preset human comfort temperature to ensure that the water temperature in the spa pool is always maintained within a suitable range.
[0028] like Figure 1 and Figure 2 As shown, the water, after being filtered and heated, enters the interior of the electrolysis component 7 for oxidative and antioxidant rehabilitation hydrotherapy. The electrolysis component is composed of multiple electrolysis units 701 connected in series and parallel. The specific number of electrolysis units 701 is determined according to the cross-sectional area, total length and total water volume of the U-shaped channel of the pool body 101, as well as the conductivity of the water in the pool body 101, and is further adjusted according to the actual operating conditions.
[0029] like Figure 1 and Figure 2 As shown, the electrolysis unit 701 includes an insulating tube 70101. The insulating tube 70101 is a transparent UPVC or CPVC tube with a length of about 1.2 meters, which is convenient for observation and installation. The insulating tube 70101 has three sets of slender micro-pitch stacked electrode plates 70102 inside. The three slender micro-pitch stacked electrode plates 70102 are spliced and assembled into a triangular hollow triangular prism structure and installed and fixed inside the insulating tube 70101.
[0030] like Figure 1 and Figure 2 As shown, the micro-electrode stack consists of three layers of electrode sheets, with a 1mm spacing between them to improve electrolysis efficiency. The middle electrode sheet is the anode, and the top and bottom electrodes are the cathodes. The electrolysis area of this three-layer electrode sheet is twice that of a two-layer electrode sheet. The electrode sheets are densely perforated or can be made into a mesh, which facilitates water flow. Three three-layered, slender electrode sheets form an equilateral triangle, fixed to an equilateral triangular insulating frame. Insulating frames or insulating pads, approximately 1mm thick, separate the electrode sheets to form the micro-electrode plate assembly. It is fixed using insulated plastic screws 70103. The ozone-generating electrode plate material: the electrode plate is made of titanium, with a tin-antimony coating or other ozone-generating coating on the anode plate. The cathode is also made of titanium. Applying a 15V DC voltage between the two electrodes produces ozone and oxygen at the anode. At 1.5V, slightly acidic hypochlorous acid water is produced. Thus, the same electrolysis unit 701 can achieve different effects by controlling the electrolysis voltage. When the electrolysis unit 701 only requires a 1.5V DC voltage to produce slightly acidic hypochlorous acid water, the coating on the anode plate can be ruthenium or even platinum, and hydrogen bubbles are generated on the cathode plate.
[0031] like Figure 1 and Figure 2 As shown, the triangular prism structure has a flow-disrupting cone inside and a flow-disrupting plate on the outer surface. When water flows through the plastic tube of the electrolysis unit 701, the flow-disrupting component disturbs the water flow, causing the water to pass through the holes and mesh on the micro-particle stacked electrode plate and carry out the micro-nano bubbles generated during electrolysis to facilitate electrolysis. A turbine-shaped flow-disrupting component can also be installed at the water inlet of the plastic tube of the electrolysis unit 701 to disturb the water flow and facilitate electrolysis operation.
[0032] like Figure 4 and Figure 5As shown, the electrolyzed water flows through the functional immersion pressure-bearing LED ultraviolet lamp assembly 8. This assembly includes LED ultraviolet lamps, which have the advantages of low power, high efficiency, and long lifespan. Due to the limited irradiation angle of a single LED bead, to achieve 360-degree circumferential irradiation without dead angles, the LED ultraviolet lamp strips are fixed to an aluminum triangular heat dissipation frame 802. This allows for the installation of three LED ultraviolet lamp strips, each fixed to one of the three faces of the aluminum triangular heat dissipation frame 802, forming a triangular LED strip assembly. The triangular LED strip assembly is then inserted into a quartz sleeve 801 of appropriate length and outer diameter. One end of the quartz sleeve 801 is semi-circularly closed, and the other end is welded with a quartz external thread. For example, if the outer diameter of the quartz sleeve 801 is 32mm, a quartz tube thread with an outer diameter of one inch is welded on. Teflon tape and sealing liquid Teflon tape are then wrapped around the thread, and it is twisted into a one-inch through-thread sanitary chuck quick-release stainless steel one-inch internal thread, rotating in the opposite direction from the sanitary quick-release face. The process involves inserting the stainless steel sanitary chuck quick-release quartz sleeve 801 assembly, then inserting the triangular LED strip assembly into the quartz sleeve 801 assembly to form a functional immersion-grade, current-carrying, pressure-bearing LED UV lamp assembly. Due to the long length of the lamp assembly, the aluminum triangular frame inside the quartz sleeve 801 serves to conduct heat from the LED UV strip to the aluminum frame. It is also necessary to dissipate the heat from the aluminum frame; therefore, a miniature cooling air pump is used, with an air filter installed at the pump's inlet. To prevent dust from entering, a tube is connected to the outlet of the air pump, passing through the middle of the aluminum triangular frame to the end. When the pressure-bearing LED UV lamp assembly is powered on, the micro air pump starts, blowing cool external air through the tube to the top of the quartz sleeve 801, and then out of the quartz sleeve 801. This removes heat from the aluminum triangular heat dissipation frame 802 and the space inside the quartz sleeve 801, thus cooling the lamps to ensure normal operation. Otherwise, overheating could burn out the LED beads and electronic components. The power supply for the immersion-function overcurrent-bearing pressure-bearing LED UV lamp assembly must be a medical-certified, safe switching power supply, typically with a 24V DC output. One power supply can power several lamp assemblies. A temperature protection element can be installed inside the quartz tube aluminum frame for overheat protection.
[0033] like Figure 4 and Figure 5As shown, LED ultraviolet lamp beads have different wavelengths, each with different functions such as sterilization, chlorine removal, and ozone removal within its wavelength range. Ultraviolet light with a wavelength around 253.7nm has the best sterilization effect, ultraviolet light in the 200-300nm range is effective at decomposing residual chlorine, and ultraviolet light in the 240-320nm range is effective at decomposing ozone, with 253.7nm also showing good results. Different functional LED ultraviolet lamp beads can be selected to create lamp strips to achieve different functions. Alternatively, any two or even three functional LED lamp beads can be selected and arranged alternately to create LED ultraviolet lamp strips, achieving combined functions. LED beads with a wavelength of 253.7nm are selected to form an immersion pressure-bearing LED ultraviolet lamp assembly, which can simultaneously achieve sterilization, deodorization, and residual chlorine removal. It is used in conjunction with the oxidation, antioxidation, rehabilitation, and hydrotherapy electrolysis component 7 by applying different voltages. The pressure-bearing LED ultraviolet lamp assembly is installed into the internal sanitary mirror-polished stainless steel tube through a sanitary quick-release chuck, and appropriate inlet and outlet ports 2 are set. When water flows through the inlet and outlet ports 2 and the lamp power is turned on, the ultraviolet light irradiates the flowing water. Because the sanitary mirror-polished ultraviolet light penetrates the water and is reflected by the inner wall of the stainless steel tube, the irradiation effect of the ultraviolet lamp is increased. It can be set in an appropriate position.
[0034] like Figure 4 and Figure 5 As shown, the UV-sterilized water flows through the dissolved air cutting pump 9 into the interior of the online multi-frequency ultrasonic cavitation dissolved air assembly 10. The dissolved air cutting pump 9 is existing technology with a mature background. Its function is to cut the electrolyzed, bubble-rich water flowing through the electrolysis unit 701 into micro-nano bubble water and pressurize it to facilitate bubble dissolution. The specifications of the dissolved air cutting pump 9 should be determined according to the size of the channel-type hydrotherapy pool, and adjustments can be made experimentally if necessary. The negative pressure port of the dissolved air pump can be connected to a hydrogen source to increase the hydrogen supply, or it can be connected to a carbon dioxide source or other medical gases to achieve different hydrotherapy effects.
[0035] like Figure 1 As shown, the online multi-frequency ultrasonic cavitation dissolved gas assembly 10 consists of a sanitary chuck quick-release ultrasonic transducer and a dedicated ultrasonic power supply. It can also be a low-frequency resonant head or a low-frequency resonant coil and a dedicated low-frequency resonant power supply. It can be installed in the pipeline as needed, and installed at appropriate positions before and after the dissolved gas cutting pump 9 for pressurized cavitation dissolved gas. In order to give full play to the role of the ultrasonic field, at least 40cm of pipeline length should be left in the direction of the probe.
[0036] like Figure 1 and Figure 3As shown, it finally enters the interior of the narrow-spacing high-speed magnetized hydrolysis component 11. The narrow-spacing high-speed magnetized hydrolysis component 11 includes a sanitary stainless steel shell 1101. The sanitary stainless steel shell 1101 is provided with two symmetrically arranged water outlet pipes 1102. A sanitary stainless steel quick-installation chuck 1103 is fixedly installed at one end of the sanitary stainless steel shell 1101, and a water inlet 1104 is formed at the end of the sanitary stainless steel quick-installation chuck 1103.
[0037] Two rows of solid isolation blocks 1105 are symmetrically arranged at the center of the sanitary stainless steel shell 1101. A narrow-spacing flow channel 1106 with a thickness of 1 mm is formed between the two rows of solid isolation blocks 1105. The high-speed flow channel is connected to the inlet 1104. Specifically, each solid block 1105 is assembled by alternating layers of several Gaussian neodymium boron magnets 110501 and several isolation layer blocks 110502. The Gaussian neodymium boron magnets 110501 are elongated, with their width matching the width of the narrow-spacing flow channel 1106 and their length appropriate. All magnets flow into the narrow-spacing flow channel 1106 with their S and N poles pointing outwards. Several Gaussian neodymium boron magnets 110501 can be evenly distributed, with appropriate spacing between them to preserve... The magnetic channels, evenly distributed according to the component length, allow the spa pool water to pass through the narrow-spacing high-speed magnetization hydrolysis component 11 after a series of treatments. The water flows at high speed through the narrow-spacing channel 1106, cutting Gaussian magnetic lines of force, causing an electrochemical reaction that partially hydrolyzes the spa pool water and further refines the magnetization. The principle is that the spa pool water, whether tap water or natural well water, has a certain degree of conductivity. When a conductor cuts magnetic lines of force at high speed, an induced electromotive force is generated, resulting in a power generation effect. When the magnetic force is strong enough and the flow rate is fast enough, the generated potential voltage, due to the conductivity of the water, forms a current, causing water electrolysis and producing hydrogen and oxygen bubbles. Furthermore, the highly magnetized spa pool water generates small-molecule water, increasing its activity and permeability to enhance the spa effect. The Gaussian neodymium boron magnets are encased and sealed in stainless steel.
[0038] A resonant cavity 1107 is formed between the inner wall of the sanitary stainless steel shell 1101 and the outer wall of the solid isolation block 1105. The resonant cavity 1107 is connected to the outlet of the narrow-spacing channel 1106. Several first baffles 1108 are provided on the inner wall of the sanitary stainless steel shell 1101, and several second baffles that are offset from the first baffles are provided on the outer surface of the solid block 1105. The first baffles 1108 and the second baffles 1109 divide the interior of the resonant cavity 1107 into a labyrinthine turbulent flow channel. The two labyrinthine turbulent flow channels are respectively connected to two water outlet pipes 1102. The labyrinthine turbulent flow channel utilizes the pressure and energy of the water from the middle narrow-spacing water channel to collide and cavitate as it passes through the labyrinthine turbulent flow channel from top to bottom, which facilitates the dissolution of gas and the generation of micro-nano bubbles. It also utilizes the magnetic field of the N pole on the back to magnetize the water in the spa pool again, increasing the magnetization channel and magnetization effect, and reducing the risk of injury caused by the impact energy of the water flow at the outlet. Multiple narrow-pitch high-speed magnetization hydrolysis components 11 can be set according to the system size. The hydrotherapy water that passes through this narrow-pitch high-speed magnetization hydrolysis component 11 flows into the hydrotherapy pool. The conditions for magnetization hydrolysis are that the magnetic field is strong enough and the water flow rate cuts the magnetic field lines faster. The conductivity of the water in the hydrotherapy pool is also an influencing factor.
[0039] The spa system also includes an electrical control system, which is a touch screen plus a microcomputer control system, generally PLC control. Sensors for water temperature, pressure, electrolysis current, electrolysis voltage, and water flow are set according to actual conditions and displayed in real time on the touch screen. The system measures the electrolysis current of each electrolysis unit 701 in the antioxidant and therapeutic spa electrolysis component 7 in real time, sums and calculates the electrolysis current of the electrolysis component, and finally calculates the electrolysis current of the entire spa system. Based on an estimated electrolysis current of 1 ampere per minute producing 7 ml of hydrogen gas at the cathode, the system can simultaneously display the hydrogen production of each electrolysis unit 701, the electrolysis component, and the spa system. Based on the circulating water flow rate, the spa pool channel size, and the water volume in the spa pool, the time required for one cycle of electrolysis can be estimated.
[0040] Because the amount of oxygen and ozone produced at the anode is half that of hydrogen, with ozone accounting for approximately 20% of the total oxygen production, the estimated ozone production can be displayed in real time when the electrolysis voltage is 15 volts DC. The electrical control module can be fully automatic, and users can make various settings as needed, such as setting the electrolysis voltage of the electrolysis unit 701, the operation of the overcurrent-bearing LED ultraviolet lamp group, and the nighttime sleep time, etc.
[0041] When the system starts operating, the pressure pump is first activated to pressurize the water from the hydrotherapy pool and supply it to the system. Once water is detected and flowing normally, the dissolved air pump is activated. Then, DC voltage is supplied to the oxidative and antioxidant rehabilitation hydrotherapy electrolysis component 7 to enable normal electrolysis. Power is supplied to the dedicated power supply and operating signal to the online multi-frequency ultrasonic cavitation dissolved air component 10 and the low-frequency resonance dissolved air component to enable them to operate. The functional immersion overcurrent-bearing pressure LED ultraviolet lamp group 8 is then turned on or off as needed. This completes the normal operation of the oxidative and antioxidant rehabilitation hydrotherapy system. If there is no water or the pressure pump malfunctions and stops operating, the system will detect abnormal water pressure and flow and stop working to protect the components from damage.
[0042] If you want to increase the hydrogen concentration, you can configure a pure hydrogen source and connect it to the negative pressure port of the gas pump via an intake solenoid valve. When needed, the circuit controls the opening of the intake solenoid valve and the pure hydrogen source, which can increase the hydrogen concentration in the spa pool. Of course, you can also configure a carbon dioxide source or other medical gas sources. Carbon dioxide sources also have higher health benefits.
[0043] Because the system itself has a sterilization and disinfection effect, the traditional chemical disinfection device for hydrotherapy pools is omitted.
[0044] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. An oxidative and antioxidant rehabilitation hydrotherapy system, characterized in that, The system includes a tunnel-type maze hydrotherapy pool (1), a pool pump with a hair filter (4), a pressurized filtration device (5), a heating device (6), an oxidative and antioxidant rehabilitation hydrotherapy electrolysis component (7), a functional immersion overcurrent pressure-bearing LED ultraviolet lamp group (8), a dissolved air cutting pump (9), an online multi-frequency ultrasonic cavitation dissolved air component (10), and a narrow-pitch high-speed magnetized hydrolysis component (11). The outlet (2) of the tunnel-type maze hydrotherapy pool (1) is connected in sequence through pipes to the pool pump with a hair filter (4), the pressurized filtration device (5), the heating device (6), the oxidative and antioxidant rehabilitation hydrotherapy electrolysis component (7), the functional immersion overcurrent pressure-bearing LED ultraviolet lamp group (8), the dissolved air cutting pump (9), the online multi-frequency ultrasonic cavitation dissolved air component (10), and the narrow-pitch high-speed magnetized hydrolysis component (11), and then connected to the return water outlet (3) of the tunnel-type maze hydrotherapy pool (1) to form a circulation loop. The pool body (101) of the tunnel-type maze hydrotherapy pool (1) is provided with a U-shaped maze channel.
2. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 1, characterized in that, The U-shaped maze passage is formed by alternating baffles (103) to create a serpentine water flow channel (104), and the outlet (2) and return outlet (3) are respectively located at both ends of the U-shaped passage.
3. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 1, characterized in that, The U-shaped channel is equipped with an air flotation device (12) for dredging impurities near the outlet (2).
4. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 1, characterized in that, The dissolved gas cutting pump (9) is connected to a carbon dioxide supply pipeline, which is connected to the negative pressure end of the dissolved gas cutting pump (9) through a solenoid valve.
5. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 1, characterized in that, The narrow-pitch high-speed magnetized hydrolysis component (11) includes a sanitary stainless steel shell (1101), and a solid block (1105) consisting of two rows of alternating Gaussian neodymium boron strong magnets (110501) and an isolation layer block (110502) is provided inside the shell, forming a narrow-pitch flow channel (1106) with a thickness of less than 3 mm. The outer wall of the solid block (1105) and the inner wall of the shell form a labyrinth turbulent flow channel.
6. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 1, characterized in that, The antioxidant and therapeutic hydrotherapy electrolysis component (7) includes at least one electrolysis unit (701), each electrolysis unit (701) contains a triangular prism structure formed by splicing three sets of slender micro-pitch stacked electrode plates (70102), and the triangular prism structure is provided with a turbulence cone component inside.
7. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 6, characterized in that, The micro-distance stacked electrode plate consists of three layers of electrode sheets, with a distance of 1 mm between the electrode sheets. The electrode sheets are densely covered with holes or made of fine metal mesh.
8. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 1, characterized in that, The functional immersion overcurrent pressure-bearing LED ultraviolet lamp assembly (8) includes a triangular LED light strip assembly encapsulated in a quartz sleeve (801). The LED light strip assembly is connected to a micro air pump through a heat dissipation frame to form an active cooling structure. One end of the quartz sleeve (801) is closed and the other end is welded with quartz external threads, and is connected to the internal threads of a stainless steel sanitary quick-release chuck by threaded connection.
9. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 8, characterized in that, The LED light strip assembly integrates ultraviolet LED beads in the 253.7nm and 240-320nm wavelength bands.
10. The oxidative and antioxidant rehabilitation hydrotherapy system according to claim 9, characterized in that, The LED light strip assembly is installed inside a mirror-polished stainless steel tube using a sanitary quick-release chuck.