CN204356164U - A kind of water treatment device for high intensity focused ultrasound and Controlling System - Google Patents

A kind of water treatment device for high intensity focused ultrasound and Controlling System Download PDF

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CN204356164U
CN204356164U CN201420857592.4U CN201420857592U CN204356164U CN 204356164 U CN204356164 U CN 204356164U CN 201420857592 U CN201420857592 U CN 201420857592U CN 204356164 U CN204356164 U CN 204356164U
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water
controlling system
reverse osmosis
treatment device
high intensity
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邹超
闫文超
帖长军
刘新
郑海荣
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Shenzhen Institute of Advanced Technology of CAS
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Shenzhen Institute of Advanced Technology of CAS
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Abstract

The utility model discloses a kind of water treatment device for high intensity focused ultrasound and Controlling System, comprise purifying water process equipment, water degasification treatment facility and flow-control equipment, purifying water process equipment connection water degasification treatment facility, water degasification treatment facility connection traffic operating device, wherein, purifying water process equipment at least comprises the filter core for filtering and several reverse osmosis membranes for purifying; Water degasification treatment facility at least comprises degassing film.This technical scheme not only achieves the function preparing de aerated water in real time, and decreases the volume of water treating equipment, achieves the miniaturization of water treating equipment.In addition, also achieve the accurate control to treatment water tank water intake amount and aquifer yield, the data such as Real-Time Monitoring collection purification water oxygen level, specific conductivity, temperature, ensure water treatment device safety, reliable, steady running.

Description

A kind of water treatment device for high intensity focused ultrasound and Controlling System
Technical field
The utility model relates to the high intensity focused ultrasound field of guided by magnetic resonance, particularly relates to the water treatment device for the high intensity focused ultrasound of guided by magnetic resonance and Controlling System.
Background technology
High Intensity Focused Ultrasound (High Intensity Focused Ultrasound, HIFU) technology is considered to the new technology of 21 century non-invasive therapy tumour, in clinical application, successfully " melt " kinds of tumors.Its principle of work is: converted electrical energy into the ultrasonic beam focusing on detected object by transverter, makes the detected part temperature of detected object at short notice higher than 65 °, thus makes tumour cell sex change, necrosis, reach the object of thermal ablation therapy tumour.
When producing ultrasonic beam, HIFU technology needs to adopt water as Energy Coupling medium, realizes energy transformation and is coupled to detected object.But, the water treating equipment of traditional HIFU therapy system usually can not meet the demand of HIFU therapy system in operation, there is following problem: first, the each valve of water treating equipment of traditional HIFU therapy system needs Artificial Control, water, through a constant temperature process, is difficult to reach service requirements; Secondly, hydraulic pressure is difficult to control, and when causing performing the operation, water flow velocity is non-constant, and water level is difficult to control, and can not realize Real-time Water purifying treatment, the water yield in control treatment water tank that can not be quantitative, and the level of automation of water treating equipment is lower; Finally, the water treating equipment volume of traditional HIFU therapy system is comparatively large, takies Operation theatre space comparatively large, makes troubles to surgical procedure.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of water treatment device for high intensity focused ultrasound and Controlling System, the volume that the water treating equipment solving traditional HIFU system exist is large, can not water problem processed in real time, and traditional water treatment device Controlling System exist can not be quantitative control treatment water tank in the water yield, problem that water treatment device level of automation is low.
Create object to reach foregoing invention, the utility model have employed following technical scheme:
A kind of water treatment device for high intensity focused ultrasound, comprise purifying water process equipment, water degasification treatment facility and flow-control equipment, water degasification treatment facility described in described purifying water process equipment connection, described water degasification treatment facility connects described flow-control equipment, wherein, described purifying water process equipment at least comprises the filter core for filtering and several reverse osmosis membranes for purifying; Described water degasification treatment facility at least comprises degassing film.
Further, described purifying water process equipment also comprises the first magnetic valve, switch, several topping-up pumps, hybrid ionic exchange column and active carbon filter core, described first magnetic valve connects described filter core, described switch and several topping-up pumps are between described filter core and reverse osmosis membrane, described hybrid ionic exchange column is connected with several reverse osmosis membranes, and described active carbon filter core connects hybrid ionic exchange column and described degassing film respectively.
Further, described filter core comprises the first filling cotton, granulated active carbon, junction type gac, softener resin and the second filling cotton; The quantity of described reverse osmosis membrane is 4; The quantity of described topping-up pump is 2; Described switch comprises low-tension switch and high-voltage switch gear.
Further; described first magnetic valve is connected with described first filling cotton, granulated active carbon, junction type gac, softener resin, the second filling cotton, low-tension switch, high-voltage switch gear and is formed main line; one end of topping-up pump described in each is connected in parallel on described main line; the other end of topping-up pump described in each connects two described reverse osmosis membranes respectively; four described reverse osmosis membrane parallel connections at least form the first branch road, and described hybrid ionic exchange column is connected with described first branch road.
Further, described purifying water process equipment also comprises the second magnetic valve, needle type valve and reverse checkvalve, on described first branch road of described reverse checkvalve between described reverse osmosis membrane and hybrid ionic exchange column; Four described reverse osmosis membrane parallel connections also form the second branch road, and described needle type valve is connected with described second branch road, and described second magnetic valve is in parallel with described needle type valve.
Further, described water degasification treatment facility also comprises vacuum pump, pressure transmitter and pressure-pot, and described degassing film connects described pressure-pot, and described vacuum pump connects described pressure transmitter, and vacuum pump and pressure transmitter are connected in parallel on degassing film.
Further, be also provided with pressure switch, conductivity sensor, temperature sensor and oxygen between described degassing film and pressure-pot and dissolve sensor.
Further, described flow-control equipment comprises treatment water tank, water inlet pipe, rising pipe and wet-pit, and described water inlet pipe connects described pressure-pot and described treatment water tank, and water inlet pipe is provided with first-class gauge and first flow valve; Described rising pipe connects described wet-pit and treatment water tank, and rising pipe is provided with second gauge and the second flow valve.
For a Controlling System for the water treatment device of high intensity focused ultrasound, at least comprise main control chip, clock chip, communication unit, detecting unit and control unit, described clock chip is connected by I2C data bus with main control chip; Described communication unit is connected by UART data bus with main control chip, and described detecting unit is connected by I/O interface with main control chip, described control unit is connected with main control chip, for simulating signal is converted to numerary signal.
Further, described communication unit comprises RS232 communication module and RS485 communication module; Described detecting unit comprises switch detection module and pulse signal detection module; Described control unit comprises flow-control module, vacuum pressure control module, cell voltage control module, temperature control modules, specific conductivity control module and oxygen and dissolves control module; This system also comprises liquid crystal display, and described liquid crystal display is connected with described RS232 communication module; This system also comprises solenoid valve driving module, and described solenoid valve driving module is connected by I/O interface with main control chip.
The beneficial effects of the utility model:
A kind of water treatment device for high intensity focused ultrasound that the utility model provides and Controlling System, adopt multiple reverse osmosis membrane to carry out the preparation of pure water by mode in parallel, namely ensure that Water discharge flow speed and quality, can not increase again the volume of HIFU system.Meanwhile, adopt the mode of degassing film to carry out degassed process, not only achieve the function preparing de aerated water in real time, and decrease the volume of water treating equipment, achieve the miniaturization of water treating equipment.In addition, this Controlling System adopts main control chip to build peripheral circuit method and controls water treatment device, provide human-computer interaction interface and remote control function, the accurate control to treatment water tank water intake amount and aquifer yield is achieved by flow-control module control flow check gauge, sensor, conductivity sensor and temperature sensor is dissolved by oxygen, main control chip can purify the data such as water oxygen level, specific conductivity, temperature by Real-time Collection, ensures water treatment device safety, reliable, steady running.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of the utility model embodiment for the water treatment device of high intensity focused ultrasound.
Fig. 2 is the schematic diagram of the utility model embodiment for the water treatment device Controlling System of high intensity focused ultrasound.
Embodiment
In order to set forth technical characterstic of the present utility model and structure better, be described in detail below in conjunction with preferred embodiment of the present utility model and accompanying drawing thereof.
Consult Fig. 1, Fig. 2, a kind of water treatment device for high intensity focused ultrasound, comprise purifying water process equipment 100, water degasification treatment facility 200 and flow-control equipment 300, this purifying water process equipment 100 connects water degasification treatment facility 200, this water degasification treatment facility 200 connection traffic operating device 300, wherein, purifying water process equipment 100 at least comprises the filter core 120 for filtering and several reverse osmosis membranes 150 (Reverse Osmosis, RO) for purifying; Water degasification treatment facility 200 at least comprises degassing film 210.
It should be noted that, the volume that the water treating equipment for traditional HIFU system exist is large, can not the problem such as water processed in real time.The present embodiment selects multiple reverse osmosis membrane 150 to carry out the preparation of pure water by mode in parallel, namely ensure that Water discharge flow speed and quality, can not increase again the volume of HIFU system.In addition, adopt the mode of degassing film 210 to carry out degassed process, not only achieve the function preparing de aerated water in real time, and decrease the volume of water treating equipment, make water treating equipment be tending towards miniaturization.
Particularly, this purifying water process equipment 100 also comprises the first magnetic valve 111, switch 130, several topping-up pumps 140, hybrid ionic exchange column 170 and active carbon filter core 180.This first magnetic valve 111 connects filter core 120; Switch 130 and several topping-up pumps 140 are between filter core 120 and reverse osmosis membrane 150; Hybrid ionic exchange column 170 is connected with several reverse osmosis membranes 150; Active carbon filter core 180 connects hybrid ionic exchange column 170 and degassing film 210 respectively.This first magnetic valve 111 is positioned at the water inlet of these water treating equipment, for controlling the opening and closing of water inlet.
Wherein, filter core 120 comprises the first filling cotton 121, granulated active carbon 122, junction type gac 123, softener resin 124 and the second filling cotton 125; The quantity of reverse osmosis membrane 150 is 4; The quantity of topping-up pump 140 is 2; Switch 130 comprises low-tension switch 132 and high-voltage switch gear 131.First magnetic valve 111 is connected form main line with the first filling cotton 121, granulated active carbon 122, junction type gac 123, softener resin 124, second filling cotton 125, low-tension switch 132, high-voltage switch gear 131.
It should be noted that; placement order in this filter core 120 is the first filling cotton 121, granulated active carbon 122, junction type gac 123, softener resin 124 and the second filling cotton 125; this first filling cotton 121, granulated active carbon 122, junction type gac 123, softener resin 124 and the second filling cotton 125 are and are vertically arranged in pipeline, enable water along during tube runs successively through the first filling cotton 121, granulated active carbon 122, junction type gac 123, softener resin 124 and the second filling cotton 125.The present embodiment chooses the first filling cotton 121 and the second filling cotton 125 is of a size of 1um, for filtering and removing granule foreign; This granulated active carbon 122 be combined with each other, for the chlorine in filtered water with junction type gac 123; Softener resin 124 is for removing the positively charged ion in water, and such as calcium, magnesium, prevent fouling.This filter core 120 mainly plays effect water being carried out to primary purification, filters and removes impurity, ion and the pollutent in water, playing a protective role to the reverse osmosis membrane 150 of secondary-cleaned.When water is after filter core 120 filters, need by low-tension switch 132 and high-voltage switch gear 131, this low-tension switch 132 and high-voltage switch gear 131 are for detecting water flow pressure after filter core 120 filters, when pressure is too small, low-tension switch 132 closes, prompting user water flow pressure is low, needs more renew cartridge 120 or check; When hypertonia, high-voltage switch gear 131 closes, and purifying water process equipment 100 is shut down by Controlling System, protection reverse osmosis membrane 150.
Wherein, one end of each topping-up pump 140 is connected in parallel on main line, the other end of each topping-up pump 140 connects two reverse osmosis membranes 150 respectively, the parallel connection of four reverse osmosis membranes 150 at least forms the first branch road 151, hybrid ionic exchange column 170 is connected with the first branch road 151, active carbon filter core 180 is connected with hybrid ionic exchange column 170, that is: in four reverse osmosis membranes 150, adjacent two reverse osmosis membranes 150 are in parallel, form two reverse osmosis membrane 150 parallel pipelines, one end of each reverse osmosis membrane 150 parallel pipeline is connected with a topping-up pump 140, be two reverse osmosis membrane 150 parallel pipelines and connect two topping-up pumps 140 respectively, and the other end of two reverse osmosis membrane 150 parallel pipelines first branch road 151 that at least formed parallel with one another, this first branch road 151 connects hybrid ionic exchange column 170.
It should be noted that, this topping-up pump 140, for increasing water flow pressure, enables water enter smoothly in reverse osmosis membrane 150 and carries out secondary-cleaned.This reverse osmosis membrane 150 is made up of macromolecular material, as cellulose acetate, aromatic polyhydrazide, aromatic polyamide, for removing dissolved salts in water, colloid, microorganism, organism, purifying water process equipment 100 is had, and water quality is good, consume energy low, free of contamination beneficial effect.When water is after reverse osmosis membrane 150 secondary-cleaned, the electric conductivity of water is 5us/cm to 20us/cm.In addition, purifying waste water along the first branch road 151 after reverse osmosis membrane 150 purifies is flowed, water degasification treatment facility 200 is entered after hybrid ionic exchange column 170 and active carbon filter core 180, positively charged ion and anionite-exchange resin are equipped with in this hybrid ionic exchange column 170 inside, for removing the ion in water further, the diameter of the hybrid ionic exchange column 170 of the present embodiment is less than or equal to 20cm, is highly less than or equal to 80cm.Active carbon filter core 180 is for particle in further filtered water, and the active carbon filter core 180 of the present embodiment is of a size of 20 cun.
Wherein, this purifying water process equipment 100 also comprises the second magnetic valve 112, needle type valve 190 and reverse checkvalve.On first branch road 151 of this reverse checkvalve between reverse osmosis membrane 150 and hybrid ionic exchange column 170; In addition, the parallel connection of four reverse osmosis membranes 150 also forms the second branch road 152, and this needle type valve 190 is connected with the second branch road 152, and the second magnetic valve 112 is in parallel with needle type valve 190.
It should be noted that, this reverse checkvalve, for controlling current uniflux, is purified waste water after reverse checkvalve flows out, and is positioned at reverse osmosis membrane 150 side and forms negative pressure, and preventing from purifying waste water produces backflow.After reverse osmosis membrane 150 purifies, the waste water that purification filtering is formed flows along the second branch road 152, discharge after needle type valve 190 and the second magnetic valve 112 regulate, the ratio of this needle type valve 190 for regulating reverse osmosis membrane 150 to produce waste water, this second magnetic valve 112 is for controlling the opening and closing of water port.
Particularly, this water degasification treatment facility 200 also comprises vacuum pump 230, pressure transmitter 220 and pressure-pot 280.One end of this degassing film 210 connects the active carbon filter core 180 of purifying water process equipment 100, the other end connects the pressure-pot 280 of water degasification treatment facility 200, vacuum pump 230 Bonding pressure sensor 220, vacuum pump 230 and pressure transmitter 220 are connected in parallel on degassing film 210.Wherein, be also provided with pressure switch 270, conductivity sensor 240, temperature sensor 250 and oxygen between degassing film 210 and pressure-pot 280 and dissolve sensor 260.
It should be noted that, this water degasification treatment facility 200 is for removing middle dissolved gases of purifying waste water.Wherein, vacuum pump 230, for extracting the gas in degassing film 210, provides degassing film 210 to work required vacuum environment; This degassing film 210, for increasing the surface-area of gas-to-liquid contact, improves degassing efficiency; This vacuum pressure sensor 220, for detecting vacuum pressure in real time, makes water treatment device quit work when vacuum pressure is low; Pressure-pot 280 is for laying in HIFU water, when occurring that the water yield is under-supply when HIFU works, pressure-pot 280 can complete to treatment water tank 330 and send water conservancy project to do, simultaneously, pressure-pot 280 adopts closed structure, that guarantees to prepare or store purifies waste water and air insulated, avoids oxygen in air and carbonic acid gas and water dissolution, thus increases oxygen level and the specific conductivity of water; Pressure switch 270 is for the hydraulic pressure early warning in pressure-pot 280, and when the flooding quantity of pressure-pot 280 or pressure reach threshold value, pressure switch 270 is closed, simultaneously, first magnetic valve 111 cuts out by Controlling System, prevents from proceeding purifying water process, ensures the safe operation of water treatment device; Conductivity sensor 240 purify waste water for examination and controlling in specific conductivity; Oxygen dissolve sensor 260 purify waste water for examination and controlling in oxygen level; Temperature sensor 250 purify waste water for examination and controlling in temperature.
Particularly, flow-control equipment 300 comprises treatment water tank 330, water inlet pipe 331, rising pipe 332 and wet-pit 340, water inlet pipe 331 Bonding pressure tank 280 and treatment water tank 330, and water inlet pipe 331 is provided with first-class gauge 321 and first flow valve 311; Rising pipe 332 connects wet-pit 340 and treatment water tank 330, and rising pipe 332 is provided with second gauge 322 and the second flow valve 312.
It should be noted that, this flow-control equipment 300 treats the flooding quantity in water tank 330 and aquifer yield for controlling.This first-class gauge 321 and second gauge 322 are turbo flow meter, and flooding quantity and aquifer yield can be implemented to feed back to Controlling System by this turbo flow meter, realize monitoring flooding quantity and aquifer yield, and the effect of display treatment water tank 330 median water level.First-class gauge 321 flows into the water inlet two for the treatment of water tank 330 for calculating; Wet-pit 340 is positioned at the water outlet of this water treatment device, for being transported to HIFU place by purifying waste water in treatment water tank 330; Second gauge 322 is for calculating the aquifer yield extracted out from treatment water tank 330.
The present embodiment is also provided for the Controlling System of high intensity focused ultrasound water treatment device, at least comprise main control chip 400, clock chip 460, communication unit 440, detecting unit 420 and control unit 430, clock chip 460 is connected by I2C data bus with main control chip 400; Communication unit 440 is connected by UART data bus with main control chip 400, and detecting unit 420 is connected by I/O interface with main control chip 400, control unit 430 is connected with main control chip 400, for simulating signal is converted to numerary signal.
Particularly, this system also comprises solenoid valve driving module 410, and this solenoid valve driving module 410 is connected by I/O interface with main control chip 400; Clock chip 460 is RC8025; Communication unit 440 comprises RS232 communication module 441 and RS485 communication module 442; Detecting unit 420 comprises switch detection module 421 and pulse signal detection module 422; Control unit 430 comprises flow-control module 431, vacuum pressure control module 432, cell voltage control module 433, temperature control modules 434, specific conductivity control module 435 and oxygen and dissolves control module 436; This system also comprises liquid crystal display 450, and liquid crystal display 450 is connected with RS232 communication module 441.
It should be noted that, for traditional water treatment device Controlling System exist can not be quantitative control treatment water tank 330 in the water yield, problem that water treatment device level of automation is low.The Controlling System of the present embodiment adopts main control chip 400 (Micro Central Unit, MCU) method that peripheral circuit controls water treatment device is built, provide human-computer interaction interface and remote control function, the accurate control to treatment water tank 330 flooding quantity and aquifer yield is achieved by flow-control module 431 control flow check gauge, sensor 260 is dissolved by oxygen, conductivity sensor 240 and temperature sensor 250, main control chip 400 can purify water oxygen level by Real-time Collection, specific conductivity, the data such as temperature, ensure water treatment device safety, reliably, steady running.
Wherein, main control chip 400, by solenoid valve driving module 410, realizes the opening and closing to the first magnetic valve 111 and the second magnetic valve 112.Main control chip 400 gathers switch signal by switch detection module 421, when pressure is too small, liquid crystal display 450 is pointed out user's water flow pressure low, needs more renew cartridge 120 or check; When hypertonia; water treatment device is shut down by main control chip 400; protection reverse osmosis membrane 150; in addition; when the flooding quantity of pressure-pot 280 or pressure reach threshold value; switch detection module 421 is by signal feedback to main control chip 400, and the first magnetic valve 111 cuts out by solenoid valve driving module 410 by main control chip 400, prevents from proceeding purifying water process.Vacuum pressure control module 432 control pressure sensor 220 detects vacuum pressure in real time; when vacuum pressure is low vacuum pressure control module 432 by signal feedback to main control chip 400; water treatment device is shut down by main control chip 400, and display alarm on liquid crystal display 450.Specific conductivity control module 435 control conductivity sensor 240 in real time examination and controlling purify waste water in specific conductivity, when specific conductivity rises to threshold value, on liquid crystal display 450, hybrid ionic exchange column 170 is changed in prompting.Oxygen dissolve control module 436 control oxygen dissolve sensor 260 in real time examination and controlling purify waste water in oxygen level, when oxygen level rises to threshold value, on liquid crystal display 450, degassing film 210 is changed in prompting.The real-time examination and controlling of temperature control modules 434 control temperature sensor 250 purify waste water in temperature.Flow-control module 431 controls turbo flow meter Real-Time Monitoring flooding quantity and aquifer yield, and flooding quantity and aquifer yield are implemented to feed back to main control chip 400, main control chip 400 shows flooding quantity, aquifer yield and treatment water tank 330 median water level by liquid crystal display 450.
In sum, a kind of water treatment device for high intensity focused ultrasound that the utility model provides and Controlling System, adopt multiple reverse osmosis membrane to carry out the preparation of pure water by mode in parallel, namely ensure that Water discharge flow speed and quality, the volume of HIFU system can not be increased again.Meanwhile, adopt the mode of degassing film to carry out degassed process, not only achieve the function preparing de aerated water in real time, and decrease the volume of water treating equipment, achieve the miniaturization of water treating equipment.In addition, this Controlling System adopts main control chip to build peripheral circuit method and controls water treatment device, provide human-computer interaction interface and remote control function, the accurate control to treatment water tank water intake amount and aquifer yield is achieved by flow-control module control flow check gauge, sensor, conductivity sensor and temperature sensor is dissolved by oxygen, main control chip can purify the data such as water oxygen level, specific conductivity, temperature by Real-time Collection, ensures water treatment device safety, reliable, steady running.
It should be noted that, in this article, the such as relational terms of first and second grades and so on is only used for an entity or operation to separate with another entity or operational zone, and not necessarily requires or imply the relation that there is any this reality between these entities or operation or sequentially.And, term " comprises ", " comprising " or its any other variant are intended to contain non-exclusive dangerous comprising, thus make to comprise the process of a series of key element, method, article or equipment and not only comprise those key elements, but also comprise other key elements clearly do not listed, or also comprise by the intrinsic key element of this process, method, article or equipment.When not more restrictions, the key element limited by statement " comprising ... ", and be not precluded within process, method, article or the equipment comprising described key element and also there is other identical element.
Above-described embodiment of the present utility model is only for the utility model example is clearly described, and is not the restriction to embodiment of the present utility model.For those of ordinary skill in the field, other multi-form change or variations can also be made on the basis of the above description.Here exhaustive without the need to also giving all embodiments.All do within spirit of the present utility model and principle any amendment, equivalent to replace and improvement etc., within the protection domain that all should be included in the utility model claim.

Claims (10)

1. the water treatment device for high intensity focused ultrasound and Controlling System, comprise purifying water process equipment (100), water degasification treatment facility (200) and flow-control equipment (300), described purifying water process equipment (100) connects described water degasification treatment facility (200), described water degasification treatment facility (200) connects described flow-control equipment (300), it is characterized in that, described purifying water process equipment (100) at least comprises the filter core (120) for filtering and several reverse osmosis membranes (150) for purifying, described water degasification treatment facility (200) at least comprises degassing film (210).
2. the water treatment device for high intensity focused ultrasound according to claim 1 and Controlling System, it is characterized in that, described purifying water process equipment (100) also comprises the first magnetic valve (111), switch (130), several topping-up pumps (140), hybrid ionic exchange column (170) and active carbon filter core (180), described first magnetic valve (111) connects described filter core (120), described switch (130) and several topping-up pumps (140) are positioned between described filter core (120) and reverse osmosis membrane (150), described hybrid ionic exchange column (170) is connected with several reverse osmosis membranes (150), described active carbon filter core (180) connects hybrid ionic exchange column (170) and described degassing film (210) respectively.
3. the water treatment device for high intensity focused ultrasound according to claim 2 and Controlling System, it is characterized in that, described filter core (120) comprises the first filling cotton (121), granulated active carbon (122), junction type gac (123), softener resin (124) and the second filling cotton (125); The quantity of described reverse osmosis membrane (150) is 4; The quantity of described topping-up pump (140) is 2; Described switch (130) comprises low-tension switch (132) and high-voltage switch gear (131).
4. the water treatment device for high intensity focused ultrasound according to claim 3 and Controlling System, it is characterized in that, described first magnetic valve (111) and described first filling cotton (121), granulated active carbon (122), junction type gac (123), softener resin (124), second filling cotton (125), low-tension switch (132), high-voltage switch gear (131) series connection forms main line, one end of topping-up pump described in each (140) is connected in parallel on described main line, the other end of topping-up pump described in each (140) connects two described reverse osmosis membranes (150) respectively, the parallel connection of four described reverse osmosis membranes (150) at least forms the first branch road (151), described hybrid ionic exchange column (170) is connected with described first branch road (151).
5. the water treatment device for high intensity focused ultrasound according to claim 4 and Controlling System, it is characterized in that, described purifying water process equipment (100) also comprises the second magnetic valve (112), needle type valve (190) and reverse checkvalve, and described reverse checkvalve is positioned on described first branch road (151) between described reverse osmosis membrane (150) and hybrid ionic exchange column (170); The parallel connection of four described reverse osmosis membranes (150) also forms the second branch road (152), described needle type valve (190) is connected with described second branch road (152), and described second magnetic valve (112) is in parallel with described needle type valve (190).
6. the water treatment device for high intensity focused ultrasound according to claim 2 and Controlling System, it is characterized in that, described water degasification treatment facility (200) also comprises vacuum pump (230), pressure transmitter (220) and pressure-pot (280), described degassing film (210) connects described pressure-pot (280), described vacuum pump (230) connects described pressure transmitter (220), and vacuum pump (230) and pressure transmitter (220) are connected in parallel on degassing film (210).
7. the water treatment device for high intensity focused ultrasound according to claim 5 and Controlling System, it is characterized in that, be also provided with pressure switch (270), conductivity sensor (240), temperature sensor (250) and oxygen between described degassing film (210) and pressure-pot (280) and dissolve sensor (260).
8. the water treatment device for high intensity focused ultrasound according to claim 6 and Controlling System, it is characterized in that, described flow-control equipment (300) comprises treatment water tank (330), water inlet pipe (331), rising pipe (332) and wet-pit (340), described water inlet pipe (331) connects described pressure-pot (280) and described treatment water tank (330), and water inlet pipe (331) is provided with first-class gauge (321) and first flow valve (311); Described rising pipe (332) connects described wet-pit (340) and treatment water tank (330), and rising pipe (332) is provided with second gauge (322) and the second flow valve (312).
9. as the Controlling System of device as described in arbitrary in claim 1 to 8, it is characterized in that, at least comprise main control chip (400), clock chip (460), communication unit (440), detecting unit (420) and control unit (430), described clock chip (460) is connected by I2C data bus with main control chip (400); Described communication unit (440) is connected by UART data bus with main control chip (400), described detecting unit (420) is connected by I/O interface with main control chip (400), described control unit (430) is connected with main control chip (400), for simulating signal is converted to numerary signal.
10. Controlling System according to claim 9, is characterized in that, described communication unit (440) comprises RS232 communication module (441) and RS485 communication module (442); Described detecting unit (420) comprises switch detection module (421) and pulse signal detection module (422); Described control unit (430) comprises flow-control module (431), vacuum pressure control module (432), cell voltage control module (433), temperature control modules (434), specific conductivity control module (435) and oxygen and dissolves control module (436); This system also comprises liquid crystal display (450), and described liquid crystal display (450) is connected with described RS232 communication module (441); This system also comprises solenoid valve driving module (410), and described solenoid valve driving module (410) is connected by I/O interface with main control chip (400).
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CN110937709A (en) * 2019-12-24 2020-03-31 上海茗洋净水设备有限公司 Complete set of purification and water supply system for catering kitchen of enterprise
CN111408075A (en) * 2020-03-23 2020-07-14 南京广慈医疗科技有限公司 High-intensity focused ultrasound diagnosis and treatment system with temperature measurement function and control method thereof
WO2020259485A1 (en) * 2019-06-26 2020-12-30 海尔智家股份有限公司 Water treatment system with shut-off valve connected to remote operation

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105254100A (en) * 2015-10-22 2016-01-20 得利满水处理系统(北京)有限公司 System and method for treating sewage containing salt
CN107082517A (en) * 2017-06-05 2017-08-22 中惠医疗科技(上海)有限公司 Ultrasound womb myomata treatment system water treatment system is focused on for phased array
CN108829026A (en) * 2018-08-21 2018-11-16 深圳市普罗医学股份有限公司 A kind of medicinal water processing system
CN108911001A (en) * 2018-08-21 2018-11-30 深圳市普罗医学股份有限公司 A kind of medicinal water processing equipment
WO2020259485A1 (en) * 2019-06-26 2020-12-30 海尔智家股份有限公司 Water treatment system with shut-off valve connected to remote operation
CN113993819A (en) * 2019-06-26 2022-01-28 海尔智家股份有限公司 Water treatment system with remotely operated shutoff valve
CN110937709A (en) * 2019-12-24 2020-03-31 上海茗洋净水设备有限公司 Complete set of purification and water supply system for catering kitchen of enterprise
CN110937709B (en) * 2019-12-24 2022-03-29 上海茗洋净水设备有限公司 Complete set of purification and water supply system for catering kitchen of enterprise
CN111408075A (en) * 2020-03-23 2020-07-14 南京广慈医疗科技有限公司 High-intensity focused ultrasound diagnosis and treatment system with temperature measurement function and control method thereof

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