A bypass flow type ECT electrochemical water treatment control system
The bypass-flow ECT electrochemical water treatment control system, which integrates intelligent dosing and online detection, solves the treatment needs of the central air conditioning circulating water system, realizes efficient electrochemical treatment and automatic control, and improves filtration accuracy and system intelligence.
Patent Information
- Application Number
- CN202311586131.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-24
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2043-11-24
AI Technical Summary
In the prior art, conventional water flow devices cannot meet the integrated water treatment requirements of evaporative cooling systems when treating central air-conditioning circulating water systems, and lack electroscaling capabilities and have low filtration accuracy.
A bypass-type ECT electrochemical water treatment control system was designed, which integrates an intelligent dosing mechanism, a bypass water processor, and a bypass pump. It monitors water quality through an online detection device, performs intelligent dosing, and has a precision filtration function to achieve electrochemical treatment.
It achieves efficient electrochemical treatment of central air conditioning circulating water, with functions of scale prevention, corrosion inhibition, sterilization and algae removal, automatic control of agent addition and sewage discharge, and ensures the intelligent and efficient operation of the system.
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Figure CN117585766B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electrochemical water treatment, and particularly relates to a side flow type ECT electrochemical water treatment control system. BACKGROUND
[0002] Central air conditioning circulating water treatment is realized through a circulating water system of a central air conditioner. The circulating water system of the central air conditioner mainly includes a cooling water system and a refrigeration (heating) water system, wherein the cooling water system is an open circulation system, and the refrigeration (heating) water system is generally a closed circulation system.
[0003] The conventional flow water device cannot well meet and adapt to the integrated water treatment device of the evaporative cooling system during treatment, and compared with CN110028183A, the conventional flow water device does not have the ability of electro-depositing scale, and has the problem of low filtering precision, so that a side flow type ECT electrochemical water treatment control system is developed on the basis of the conventional side flow water treatment device, the intelligent dosing mechanism, the side flow water treatment device and the side flow pump are integrated and designed, and the water quality is electrochemically treated, the water quality is online monitored, the intelligent dosing is realized and the precise filtration is realized. SUMMARY
[0004] The present application relates to the technical field of electrochemical water treatment, and particularly relates to a side flow type ECT electrochemical water treatment control system.
[0005] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:
[0006] A side flow type ECT electrochemical water treatment control system, comprising a bottom plate, a first driving mechanism, a side flow pump, a first support frame are fixedly installed on the upper surface of the bottom plate, the output end of the first driving mechanism is fixedly connected with the side flow pump through a shaft coupling, the output end of the side flow pump is fixedly connected with an output pipe, the other end of the output pipe is fixedly connected with a side flow water treatment device, the top output end of the side flow water treatment device is fixedly connected with a first drain pipe, the other end of the first drain pipe is fixedly connected with a second drain pipe, a main controller and a second support frame are fixedly installed on the upper surface of the bottom plate, a medicine box is fixedly installed on the outer wall of the second support frame, an injection mechanism is fixedly installed on the outer wall of the second support frame, the input end of the injection mechanism is communicated with the medicine box through a pipeline, the output end of the injection mechanism is communicated with the second drain pipe through a pipeline, a second driving mechanism is fixedly installed on the outer wall of the first drain pipe, the output end of the second driving mechanism is fixedly connected with a transmission mechanism, and the output end of the transmission mechanism is fixedly connected with the injection mechanism.
[0007] Preferably, the first driving mechanism comprises a motor, an output shaft is fixedly connected to an output end of the motor, a transmission shaft is connected to the output shaft through gear transmission, a speed reducer is fixedly connected to one end of the transmission shaft through a shaft coupling, and an output end of the speed reducer is fixedly connected with the bypass pump.
[0008] Preferably, an online detection device is fixedly installed on an outer wall of the output pipe, a high-frequency electronic module is fixedly installed on an outer wall of the bypass water processor, and the online detection device is electrically connected with the main controller.
[0009] Preferably, a first support frame is fixedly installed on an upper surface of the bottom plate, the bypass water processor is located on an upper surface of the first support frame, a blowdown pipe is fixedly connected to a bottom output end of the bypass water processor, an electromagnetic valve is fixedly installed on an outer wall of the blowdown pipe, the blowdown pipe is fixedly connected with a blowdown tank at the other end, the blowdown tank is located on the upper surface of the bottom plate, and the electromagnetic valve is electrically connected with the main controller.
[0010] Preferably, a medicine inlet is fixedly connected to a top input end of the medicine box, a low liquid level sensor is fixedly installed on an outer wall of the medicine box, and the low liquid level sensor is electrically connected with the main controller.
[0011] Preferably, the second driving mechanism comprises an arc-shaped shell, a rotating shaft is rotatably connected to an inner wall of the arc-shaped shell, a swing leaf is fixedly connected to an outer wall of the rotating shaft, the swing leaf is located in the first drain pipe, one end of the rotating shaft penetrates and extends to the outside of the first drain pipe, and the extending end of the rotating shaft is an output end.
[0012] Preferably, the transmission mechanism comprises a rotating disc, a cam follower is fixedly connected to an outer wall of the rotating disc, a moving frame is slidably connected to an outer wall of the cam follower, a connecting strip is fixedly connected to an outer wall of the moving frame, a connecting block is fixedly connected to an upper surface of the connecting strip, a connecting frame is fixedly connected to an outer wall of the second support frame, a slide rod is fixedly connected to an outer wall of the connecting frame, and the slide rod is slidably connected with the moving frame.
[0013] Preferably, an installation plate is fixedly connected to an outer wall of the second support frame, an adjusting mechanism is fixedly installed on an upper surface of the installation plate, an input end of the adjusting mechanism is fixedly connected with an output end of the second driving mechanism, and an output end of the adjusting mechanism is fixedly connected with an input end of the transmission mechanism.
[0014] Preferably, the adjusting mechanism comprises a lower rotating rod, one end of the lower rotating rod is fixedly connected with the rotating shaft, the outer wall of the lower rotating rod is fixedly connected with a first outer protruding strip, the outer wall of the lower rotating rod is slidably sleeved with a sleeve, the inner wall of the top of the sleeve is fixedly connected with an inner protruding strip, the top of the sleeve is slidably sleeved with an upper rotating rod, the outer wall of the upper rotating rod is fixedly connected with a second outer protruding strip, the other end of the upper rotating rod is fixedly connected with the outer wall of the rotating disc, the upper surface of the mounting plate is fixedly installed with an electric push rod, the output end of the electric push rod is fixedly connected with a bearing sleeve, the bearing sleeve is fixedly connected with the outer wall of the sleeve, and the electric push rod is electrically connected with the main controller.
[0015] Preferably, the injection mechanism comprises an injection cylinder, the inner wall of the injection cylinder is slidably connected with a piston, the outer wall of the piston is fixedly connected with a pull rod, the other end of the pull rod is fixedly connected with the connecting block, the input end of the injection cylinder is fixedly connected with a first medicine inlet pipe, the outer wall of the first medicine inlet pipe is fixedly installed with a first check valve, the other end of the first medicine inlet pipe is in communication with the medicine box, the output end of the injection cylinder is fixedly connected with a second medicine inlet pipe, the outer wall of the second medicine inlet pipe is fixedly installed with a second check valve, and the other end of the second check valve is in communication with the second drain pipe.
[0016] The application has the following beneficial effects:
[0017] 1. In the application, the circulating water enters the output pipe from the water inlet of the bypass pump, is filtered by the bypass water processor, and is subjected to the functions of scale inhibition, corrosion inhibition, sterilization and algae killing by the electronic physical field generated by the high-frequency electronic module, and then is discharged through the first drain pipe and the second drain pipe, and the online detection device can detect the conductivity of the circulating water and the concentration of the medicament.
[0018] 2. In the application, when water passes through the first drain pipe, the medicament in the medicine box can pass through the injection mechanism and enter the second drain pipe, and when there is no water, the medicament stops being injected, so that the automatic addition of the medicament solution is completed, and the amount of the medicament solution added can be automatically controlled according to the amount of water added, and the self-control ability is strong.
[0019] 3. In the application, the online detection device is used in cooperation with the adjusting mechanism, when the concentration of the medicament reaches the set upper limit value, the online detection device sends a command to the main controller, the main controller controls the adjusting mechanism to stop the injection mechanism from working, when the concentration of the medicament reaches the set lower limit value, the online detection device sends a command to the main controller, and the main controller controls the adjusting mechanism to work, so that the intelligent control is facilitated.
[0020] 4、The application, when the on-line detection device detects that the conductivity of the circulating water reaches the set upper limit value, sends a command to the main controller, the electromagnetic valve opens, and the high-conductivity circulating water is discharged through the blowdown pipe, the water is discharged into the blowdown tank through the blowdown pipe, and the automatic water supplement function of the user system is started to supplement low-conductivity water to the system, when the conductivity reaches the set lower limit value, a command is sent to the main controller, the electromagnetic valve is closed, and the water discharge is stopped, so that the concentration multiple of the circulating water is intelligently controlled.
[0021] 5、The application, the system has a periodic backwashing function, so that the side flow water treatment device is not blocked due to long-term accumulation of impurities, the backwashing time and cycle are set through the main controller, the main controller sends a backwashing command, the first driving mechanism stops, the blowdown pipe electromagnetic valve opens, at this time, water is reversed into the equipment from the second drain pipe, and the side flow water treatment device is backwashed, and finally the sewage containing impurities is discharged from the blowdown pipe. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a structure schematic view of a side flow type ECT electrochemical water treatment control system of the application.
[0023] Figure 2 It is a structure schematic view of a first driving mechanism of a side flow type ECT electrochemical water treatment control system of the application.
[0024] Figure 3 It is a structure schematic view of a second driving mechanism and a regulating mechanism of a side flow type ECT electrochemical water treatment control system of the application.
[0025] Figure 4 It is a structure schematic view of a second driving mechanism of a side flow type ECT electrochemical water treatment control system of the application.
[0026] Figure 5 It is a structure schematic view of a transmission mechanism of a side flow type ECT electrochemical water treatment control system of the application.
[0027] Figure 6 It is a structure schematic view of a rotating disc and a cam follower of a side flow type ECT electrochemical water treatment control system of the application.
[0028] Figure 7 It is a structure schematic view of an injection mechanism of a side flow type ECT electrochemical water treatment control system of the application.
[0029] Figure 8 It is a structure schematic view of a regulating mechanism of a side flow type ECT electrochemical water treatment control system of the application.
[0030] Figure 9It is a structure schematic view of the lower rotating rod and the first outer convex strip of a side flow type ECT electrochemical water treatment control system.
[0031] Figure 10 It is a structure schematic view of the sleeve and the inner convex strip of a side flow type ECT electrochemical water treatment control system. Figure 9 It is a sectional view at A-A.
[0032] Figure 11 It is a sectional view at B-B. Figure 9 It is a sectional view at B-B.
[0033] Figure 12 It is a structure schematic view of the sleeve and the inner convex strip of a side flow type ECT electrochemical water treatment control system.
[0034] Figure label: 1, bottom plate; 2, first driving mechanism; 201, motor; 202, output shaft; 203, transmission shaft; 204, speed reducer;
[0035] 3, side flow pump; 4, first support frame; 5, output pipe; 6, online detection device; 7, side flow water treatment device; 8, blowdown pipe; 9, electromagnetic valve; 10, blowdown tank; 11, main controller; 12, first drain pipe; 13, second support frame; 14, second drain pipe; 15, medicine tank; 16, medicine inlet;
[0036] 17, second driving mechanism; 171, arc-shaped shell; 172, rotating shaft; 173, swing leaf;
[0037] 18, adjusting mechanism; 181, lower rotating rod; 182, first outer convex strip; 183, electric push rod; 184, bearing sleeve; 185, sleeve; 186, inner convex strip; 187, upper rotating rod; 188, second outer convex strip;
[0038] 19, transmission mechanism; 191, rotating disc; 192, cam follower; 193, moving frame; 194, connecting strip; 195, connecting block; 196, connecting frame; 197, sliding rod; 20, mounting plate;
[0039] 21, injection mechanism; 211, injection cylinder; 212, pull rod; 213, piston; 214, first medicine inlet pipe; 215, first check valve; 216, second medicine inlet pipe; 217, second check valve; 22, high-frequency electronic module; 23, low liquid level sensor. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all embodiments.
[0041] As shown in the accompanying drawings Figure 1 to the accompanying drawings Figure 12 :
[0042] A kind of side flow type ECT electrochemical water treatment control system, including bottom plate 1, the upper surface of bottom plate 1 is fixedly installed with first drive mechanism 2, side flow pump 3, first support frame 4, the output end of first drive mechanism 2 is fixedly connected with the through shaft coupling of side flow pump 3, the output end of side flow pump 3 is fixedly connected with output pipe 5, the other end of output pipe 5 is fixedly connected with side flow water processor 7, the top output end of side flow water processor 7 is fixedly connected with first drain pipe 12, the other end of first drain pipe 12 is fixedly connected with second drain pipe 14, the upper surface of bottom plate 1 is fixedly installed with main controller 11, second support frame 13, the outer wall of second support frame 13 is fixedly installed with medicine box 15, the outer wall of second support frame 13 is fixedly installed with injection mechanism 21, the input end of injection mechanism 21 is communicated with medicine box 15 by pipeline, the output end of injection mechanism 21 is communicated with second drain pipe 14 by pipeline, the outer wall of first drain pipe 12 is fixedly installed with second drive mechanism 17, the output end of second drive mechanism 17 is fixedly connected with transmission mechanism 19, the output end of transmission mechanism 19 is fixedly connected with injection mechanism 21.
[0043] First drive mechanism 2 includes motor 201, the output end of motor 201 is fixedly connected with output shaft 202, output shaft 202 is connected with transmission shaft 203 by gear transmission, one end of transmission shaft 203 is fixedly connected with speed reducer 204 by shaft coupling, the output end of speed reducer 204 is fixedly connected with side flow pump 3.
[0044] As shown in the accompanying drawings Figure 1 , the outer wall of output pipe 5 is fixedly installed with on-line detection device 6, the outer wall of side flow water processor 7 is fixedly installed with high-frequency electronic module 22, on-line detection device 6 is electrically connected with main controller 11.
[0045] In the above technical scheme, on-line detection device 6 is installed on output pipe 5, for on-line detection of circulating water conductivity and medicament concentration;
[0046] As shown in the accompanying drawings Figure 1 , the upper surface of bottom plate 1 is fixedly installed with first support frame 4, side flow water processor 7 is located on the upper surface of first support frame 4, the bottom output end of side flow water processor 7 is fixedly connected with blowdown pipe 8, the outer wall of blowdown pipe 8 is fixedly installed with electromagnetic valve 9, the other end of blowdown pipe 8 is fixedly connected with blowdown tank 10, blowdown tank 10 is located on the upper surface of bottom plate 1, electromagnetic valve 9 is electrically connected with main controller 11.
[0047] In the above technical solution, when the online detection device 6 detects that the conductivity of the circulating water reaches the set upper limit, it sends a command to the main controller 11, the solenoid valve 9 opens, and the high-conductivity circulating water is discharged through the drain pipe 8. The water is discharged into the drain tank 10 through the drain pipe 8 for collection. At the same time, the user system's own automatic water replenishment function will start to replenish low-conductivity water to the system; when the detected conductivity reaches the set lower limit, it sends a command to the main controller 11, the solenoid valve 9 closes, and the drainage stops, thereby realizing intelligent control of the concentration multiple of the circulating water;
[0048] At the same time, the system has a regular backwashing function to ensure that the bypass water processor 7 is not blocked due to long-term accumulation of impurities. The backwash time and cycle start are set by the main controller 11. The main controller 11 issues a backwash command, the first drive mechanism 2 stops, and the sewage outlet solenoid valve 9 opens. At this time, water flows into the device from the second drainage pipe 14 to backwash the bypass water processor 7, and finally the sewage with impurities is discharged from the sewage pipe 8;
[0049] As attached Figure 3 As shown, the top input end of the medicine box 15 is fixedly connected to the medicine inlet 16 , and the outer wall of the medicine box 15 is fixedly installed with a low liquid level sensor 23 , which is electrically connected to the main controller 11 .
[0050] In the above technical solution, the low liquid level sensor 23 on the top of the medicine box 15 is used to detect the amount of medicine in the barrel. When the amount is insufficient, the low liquid level sensor 23 sends an equipment stop instruction to the main controller 11 and reminds the staff to replenish the medicine.
[0051] As attached Figure 3 To the attached Figure 7 As shown, the second driving mechanism 17 includes an arc-shaped shell 171, the inner wall of the arc-shaped shell 171 is rotatably connected to a rotating shaft 172, the outer wall of the rotating shaft 172 is fixedly connected to a swing blade 173, the swing blade 173 is located inside the first drain pipe 12, one end of the rotating shaft 172 passes through and extends to the outside of the first drain pipe 12, and the extended end of the rotating shaft 172 is the output end.
[0052] In the above technical solution, when water flows through the first drain pipe 12, the water in the first drain pipe 12 hits the swing blade 173, the swing blade 173 drives the rotating shaft 172 to rotate, and the rotating shaft 172 drives the transmission mechanism 19 to work;
[0053] As attached Figure 3 To the attached Figure 7As shown, the transmission mechanism 19 comprises a rotating disc 191, the outer wall of the rotating disc 191 is fixedly connected with a cam follower 192, the outer wall of the cam follower 192 is slidably connected with a moving frame 193, the outer wall of the moving frame 193 is fixedly connected with a connecting strip 194, the upper surface of the connecting strip 194 is fixedly connected with a connecting block 195, the outer wall of the second support frame 13 is fixedly connected with a connecting frame 196, the outer wall of the connecting frame 196 is fixedly connected with a sliding rod 197, and the sliding rod 197 is slidably connected with the moving frame 193.
[0054] In the above technical scheme, the second driving mechanism 17 drives the rotating disc 191 to rotate, the rotating disc 191 drives the moving frame 193 to reciprocate through the cam follower 192, the moving frame 193 drives the connecting block 195 to reciprocate through the connecting strip 194, the connecting block 195 drives the piston 213 to reciprocate through the pull rod 212, the medicament in the medicine box 15 is drawn into the syringe 211 through the first medicine inlet pipe 214, and then is discharged into the second drain pipe 14 through the second medicine inlet pipe 216, so that the whole water treatment control system is injected.
[0055] As shown in the accompanying drawings, Figure 1 to the accompanying drawings, Figure 12 As shown, the outer wall of the second support frame 13 is fixedly connected with a mounting plate 20, the upper surface of the mounting plate 20 is fixedly installed with an adjusting mechanism 18, the input end of the adjusting mechanism 18 is fixedly connected with the output end of the second driving mechanism 17, and the output end of the adjusting mechanism 18 is fixedly connected with the input end of the transmission mechanism 19.
[0056] The adjusting mechanism 18 comprises a lower rotating rod 181, one end of the lower rotating rod 181 is fixedly connected with the rotating shaft 172, the outer wall of the lower rotating rod 181 is fixedly connected with a first outer convex strip 182, the outer wall of the lower rotating rod 181 is slidably sleeved with a sleeve 185, the top inner wall of the sleeve 185 is fixedly connected with an inner convex strip 186, the top of the sleeve 185 is slidably sleeved with an upper rotating rod 187, the outer wall of the upper rotating rod 187 is fixedly connected with a second outer convex strip 188, the other end of the upper rotating rod 187 is fixedly connected with the outer wall of the rotating disc 191, the upper surface of the mounting plate 20 is fixedly installed with an electric push rod 183, the output end of the electric push rod 183 is fixedly connected with a bearing sleeve 184, the bearing sleeve 184 is fixedly connected with the outer wall of the sleeve 185, and the electric push rod 183 is electrically connected with the main controller 11.
[0057] In the above technical solution, when the concentration of the medicament detected reaches the set upper limit value, the online detection device 6 sends an instruction to the main controller 11 to stop the injection mechanism 21, that is, the main controller 11 controls the electric push rod 183 to start, and the electric push rod 183 drives the sleeve 185 to move upward through the bearing sleeve 184, at this time the lower rotating rod 181 is located at the bottom of the sleeve 185, and the first outer protrusion 182 on the lower rotating rod 181 is separated from the inner protrusion 186 in the sleeve 185, at this time when the rotating shaft 172 rotates, the rotating shaft 172 drives the lower rotating rod 181 to rotate, and the lower rotating rod 181 does not drive the sleeve 185 to rotate, that is, the rotating disc 191 cannot be driven to rotate through the adjusting mechanism 18, at this time the injection mechanism 21 stops working;
[0058] When the concentration of the medicament detected reaches the set lower limit value, the online detection device 6 sends an instruction to the main controller 11 to start the injection mechanism 21, that is, the main controller 11 controls the electric push rod 183 to start, and the electric push rod 183 drives the sleeve 185 to move downward through the bearing sleeve 184, at this time the lower rotating rod 181 is located at the upper part of the sleeve 185, and the first outer protrusion 182 on the lower rotating rod 181 is in contact with the inner protrusion 186 in the sleeve 185, at this time when the rotating shaft 172 rotates, the rotating shaft 172 drives the lower rotating rod 181 to rotate, and the lower rotating rod 181 drives the sleeve 185 to rotate, the sleeve 185 drives the upper rotating rod 187 to rotate through the inner protrusion 186 and the second outer protrusion 188, and the upper rotating rod 187 drives the rotating disc 191 to rotate, that is, the rotating disc 191 is driven to rotate through the adjusting mechanism 18, at this time the injection mechanism 21 works, thereby realizing intelligent control of medicament addition;
[0059] As shown in the accompanying Figure 3 to the accompanying Figure 7 As shown in the accompanying
[0060] In the above technical solution, the transmission mechanism 19 drives the piston 213 to reciprocate through the pull rod 212, the medicament in the medicine tank 15 is drawn into the injection cylinder 211 through the first medicine inlet pipe 214, and then is discharged into the second drain pipe 14 through the second medicine inlet pipe 216, thereby injecting into the entire water treatment control system.
[0061] The specific use and effect of the embodiment are as follows:
[0062] When the present application is used, the water inlet end of the bypass pump 3 is connected by a pipeline, and the water inlet end of the bypass pump 3 and the water outlet end of the second drain pipe 14 are connected by a pipeline to form a closed bypass water treatment circuit with the user circulation system;
[0063] When working, the motor 201 is started, the motor 201 drives the output shaft 202 to rotate, the output shaft 202 drives the transmission shaft 203 to rotate through the gear, the transmission shaft 203 drives the bypass pump 3 to work through the speed reducer 204, the circulating water enters the output pipe 5 from the water inlet of the bypass pump 3, is filtered and treated by the bypass water treatment device 7, and at the same time has the functions of scale inhibition, corrosion inhibition, sterilization and algae killing through the electronic physical field generated by the high-frequency electronic module 22, and then is discharged through the first drain pipe 12 and the second drain pipe 14;
[0064] The above structure and process please refer to Figures 1-2 .
[0065] When water in the first drain pipe 12 passes through, the water in the first drain pipe 12 hits the swing blade 173, the swing blade 173 drives the rotating shaft 172 to rotate, the rotating shaft 172 drives the transmission mechanism 19 to work through the adjusting mechanism 18, the adjusting mechanism 18 drives the rotating disc 191 to rotate, the rotating disc 191 drives the moving frame 193 to reciprocate through the cam follower 192, the moving frame 193 drives the connecting block 195 to reciprocate through the connecting strip 194, the connecting block 195 drives the piston 213 to reciprocate through the pull rod 212, the medicament in the medicine box 15 is drawn into the injection cylinder 211 through the first medicine inlet pipe 214, and then is discharged into the second drain pipe 14 through the second medicine inlet pipe 216, so as to be injected into the entire water treatment control system;
[0066] The above structure and process please refer to Figures 3-7 .
[0067] The low liquid level sensor 23 at the top of the medicine box 15 is used to detect the amount of medicament in the barrel, and when it is insufficient, the low liquid level sensor 23 sends a device stop instruction to the main controller 11 and reminds the staff to supplement the medicament;
[0068] The above structure and process please refer to Figure 3 .
[0069] The online detection device 6 is installed on the output pipe 5 and is used to detect the electrical conductivity of the circulating water and the concentration of the medicament online;
[0070] When the concentration of the medicament reaches the set upper limit value, the online detection device 6 sends a command to the main controller 11 to stop the injection mechanism 21, i.e. the main controller 11 controls the electric push rod 183 to start, and the electric push rod 183 drives the sleeve 185 to move upwards through the bearing sleeve 184, at this time the lower rotating rod 181 is located at the bottom of the sleeve 185, and the first outer protrusion 182 on the lower rotating rod 181 is separated from the inner protrusion 186 in the sleeve 185, at this time when the rotating shaft 172 rotates, the rotating shaft 172 drives the lower rotating rod 181 to rotate, and the lower rotating rod 181 does not drive the sleeve 185 to rotate, i.e. the rotating disc 191 cannot be driven to rotate through the adjusting mechanism 18, at this time the injection mechanism 21 stops working;
[0071] When the concentration of the medicament reaches the set lower limit value, the online detection device 6 sends a command to the main controller 11 to start the injection mechanism 21, i.e. the main controller 11 controls the electric push rod 183 to start, and the electric push rod 183 drives the sleeve 185 to move downwards through the bearing sleeve 184, at this time the lower rotating rod 181 is located at the upper part of the sleeve 185, and the first outer protrusion 182 on the lower rotating rod 181 is in contact with the inner protrusion 186 in the sleeve 185, at this time when the rotating shaft 172 rotates, the rotating shaft 172 drives the lower rotating rod 181 to rotate, and the lower rotating rod 181 drives the sleeve 185 to rotate, the sleeve 185 drives the upper rotating rod 187 to rotate through the inner protrusion 186 and the second outer protrusion 188, and the upper rotating rod 187 drives the rotating disc 191 to rotate, i.e. the rotating disc 191 is driven to rotate through the adjusting mechanism 18, at this time the injection mechanism 21 works, thereby realizing intelligent control of medicament addition;
[0072] The above structure and process please refer to Figures 1-12 .
[0073] When the online detection device 6 detects that the conductivity of the circulating water reaches the set upper limit value, it sends a command to the main controller 11, and the electromagnetic valve 9 is opened to discharge high-conductivity circulating water through the blowdown pipe 8, and the water is discharged into the blowdown tank 10 for collection, and at the same time the automatic water replenishment function of the user system itself will start to replenish low-conductivity water to the system;
[0074] When the conductivity reaches the set lower limit value, a command is sent to the main controller 11, and the electromagnetic valve 9 is closed to stop water discharge, thereby realizing intelligent control of the concentration multiple of the circulating water;
[0075] The above structure and process please refer to Figure 1 .
[0076] The system has a regular backwash function to ensure that the side flow water processor 7 is not blocked due to long-term accumulation of impurities. The backwash time and cycle are set by the main controller 11, the main controller 11 sends a backwash instruction, the first driving mechanism 2 stops, the blowdown valve 9 opens, at this time, the water in the device is reversed from the second drain pipe 14, the side flow water processor 7 is backwashed, and finally the sewage containing impurities is discharged from the blowdown pipe 8.
[0077] The above structure and process are described in detail in the following Figure 1 .
[0078] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacements or changes within the technical range disclosed by the present application according to the technical solution and inventive concept of the present application, which should be covered within the protection scope of the present application.
Claims
1. A side-stream ECT electrochemical water treatment control system comprising a base plate (1), characterized in that, The upper surface of the bottom plate (1) is fixedly installed with a first driving mechanism (2), a bypass flow pump (3) and a first support frame (4), the output end of the first driving mechanism (2) is fixedly connected with the bypass flow pump (3) through a shaft coupling, the output end of the bypass flow pump (3) is fixedly connected with an output pipe (5), the other end of the output pipe (5) is fixedly connected with a bypass flow water processor (7), the top output end of the bypass flow water processor (7) is fixedly connected with a first drain pipe (12), the other end of the first drain pipe (12) is fixedly connected with a second drain pipe (14), the upper surface of the bottom plate (1) is fixedly installed with a main controller (11) and a second support frame (13), the outer wall of the second support frame (13) is fixedly installed with a medicine box (15), the outer wall of the second support frame (13) is fixedly installed with an injection mechanism (21), the input end of the injection mechanism (21) is communicated with the medicine box (15) through a pipeline, the output end of the injection mechanism (21) is communicated with the second drain pipe (14) through a pipeline, the outer wall of the first drain pipe (12) is fixedly installed with a second driving mechanism (17), the output end of the second driving mechanism (17) is fixedly connected with a transmission mechanism (19), and the output end of the transmission mechanism (19) is fixedly connected with the injection mechanism (21); The first driving mechanism (2) comprises a motor (201), the output end of the motor (201) is fixedly connected with an output shaft (202), the output shaft (202) is connected with a transmission shaft (203) through gear transmission, one end of the transmission shaft (203) is fixedly connected with a speed reducer (204) through a shaft coupling, and the output end of the speed reducer (204) is fixedly connected with the bypass flow pump (3); The outer wall of the output pipe (5) is fixedly installed with an online detection device (6), the outer wall of the bypass flow water processor (7) is fixedly installed with a high-frequency electronic module (22), and the online detection device (6) is electrically connected with the main controller (11); The upper surface of the bottom plate (1) is fixedly installed with a first support frame (4), the bypass flow water processor (7) is located on the upper surface of the first support frame (4), the bottom output end of the bypass flow water processor (7) is fixedly connected with a blowdown pipe (8), the outer wall of the blowdown pipe (8) is fixedly installed with a solenoid valve (9), the other end of the blowdown pipe (8) is fixedly connected with a blowdown tank (10), and the blowdown tank (10) is located on the upper surface of the bottom plate (1); and the solenoid valve (9) is electrically connected with the main controller (11); The top input end of the medicine box (15) is fixedly connected with a medicine inlet (16), the outer wall of the medicine box (15) is fixedly installed with a low liquid level sensor (23), and the low liquid level sensor (23) is electrically connected with the main controller (11). The second driving mechanism (17) comprises an arc-shaped shell (171), the inner wall of the arc-shaped shell (171) is rotationally connected with a rotating shaft (172), the outer wall of the rotating shaft (172) is fixedly connected with a swing leaf (173), the swing leaf (173) is located in the inside of the first drain pipe (12), one end of the rotating shaft (172) penetrates and extends to the outside of the first drain pipe (12), and the extending end of the rotating shaft (172) is an output end; The transmission mechanism (19) comprises a rotating disc (191), the outer wall of the rotating disc (191) is fixedly connected with a cam follower (192), the outer wall of the cam follower (192) is slidably connected with a moving frame (193), the outer wall of the moving frame (193) is fixedly connected with a connecting strip (194), the upper surface of the connecting strip (194) is fixedly connected with a connecting block (195), the outer wall of the second support frame (13) is fixedly connected with a connecting frame (196), the outer wall of the connecting frame (196) is fixedly connected with a sliding rod (197), and the sliding rod (197) is slidably connected with the moving frame (193); The outer wall of the second support frame (13) is fixedly connected with a mounting plate (20), the upper surface of the mounting plate (20) is fixedly installed with an adjusting mechanism (18), the input end of the adjusting mechanism (18) is fixedly connected with the output end of the second driving mechanism (17), and the output end of the adjusting mechanism (18) is fixedly connected with the input end of the transmission mechanism (19); The adjusting mechanism (18) comprises a lower rotating rod (181), one end of the lower rotating rod (181) is fixedly connected with the rotating shaft (172), the outer wall of the lower rotating rod (181) is fixedly connected with a first outer convex strip (182), the outer wall of the lower rotating rod (181) is slidably sleeved with a sleeve (185), the top inner wall of the sleeve (185) is fixedly connected with an inner convex strip (186), the top of the sleeve (185) is slidably sleeved with an upper rotating rod (187), the outer wall of the upper rotating rod (187) is fixedly connected with a second outer convex strip (188), the other end of the upper rotating rod (187) is fixedly connected with the outer wall of the rotating disc (191), the upper surface of the mounting plate (20) is fixedly installed with an electric push rod (183), the output end of the electric push rod (183) is fixedly connected with a bearing sleeve (184), the bearing sleeve (184) is fixedly connected with the outer wall of the sleeve (185), and the electric push rod (183) is electrically connected with the main controller (11). The injection mechanism (21) comprises an injection cylinder (211), the inner wall of the injection cylinder (211) is slidably connected with a piston (213), the outer wall of the piston (213) is fixedly connected with a pull rod (212), the other end of the pull rod (212) is fixedly connected with a connecting block (195), the input end of the injection cylinder (211) is fixedly connected with a first medicine inlet pipe (214), the outer wall of the first medicine inlet pipe (214) is fixedly installed with a first check valve (215), the other end of the first medicine inlet pipe (214) is communicated with a medicine box (15), the output end of the injection cylinder (211) is fixedly connected with a second medicine inlet pipe (216), the outer wall of the second medicine inlet pipe (216) is fixedly installed with a second check valve (217), the other end of the second check valve (217) is communicated with a second drain pipe (14).
Citation Information
Patent Citations
ECT water treatment device applicable to evaporation cold system
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