Remote-control water segregator

By introducing a flow sensor, electric control valve, and remote control system into the manifold, the problem of the manifold's inability to remotely monitor the flow rate is solved, enabling remote control and convenient adjustment of the flow rate, improving the uniformity of heating or cooling effects, and extending the equipment's service life through power generation and battery charging.

CN223635426UActive Publication Date: 2025-12-05浙江中财管道科技股份有限公司
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Patent Information

Application Number
CN202520249089.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-12-05
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing water distributors cannot remotely monitor and control the output flow of each liquid outlet, resulting in uneven heating or cooling effects and making them difficult to adjust.

Method used

A remote control system consisting of a flow sensor, an electric control valve, and a controller, combined with a calibration device and a power generation device, enables remote monitoring and flow control, and reduces wiring by using battery power.

Benefits of technology

It enables remote flow monitoring and control of the water distributor, improving the balance and ease of adjustment of heating or cooling effects, while also enhancing the equipment's endurance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a remote-control water segregator which comprises a water segregator body, a plurality of flow sensors, a plurality of electric control valves, a controller and a proofreading device. A liquid inlet end and a plurality of liquid outlet ends are arranged on the water segregator main body; the plurality of flow sensors are sequentially mounted at the plurality of liquid outlet ends; the multiple electric control valves are sequentially installed on the water segregator body and used for controlling the output flow of the multiple liquid outlet ends. The flow sensor and the electric control valve are both connected to the controller, and the controller can be in wireless connection with a terminal so as to transmit wireless signals. The correcting device comprises a blade, a first magnet and a Hall sensor, the blade is rotationally connected into the liquid inlet end, the first magnet is rotationally connected with the blade, the Hall sensor corresponds to the first magnet in position, and the Hall sensor is fixedly connected to the outer side of the water segregator body and connected with the controller. The utility model provides a water segregator which can remotely monitor and control the output flow of each liquid outlet end.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water distributor technical field especially relates to a remote control water distributor. BACKGROUND

[0002] At present, the existing water distributor such as the patent shown as the application number CN201820054371.1, it includes water distributor main part and multiple control valves, and the water distributor main part one end is provided with liquid inlet end, and is provided with multiple liquid outlet ends on one side, and multiple control valves control the flow of multiple liquid outlet ends.

[0003] The output flow of different liquid outlet ends of water distributor is not balanced, and is easy to influence heating or refrigeration effect, and the existing water distributor cannot remote monitor and control the output flow of each liquid outlet end, and adjusts the water distributor inconveniently. UTILITY MODEL CONTENTS

[0004] The utility model discloses in order to solve the shortcoming that the existing water distributor cannot remote monitor and control the output flow of each liquid outlet end, proposes a kind of water distributor, and can remote monitor and control the output flow of each liquid outlet end.

[0005] To achieve the above object, the utility model adopts the following technical scheme:

[0006] A remote control water distributor, including: water distributor main part, multiple flow sensors, multiple electric control valves, controller and calibration device;Water distributor main part is provided with liquid inlet end and multiple liquid outlet ends;Multiple flow sensors are installed in multiple above-mentioned liquid outlet ends in sequence;Multiple electric control valves are installed on water distributor main part in sequence, for controlling the output flow of multiple liquid outlet ends;Flow sensor and electric control valve are connected on controller, and controller can be wirelessly connected with terminal, to deliver wireless signal;Calibration device includes vane, first magnet and hall sensor, vane rotationally connects in liquid inlet end, first magnet rotationally connects with vane, and hall sensor position corresponds with first magnet, and hall sensor is fixedly connected on the outside of water distributor main part and is connected with controller.

[0007] Through the above-mentioned setting, first, flow sensor can detect the output flow of each liquid outlet end, so as to background monitoring;Second, background can remote control electric control valve, to control the output flow of each liquid outlet end, and the operation control water distributor is more convenient;Third, calibration device can measure the total flow of liquid inlet end input, and after comparing the sum of the output flow of each liquid outlet end and total flow, whether water distributor is faulted can be checked.

[0008] Further, electric control valve includes base, electric push rod and plug, base is fixedly connected on the side of water distributor main part away from liquid outlet end, electric push rod is installed on base, and the output shaft of electric push rod is sealed through the lateral wall of water distributor main part towards liquid outlet end, and is fixedly connected with plug, plug is adapted with liquid outlet end, for plugging liquid outlet end.

[0009] Through the above setting, the electric push rod drives the plug to move forward and backward to control the output flow of the liquid outlet end.

[0010] Further, the water distributor further comprises a storage battery for power supply.

[0011] Through the above setting, the water distributor of the present application is powered by the storage battery, reducing wiring and facilitating installation.

[0012] Further, the water distributor further comprises a power generation device, the power generation device comprising a second magnet and a stator, the second magnet being fixedly connected to the outer periphery of the blade, the stator corresponding in position to the second magnet and being fixedly connected to the outer periphery of the water distributor main body, the stator being electrically connected to the storage battery, the blade being coaxially fixedly connected with a connecting rod, the connecting rod having a support rod fixedly connected perpendicularly at an end thereof away from the blade, and the first magnet being mounted at an end of the support rod away from the connecting rod.

[0013] Through the above setting, the power generation device charges the storage battery to further improve the endurance of the storage battery.

[0014] Further, the support rod is provided with two rods, which are fixedly connected symmetrically at opposite sides of the connecting rod, and the first magnet is mounted at the end of each of the two support rods.

[0015] Through the above setting, the center of gravity of the correction device is close to the rotating shaft of the blade, and the blade is more stable when rotating.

[0016] Further, the liquid inlet end of the water distributor main body comprises a first pipe segment, a second pipe segment and a third pipe segment arranged in sequence along the water flow direction, the second pipe segment being detachably connected between the first pipe segment and the second pipe segment, the blade being rotatably connected in the second pipe segment, the end of the connecting rod away from the blade extending into the third pipe segment, and the Hall sensor being fixedly connected to the outer side of the third pipe segment.

[0017] Through the above setting, the installation of the correction device and the power generation device is facilitated.

[0018] Further, the first pipe segment and the second pipe segment, and the second pipe segment and the third pipe segment are connected by flanges. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 Fig. 1 is a schematic view of the water distributor of the embodiment. DETAILED DESCRIPTION

[0020] The technical scheme of the present application will be further specifically described below by means of embodiments in combination with the drawings.

[0021] As shown in the drawings, Figure 1As shown, a remote-controllable water distributor includes a water distributor body 3, a plurality of flow sensors 4, a plurality of electric control valves 5, a controller (not shown in the figure) and a calibration device 6. The water distributor body 3 is provided with a liquid inlet end 7 and a plurality of liquid outlet ends 8. The plurality of flow sensors 4 are sequentially installed on the plurality of liquid outlet ends 8. The plurality of electric control valves 5 are sequentially installed on the water distributor body 3 for controlling the output flow of the plurality of liquid outlet ends 8. The flow sensors 4 and the electric control valves 5 are both connected to the controller, and the controller can be wirelessly connected to a terminal to transmit wireless signals. The calibration device 6 includes a vane 61, a first magnet 62 and a Hall sensor 63. The vane 61 is rotationally connected in the liquid inlet end 7. The first magnet 62 is rotationally connected with the vane 61. The Hall sensor 63 is positioned corresponding to the first magnet 62. The Hall sensor 63 is fixedly connected to the outside of the water distributor body 3 and connected to the controller.

[0022] Through the above arrangement, first, the flow sensor 4 can detect the output flow of each liquid outlet end 8 for background monitoring. Second, the background can remotely control the electric control valve 5 to control the output flow of each liquid outlet end 8, making it more convenient to control the water distributor. Third, the calibration device 6 can measure the total flow of the liquid inlet end 7. By comparing the sum of the output flow of each liquid outlet end 8 with the total flow, it can be verified whether the water distributor is malfunctioning.

[0023] When the water distributor of the present application is in operation, liquid enters the water distributor body 3 through the liquid inlet end 7 and then flows out from the plurality of liquid outlet ends 8. Each liquid outlet end 8 is provided with a flow sensor 4, which can be purchased from the market. The flow sensor 4 of the present application specifically adopts a Hall flow sensor. The flow sensor 4 is connected to the controller through a signal line to transmit flow signals to the controller. The controller specifically adopts a PLC or a single-chip microcomputer, integrates a wireless module, and can transmit signals to terminals such as servers or mobile phones through 5G or WIFI signals for background users to view the output flow of each liquid outlet end 8. When it is necessary to adjust the output flow of a certain liquid outlet end 8, the user sends a control signal to the controller through the terminal. The controller controls the corresponding electric control valve 5 to move to control the output flow of the corresponding liquid outlet end 8.

[0024] The water distributor of the present application also has a verification function. When the liquid entering the liquid inlet end 7 flows through the vane 61, the vane 61 and the first magnet 62 rotate synchronously. The Hall sensor 63 detects the magnetic field change of the first magnet 62 to measure the rotation speed of the vane 61. The controller obtains the total flow of the liquid in the liquid inlet end 7 according to the rotation speed of the vane 61. The principle is similar to that of the Hall flow sensor. The controller compares the sum of the output flow of each liquid outlet end 8 with the total flow. When the water distributor of the present application is in normal operation, the sum of the output flow of each liquid outlet end 8 is equal to the total flow of the liquid in the liquid inlet end 7. If there is a large difference between the two, it indicates that at least one of the calibration device 6 or the flow sensor 4 has failed and needs to be repaired.

[0025] As an implementation form, the electric control valve 5 comprises a base 51, an electric push rod 52 and a plug 53, the base 51 is fixedly connected to one side of the water distributor body 3 away from the liquid outlet end 8, the electric push rod 52 is installed on the base 51, the output shaft of the electric push rod 52 is sealed through the side wall of the water distributor body 3 towards the liquid outlet end 8, and is fixedly connected with the plug 53, the plug 53 is matched with the liquid outlet end 8, and is used for plugging the liquid outlet end 8.

[0026] Through the above arrangement, the electric push rod 52 drives the plug 53 to move forward and backward to control the output flow of the liquid outlet end 8.

[0027] Specifically, the plug 53 is basically a circular truncated cone, the outer diameter of one end of the plug 53 close to the liquid outlet end 8 is smaller than the inner diameter of the liquid outlet end 8, so that the plug 53 is inserted into the liquid outlet end 8, the outer diameter of the other end of the plug 53 is larger than the inner diameter of the liquid outlet end 8, so as to prevent the plug 53 from entering the liquid outlet end 8 as a whole, the outer periphery of the plug 53 is a tapered surface, which can be fitted with the port of the liquid outlet end 8 to plug the liquid outlet end 8, when the electric push rod 52 drives the plug 53 to be close to the liquid outlet end 8, the gap between the tapered surface of the plug 53 and the port of the liquid outlet end 8 is reduced, and the output flow of the liquid outlet end 8 is reduced, when the electric push rod 52 drives the plug 53 to be away from the liquid outlet end 8, the gap between the tapered surface of the plug 53 and the port of the liquid outlet end 8 is increased, and the output flow of the liquid outlet end 8 is increased. When the electric push rod 52 drives the plug 53 to move forward and backward, the output shaft of the electric push rod 52 moves forward and backward, and a sealing ring is arranged between the output shaft and the side wall of the water distributor body 3 to prevent liquid leakage.

[0028] As an implementation form, the water distributor further comprises a storage battery (not shown in the figure) for power supply.

[0029] Through the above arrangement, the water distributor of the present application is powered by the storage battery, reducing wiring and facilitating installation.

[0030] The storage battery of the present application specifically adopts a lithium battery to have a higher energy density and improve the endurance of the water distributor.

[0031] As an implementation form, the water distributor further comprises a power generation device 9, the power generation device 9 comprises a second magnet 91 and a stator 92, the second magnet 91 is fixedly connected to the outer periphery of the blade 61, the stator 92 is in position correspondence with the second magnet 91 and is fixedly connected to the outer periphery of the water distributor body 3, the stator 92 is electrically connected with the storage battery, the blade 61 is coaxially fixedly connected with a connecting rod 10, one end of the connecting rod 10 away from the blade 61 is fixedly connected with a support rod 11, and the first magnet 62 is installed on one end of the support rod 11 away from the connecting rod 10.

[0032] Through the above arrangement, the power generation device 9 charges the storage battery to further improve the endurance of the storage battery.

[0033] When the liquid driving blade 61 of the liquid inlet end 7 rotates, the second magnet 91 rotates synchronously, the stator 92 cuts the magnetic induction lines of the second magnet 91, and an electromotive force is generated through electromagnetic induction to charge the battery; the first magnet 62 mechanism support rod 11 and the connecting rod 10 are fixedly connected with the blade 61, the support rod 11 and the connecting rod 10 make the first magnet 62 and the Hall sensor 63 away from the stator 92, preventing the stator 92 from affecting the normal work of the Hall sensor 63.

[0034] As an implementation manner, the support rod 11 is provided with two, which are respectively fixedly connected on opposite sides of the connecting rod 10, and the ends of the two support rods 11 are respectively provided with the first magnet 62.

[0035] Through the above setting, the gravity center of the correction device 6 is close to the rotating shaft of the blade 61, and the blade 61 rotates more stably.

[0036] As an implementation manner, the liquid inlet end 7 of the distributor main body 3 includes a first pipe section 71, a second pipe section 72 and a third pipe section 73 which are sequentially arranged along the water flow direction, the second pipe section 72 is detachably connected between the first pipe section 71 and the second pipe section 72, the blade 61 is rotatably connected in the second pipe section 72, the end of the connecting rod 10 away from the blade 61 extends into the third pipe section 73, and the Hall sensor 63 is fixedly connected outside the third pipe section 73.

[0037] Through the above setting, the installation of the correction device 6 and the power generation device 9 is facilitated.

[0038] The correction device 6 and the power generation device 9 of the present application are integrated on the second pipe section 72, when the power generation device 9 and the correction device 6 need to be repaired, the second pipe section 72 can be detached from between the first pipe section 71 and the third pipe section 73, and the correction device 6 and the power generation device 9 are repaired. The plurality of liquid outlet ends 8 of the present application are arranged downstream of the third pipe section 73.

[0039] As an implementation manner, the first pipe section 71 and the second pipe section 72, and the second pipe section 72 and the third pipe section 73 are connected through flanges.

[0040] It should be understood that for those skilled in the art, improvements or changes can be made according to the above description, and all these improvements and changes shall belong to the protection scope of the appended claims of the present application.

Claims

1. A remotely controllable water diverter, comprising: The utility model provides a kind of water distributor, including: Water distributor body, the water distributor body is provided with liquid inlet end and multiple liquid outlet ends; Multiple flow sensors, multiple the flow sensors are sequentially installed in multiple above-mentioned liquid outlet ends; Multiple electric control valves, multiple the electric control valves are sequentially installed on water distributor body, for controlling the output flow of multiple liquid outlet ends; Controller, the flow sensor and electric control valve are connected on controller, and the controller can be wirelessly connected with terminal to deliver wireless signal; Correction device, the correction device includes blade, first magnet and hall sensor, the blade is rotatably connected in liquid inlet end, the first magnet is rotatably connected with blade, the hall sensor position corresponds with first magnet, the hall sensor is fixedly connected on the outside of water distributor body and is connected with controller.

2. A remotely controllable water distributor according to claim 1, characterized in that The electric control valve includes base, electric push rod and plug, the base is fixedly connected on the side of water distributor body away from liquid outlet end, the electric push rod is installed on base, the output shaft of electric push rod is sealed through the side wall of water distributor body towards liquid outlet end and is fixedly connected with plug, the plug is matched with liquid outlet end, for plugging liquid outlet end.

3. The remotely controllable water distributor according to claim 1, wherein, The water distributor further includes a battery for power supply.

4. A remotely controllable water distributor according to claim 3, wherein, The water distributor further includes a power generation device, the power generation device includes a second magnet and a stator, the second magnet is fixedly connected to the outer periphery of the blade, the stator corresponds to the position of the second magnet and is fixedly connected to the outer periphery of the water distributor body, the stator is electrically connected to the battery, the blade is coaxially fixedly connected with a connecting rod, one end of the connecting rod away from the blade is fixedly connected with a support rod, the first magnet is installed on the end of the support rod away from the connecting rod.

5. A remotely controllable water diverter according to claim 4, wherein, The support rod is provided with two, which are fixedly connected to the opposite sides of the connecting rod respectively, and the first magnet is installed on the end of the support rod.

6. A remotely controllable water distributor according to claim 4, wherein, The liquid inlet end of the water distributor body includes a first pipe segment, a second pipe segment and a third pipe segment sequentially arranged along the flow direction, the second pipe segment is detachably connected between the first pipe segment and the second pipe segment, the blade is rotatably connected in the second pipe segment, one end of the connecting rod away from the blade extends into the third pipe segment, and the hall sensor is fixedly connected on the outside of the third pipe segment.

7. A remotely controllable water diverter according to claim 6, wherein, The first pipe segment and the second pipe segment, and the second pipe segment and the third pipe segment are connected by flanges.

Citation Information

Patent Citations

  • Novel water separator

    CN207922343U