Skid-mounted well electric double control

A modular design for underground water well flow control devices with a secure assembly and disassembly mechanism addresses installation and component replacement challenges, ensuring secure operation and functionality.

CN223110294UActive Publication Date: 2025-07-15SHANDONG OUBIAO INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202421671479.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-07-15
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

The existing skid-mounted electric dual-control equipment is difficult to install and cannot replace some structural parts according to needs, and there is a risk of misoperation of non-staff.

Method used

It adopts a split design, including extension pipe, flowmeter pipe, meter valve integrated pipe and connecting pipe are connected by flange structure. The main connecting plate can be detached and connected to the control box, the skid-mounted shell and control box are arranged in partitions, and the control box is built-in fixed structure, and it is assembled through multiple components to avoid disassembly by non-staff.

Benefits of technology

It realizes convenient installation and replaceability of structural parts, while preventing misoperation of non-staff members and ensuring normal use and safety of the equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A skid-mounted well electric double controller comprises an extension pipe inserted into an external pipeline, and the extension pipe is sequentially connected with a flow meter pipe, a meter and valve integrated pipe and a connecting pipe. A main connecting plate is additionally connected to the joint of the extension pipe and the flow meter pipe and the joint of the connecting pipe and the meter valve integrated pipe, the main connecting plate is detachably connected with a control box body, and a plurality of wire holes are formed in a connecting side plate of the control box body; the control box body is further provided with a skid-mounted shell on the connecting side plate, and other structures are all located in the skid-mounted shell except that the extension pipe and the connecting pipe extend outwards relative to the skid-mounted shell. The main connecting plate and the connecting piece of the skid-mounted shell and the connecting side plate are located in the control box body. Different from a conventional integrated structure, the skid-mounted shell and the control box body are respectively arranged, divided into respective areas and applied, and in the structure, the skid-mounted shell cannot be disassembled under the condition that the control box body cannot be opened, so that various operations of non-staff on the device can be avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of water conservancy engineering equipment, and specifically relates to a skid-mounted well electric double control device. Background Art

[0002] In order to facilitate the statistics of water consumption, existing groundwater wells are equipped with well electric double control devices for water consumption statistics and on-site control. However, since the above devices are installed in the wild, they are often damaged. Therefore, a skid-mounted structure is generally selected to prevent non-staff from contacting electrical components. However, the conventional skid-mounted structure generally uses an integral housing for covering, which is difficult to install. In practical applications, for structures such as flow meters, it is only necessary to ensure that non-staff cannot contact them, and there is no need to completely cover them. Content of the Utility Model

[0003] To solve the problems of difficult installation of the above-mentioned integral skid-mounted structure and inability to replace some structural components according to requirements, the utility model provides a skid-mounted well electric double control device.

[0004] The technical solution of the utility model is as follows:

[0005] A skid-mounted well electric double control device includes an extension pipe inserted into an external pipeline, and the extension pipe is sequentially connected to a flow meter pipe, a meter valve integrated pipe, and a connecting pipe;

[0006] At the connection points between the extension pipe and the flow meter pipe and between the connecting pipe and the meter valve integrated pipe, a total connecting plate is additionally connected. The total connecting plate is detachably connected to a control box body, and the control box body is provided with a plurality of wire holes on the connecting side plate;

[0007] The control box body is further provided with a skid-mounted housing on the connecting side plate. Except for the extension pipe and the connecting pipe extending outwards relative to the skid-mounted housing, other structures are located inside the skid-mounted housing;

[0008] The connecting members between the total connecting plate and the skid-mounted housing and the connecting side plate are located inside the control box body.

[0009] The skid-mounted housing and the control box body are separately provided, dividing their respective areas for application. And in the above structure, without being able to open the control box body, the skid-mounted housing cannot be disassembled, which can avoid misoperations by non-staff.

[0010] The structure of the above total connecting plate is that the total connecting plate includes a U-shaped plate, and the upper and lower ends of the U-shaped plate are detachably connected to the extension pipe and the connecting pipe respectively.

[0011] As a preferred solution, an extended vertical plate is provided on the side of the U-shaped plate facing away from the control box. The extended vertical plate is detachably connected to a vertically arranged wiring pipe, and both ends of the wiring pipe extend beyond the skid-mounted housing. The additional wiring pipe can be used to install other structural components and route wires through it.

[0012] To improve the device's battery life and monitor environmental information, a photovoltaic panel and a camera are provided at the upper end of the wiring pipe, and wire holes are arranged oppositely between the wiring pipe and the control box.

[0013] The specific structure of the control box is as follows: the control box includes a box housing and a door panel, and the connecting side plate is arranged on the opposite side of the box housing and the door panel.

[0014] The way to install the main connecting plate is that the extension pipe, flowmeter pipe, meter valve integrated pipe, and connecting pipe are connected through a flange structure, and multiple openings corresponding to the flange holes are arranged on the horizontal section of the U-shaped plate. No additional fixing structure is required, and the connection can be made by means of the original flange structure.

[0015] To prevent the main connecting plate from being disassembled, at least two of the openings on the U-shaped plate are arranged to avoid the openings on the skid-mounted housing. The staggered arrangement can prevent tools from loosening or tightening the internal fixing parts.

[0016] To prevent tools from reaching into the skid-mounted housing, flange plates are provided at the opposite ends of the extension pipe and the connecting pipe.

[0017] To prevent the camera from being rotated to other positions, the wiring pipe cannot be rotated.

[0018] To adjust the position of the wiring pipe according to actual needs, the height of the wiring pipe can be adjusted.

[0019] The beneficial effects of the present utility model are as follows: The present utility model is a skid-mounted well electric double control, which is different from the existing integrated skid-mounted structure. This device is assembled by multiple components, and after assembly, all the fixing structures can be arranged inside the control box. Therefore, it can still ensure that non-staff members cannot disassemble the structure. Moreover, each structural component of the above structure can be replaced according to needs. After replacement, the overall structure is not affected and can still be used normally. In addition, each structural component of the above structure is connected and cooperates with each other, which can prevent non-staff members from reaching into the skid-mounted housing through the openings to disassemble, install, or damage the structural components. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] By reading the detailed description of the preferred embodiments below, the solutions and advantages of the present application will become clear to those of ordinary skill in the art. The drawings are only for the purpose of showing the preferred embodiments and are not considered to be a limitation of the present utility model.

[0021] In the attached drawings:

[0022] Figure 1 is a schematic structural view of the present utility model;

[0023] Figure 2 is a schematic structural view of the present utility model after hiding the skid-mounted housing;

[0024] Figure 3 is a schematic top view structural view of the present utility model;

[0025] Figure 4 is a schematic sectional view structural view of the present utility model;

[0026] The components represented by the respective reference numerals in the figure are:

[0027] 1. Extension pipe; 2. Flowmeter pipe; 3. Meter-valve integrated pipe; 4. Connecting pipe; 5. Total connecting plate; 51. U-shaped plate; 52. Extension vertical plate; 6. Wiring pipe; 7. Skid-mounted housing; 8. Control box; 81. Box housing; 82. Door panel. Specific embodiments

[0028] As Figure 1 shown, a skid-mounted well electric dual control includes an extension pipe 1 inserted into an external pipeline. The extension pipe 1 can be inserted into a well or a well pipeline. After that, the extension pipe 1 is sequentially connected to a flowmeter pipe 2, a meter-valve integrated pipe 3, and a connecting pipe 4. A flowmeter is provided on the flowmeter pipe 2 for counting the flow rate, and a meter-valve is provided on the meter-valve integrated pipe 3 for controlling the on-off of the water flow. The last connecting pipe 4 is used to connect to a water pipeline and can be used for irrigation or other similar purposes.

[0029] It should be noted that a total connecting plate 5 is additionally connected to the connection points between the extension pipe 1 and the flowmeter pipe 2 and between the connecting pipe 4 and the meter-valve integrated pipe 3. And the total connecting plate 5 is detachably connected to a control box 8. Through the above method, the connection between the above pipeline structure and the control box 8 can be realized, and the specific connection method is:

[0030] As Figure 2 shown, the way to realize the installation of the total connecting plate 5 is that the extension pipe 1, the flowmeter pipe 2, the meter-valve integrated pipe 3, and the connecting pipe 4 are connected through a flange structure. This is a conventional connection method for pipelines, so it will not be elaborated here. It should be noted that a plurality of openings corresponding to the flange holes are provided on the horizontal section of the U-shaped plate 51. Through the above method, no additional fixing structure is required, and the connection can be made by means of the original flange structure. When the bolts penetrate the flange holes, the openings of the above U-shaped plate 51 can be penetrated synchronously. After penetration, they can be connected, and without disassembling the pipeline bolts, the firm connection between the total connecting plate 5 and the pipeline can be ensured.

[0031] After that, in order to continue connecting the control box 8, a plurality of wire holes are provided in the connection side plate of the control box 8. The wire holes facilitate wiring, and the connection between the control box 8 and the main connection plate 5 can also be a bolt connection. However, the end of the bolt needs to be inside the control box 8 to ensure that the main connection plate 5 cannot be disassembled when the control box 8 cannot be opened.

[0032] After that, as Figure 1 , 3 , shown in Figure 4, the control box 8 is also provided with a skid-mounted housing 7 on the connection side plate. The skid-mounted housing 7 is used to protect the above-mentioned surface valve and flowmeter, etc. After covering the structure on it, it can ensure that non-staff members cannot operate it and can isolate it. It should be noted that in order to avoid affecting the use, except for the extension pipe 1 and the connection pipe 4 extending outside the skid-mounted housing 7, other structures are all located inside the skid-mounted housing 7. The extended design can ensure that the connected part of the pipe can be normally connected and can be operated without opening the control box 8.

[0033] And, as Figure 1 shown, the connectors of the main connection plate 5 and the skid-mounted housing 7 to the connection side plate are located inside the control box 8 to ensure that the above structures cannot be disassembled without opening the control box 8.

[0034] The above structure can be realized. Among them, the skid-mounted housing 7 and the control box 8 are respectively provided, dividing their respective areas and being applied. And in the above structure, without opening the control box 8, the skid-mounted housing 7 cannot be disassembled, which can avoid misoperation by non-staff members, and any disassembly and assembly of the above structure requires the staff to open the control box 8 before it can be carried out normally.

[0035] After that, the specific structure of the main connection plate 5 is designed as follows. The main connection plate 5 includes a U-shaped plate 51, and the upper and lower ends of the U-shaped plate 51 are respectively detachably connected to the extension pipe 1 and the connection pipe 4.

[0036] And, as Figure 2 shown, in order to prevent the main connection plate 5 from being disassembled, there are at least 2 openings in the U-shaped plate 51 that are set to avoid the openings of the skid-mounted housing 7. The staggered setting can prevent tools from loosening and tightening the internal fixing parts. By changing the alignment with different flange holes, the installation position of the equipment can also be changed. And the more the number, the more stable it is. However, correspondingly, the disassembly and assembly will become difficult. Therefore, it needs to be freely set according to requirements.

[0037] And, as Figure 1 , 3As shown, in order to prevent tools from extending into the skid-mounted housing 7, flanges are provided at the opposite ends of the extension pipe 1 and the connecting pipe 4. The flanges can prevent tools from directly extending into the fixing position of the bolts and, to a certain extent, can shield them.

[0038] Finally, as a preferred implementation, Figure 2 As shown, an extension plate 52 is provided on the side of the U-shaped plate 51 away from the control box 8, and the extension plate 52 is detachably connected to a vertically arranged wiring tube 6, and both ends of the wiring tube 6 are extended relative to the skid-mounted housing 7. The additional wiring tube 6 can be provided to set other structural parts and wire through the wiring tube 6. The provision of the wiring tube 6 does not affect the skid-mounted structure of the device, and can also enrich the functions of the device, but it should be noted that the wiring tube 6 can only be wired from the inside to avoid the wiring being exposed to the outside and affecting the use.

[0039] Afterwards, if Figure 1 As shown, in order to improve the battery life of the device and monitor environmental information, a photovoltaic panel and a camera are set at the upper end of the wiring tube 6, and a wire hole is arranged between the wiring tube 6 and the control box 8. In order to avoid rotating the camera to other positions, the wiring tube 6 cannot be rotated. In order to adapt to different application environments, in order to adjust the position of the wiring tube 6 according to actual needs, the height of the wiring tube 6 can be adjusted.

[0040] Finally, the specific structure of the control box 8 is the same as the conventional structure. The control box 8 includes a box shell 81 and a door panel 82 , and the connecting side panel is arranged on the opposite side of the box shell 81 and the door panel 82 .

Claims

1. A skid-mounted well electric double control, characterized in that, It includes an extension pipe (1) for inserting an external pipeline, and the extension pipe (1) is sequentially connected to a flowmeter pipe (2), a meter-valve integrated pipe (3), and a connecting pipe (4); At the connection points of the extension pipe (1) and the flowmeter pipe (2), and the connecting pipe (4) and the meter-valve integrated pipe (3), a total connecting plate (5) is additionally connected. The total connecting plate (5) is detachably connected to a control box body (8), and the control box body (8) is provided with a plurality of wire holes on the connecting side plate; The control box body (8) is further provided with a skid-mounted housing (7) on the connecting side plate. Except for the extension pipe (1) and the connecting pipe (4) extending outside the skid-mounted housing (7), other structures are all located inside the skid-mounted housing (7); The connectors of the total connecting plate (5) and the skid-mounted housing (7) with the connecting side plate are located inside the control box body (8).

2. The electric double control for a skid-mounted well according to claim 1, characterized in that, The total connecting plate (5) includes a U-shaped plate (51), and the upper and lower ends of the U-shaped plate (51) are respectively detachably connected to the extension pipe (1) and the connecting pipe (4).

3. The skid-mounted well electric dual control according to claim 2, characterized in that On the side of the U-shaped plate (51) facing away from the control box body (8), an extension vertical plate (52) is provided. The extension vertical plate (52) is detachably connected to a vertically arranged wiring pipe (6), and both ends of the wiring pipe (6) extend outside the skid-mounted housing (7).

4. The skid-mounted well electric dual control according to claim 3, wherein A photovoltaic panel and a camera are arranged at the upper end of the wiring pipe (6), and wire holes are arranged opposite between the wiring pipe (6) and the control box body (8).

5. The skid-mounted well electric dual control according to claim 1, characterized in that The control box body (8) includes a box body shell (81) and a door panel (82), and the connecting side plate is arranged on the opposite side of the box body shell (81) and the door panel (82).

6. The skid-mounted well electric dual control according to claim 2, characterized in that, The extension pipe (1), the flowmeter pipe (2), the meter-valve integrated pipe (3), and the connecting pipe (4) are connected through a flange structure, and a plurality of openings corresponding to the flange holes are arranged on the horizontal section of the U-shaped plate (51).

7. The skid-mounted well electric dual control according to claim 6, characterized in that, At least two of the openings of the U-shaped plate (51) are arranged to avoid the openings of the skid-mounted housing (7).

8. The electric double control for skid-mounted well according to claim 1, wherein, Flange plates are arranged at the opposite ends of the extension pipe (1) and the connecting pipe (4).

9. A skid-mounted well electric double control according to claim 3, characterized in that, The wiring pipe (6) cannot rotate.

10. A skid-mounted well electric dual control according to claim 3, characterized in that, The height of the wiring pipe (6) can be adjusted.