Sewage draining exit monitoring equipment

By designing sewage outlet monitoring equipment and using a motor-driven sliding sealing component to achieve automated sampling and image acquisition, the problem of low efficiency in manual sampling is solved, and the efficiency and accuracy of sewage monitoring at the sewage outlet are improved.

CN223449812UActive Publication Date: 2025-10-17ANHUI YANZAO TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422419359.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-12-15
Filing Date
2024-10-08
Publication Date
2025-10-17
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

Manual sampling of lake water at different depths is inefficient, making it difficult to achieve rapid and accurate monitoring of sewage conditions in the outlet area.

Method used

A sewage outlet monitoring device was designed, which included a mounting base, a tube body, a sliding sealing assembly, a solenoid valve tube, a driving device, an image acquisition terminal and a fill light device. The sliding sealing assembly was driven by a motor to move along the axial direction of the tube body, thereby realizing automatic sampling and image acquisition of water samples at different depths.

Benefits of technology

It realizes the automated and rapid sampling and image acquisition of water samples at different depths, and improves the efficiency and accuracy of sewage monitoring in the sewage outlet area.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses sewage draining exit monitoring equipment, which is characterized in that the top end of a pipe body is fixed at the bottom end of a mounting seat, the side wall of the pipe body is provided with a notch extending along the axial direction of the pipe body, and a horizontal plate body part is provided with a through hole; the horizontal plate body part is in sliding sealing connection with the inner wall of the pipe body so as to divide the interior of the pipe body into a first partition cavity located on the upper portion and a second partition cavity located on the lower portion which are isolated from each other, the vertical plate body part is in sliding sealing connection with the outer wall of the pipe body, and the vertical plate body part blocks a notch area located on the side wall of the first partition cavity; one end of the electromagnetic valve pipe is adaptively communicated with the through hole in the horizontal plate body part, and the other end of the electromagnetic valve pipe is open; the driving device is fixed on the mounting seat and connected with the sliding sealing assembly, and the driving device can drive the sliding sealing assembly to move in the axial direction of the pipe body; the monitoring equipment provided by the utility model is provided with the first separation cavity with the adjustable water inlet depth, so that the operation requirement of sampling water at different depths can be met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sewage detection technical field especially sewage outlet monitoring equipment. BACKGROUND

[0002] In the process of detecting or analyzing urban sewage, the sewage condition can be directly reflected by observing the sensory index of sewage, and the main sensory index is color. The color of sewage usually refers to the concentration of a certain substance in water, which is an important factor affecting water. The color of fresh water is usually fecal yellow. If the water is black and the odor is particularly serious, the sewage is relatively old and may have been accumulated in the pipeline for too long. In order to timely understand the sewage condition of the sewage outlet and other areas, the staff often needs to collect sewage samples on site, and needs to collect samples of different depths in turn according to the needs. In this process, the water quality collected by sampling is observed in turn for the color and transparency, and the water quality is preliminarily judged. However, when the staff takes photos of water samples of different depths, the staff needs to sample the lake water of different depths separately in turn, which is low in efficiency. SUMMARY

[0003] To solve the technical problems in the background art, the utility model provides a sewage outlet monitoring equipment, which comprises: a mounting seat; a pipe body, the top end of the pipe body is fixed on the bottom end of the mounting seat, a notch extending along the axial direction of the pipe body is formed in the side wall of the pipe body, and an overflow port is formed in the top end of the pipe body; a sliding sealing assembly, which comprises: a horizontal plate body part, a vertical plate body part and a connecting part, the horizontal plate body part has a through hole, the horizontal plate body part is in sliding sealing connection with the inner wall of the pipe body to divide the inside of the pipe body into a first partition cavity above and a second partition cavity below which are isolated from each other, the vertical plate body part is in sliding sealing connection with the outer wall of the pipe body, the vertical plate body part forms a blockage on the notch area on the side wall of the first partition cavity, and the connecting part passes through the notch and connects the horizontal plate body part inside the pipe body and the vertical plate body part outside the pipe body respectively; an electromagnetic valve pipe, which is fixedly installed on the sliding sealing assembly, one end of the electromagnetic valve pipe is in communication with the through hole in the horizontal plate body part, and the other end of the electromagnetic valve pipe is open; a driving device, which is fixed on the mounting seat and connected with the sliding sealing assembly, the driving device can drive the sliding sealing assembly to move along the axial direction of the pipe body; an image acquisition terminal, which is installed on the mounting seat and used for acquiring real-time images above the horizontal plate body part; and a light supplementing device, which is installed on the mounting seat and used for supplementing light into the first partition cavity.

[0004] The driving device comprises:

[0005] A motor, which is packaged in the mounting seat;

[0006] A screw rod, which is connected with the motor and driven by the motor, is arranged in the pipe body, penetrates through the horizontal plate body part and is in threaded connection with the horizontal plate body part.

[0007] The device has a sliding slot extending through the mounting base and along the axial direction of the pipe body to the side wall of the pipe body away from the mounting base, the vertical plate body part is embedded in the sliding slot and can move along the axial direction of the pipe body, and the sliding slot part on the vertical plate body part is continuously communicated with the gap along the axial direction of the pipe body, so that the vertical plate body part can always block the first separation cavity.

[0008] The bottom end of the mounting base has a groove, one end of the pipe body connected with the mounting base is located in the groove, and the overflow port is located in the groove.

[0009] The monitoring device has a first separation cavity with adjustable water inlet depth, and can meet the operation demand of sampling water with different depths. BRIEF DESCRIPTION OF DRAWINGS

[0010] Figure 1 A structural schematic diagram of an embodiment of the sewage outlet monitoring device is provided in the utility model.

[0011] Figure 2 A front view cross-sectional structural schematic diagram of an embodiment of the sewage outlet monitoring device is provided in the utility model.

[0012] Figure 3 A top view cross-sectional structural schematic diagram of an embodiment of the sewage outlet monitoring device is provided in the utility model.

[0013] Figure 4 A structural A expanded schematic diagram of an embodiment of the sewage outlet monitoring device is provided in the utility model. DETAILED DESCRIPTION

[0014] REFERENCE Figures 1-4The utility model discloses a kind of sewage outlet monitoring equipment, include: mounting seat 1 pipe body 2, sliding seal assembly 5, solenoid valve pipe 9, driving device, pipe body 2 top is fixed on mounting seat 1 bottom end, notching 3 extending along the axial direction of pipe body 2 is set on the lateral wall of pipe body 2, overflow port 4 is set in the top of pipe body 2;Sliding seal assembly 5 specifically includes: horizontal plate body part 6, vertical plate body part 7, link part 8, horizontal plate body part 6 has through-hole, horizontal plate body part 6 is slidably connected with the inner wall of pipe body 2 to divide pipe body 2 into first compartment 21 located above and second compartment 22 located below isolated from each other, vertical plate body part 7 is slidably connected with the outer wall of pipe body 2, vertical plate body part 7 forms plugging on the region of notching 3 on the lateral wall of first compartment 21, link part 8 passes through notching 3 and respectively links horizontal plate body part 6 located in pipe body 2 and vertical plate body part 7 located outside pipe body 2;Solenoid valve pipe 9 is fixedly installed on sliding seal assembly 5, solenoid valve pipe 9 one end is adapted to connect with the through-hole on horizontal plate body part 6, and the other end of solenoid valve pipe 9 is open;Driving device, driving device is fixed on mounting seat and is connected with sliding seal assembly 5, and driving device can drive sliding seal assembly 5 to move along the axial direction of pipe body 2;Image acquisition terminal 10 is installed on mounting seat 1 and is used to collect real-time image above horizontal plate body part 6;Light supplementing device is installed on mounting seat 1 and is used to supplement light into first compartment 21.

[0015] The utility model arranges, pipe body 2 bottom fixed mounting is in sewage outlet side water bottom, and keep pipe body 2 axial vertical arrangement, and mounting seat 1 is located above water surface.

[0016] When sampling, motor 11 drives sliding seal assembly 5 to go up or go down to the inlet of solenoid valve pipe 9 and target position flush, solenoid valve pipe 9 opens, water sample flows into first compartment 21, solenoid valve pipe 9 closes, motor 11 drives sliding seal assembly 5 to go up, light supplementing device supplements light, and image acquisition terminal 10 image acquisition.

[0017] After sampling is completed, motor 11 can drive horizontal plate body part 6 to continue to go up, and when the upper wall of horizontal plate body part 6 is level with overflow port 4, water sample can flow out from overflow port 4 to empty first compartment 21 for next sampling.

[0018] As to how to input height parameter, how to control driving device, solenoid valve pipe 9, image acquisition terminal 10 and light supplementing device, remote control can be used, and automation assistance can also be used, and no further extension is needed.

[0019] Driving device includes: motor 11, screw rod 12, motor 11 is packaged in mounting seat 1, screw rod 12 is connected with motor 11 and is driven by motor 11, screw rod 12 is arranged in pipe body 2, screw rod 12 penetrates horizontal plate body part 6 and is threadedly connected with horizontal plate body part 6, when motor 11 rotates, horizontal plate body part 6 can be driven to go up and then go down in pipe body 2.

[0020] The device has a sliding slot 13 extending through the mounting base 1 and axially along the pipe body 2 to the side wall of the pipe body 2 away from the mounting base 1, the vertical plate body part 7 is adapted to be embedded in the sliding slot 13 and can move in the sliding slot 13 along the direction parallel to the axial direction of the pipe body 2, the sliding slot 13 on the vertical plate body part 7 continuously communicates with the gap 3 along the axial direction of the pipe body 2, so that the vertical plate body part 7 can always form a block to the first partition cavity 21, and the first partition cavity 21 can be used to temporarily store water samples.

[0021] The design of the sliding slot 13 can make the pipe body 2 be a circular pipe, and the motor 11 can also drive the horizontal plate body part 6 to ascend or descend in the pipe body 2 through the screw rod 12, of course, if there is no sliding slot 12, the pipe body 2 can be designed as a square pipe or can be achieved through other ways.

[0022] The mounting base 1 has a groove 16 at the bottom end, and the overflow port 4 is located in the groove 16, and the wall of the groove 16 can prevent the surface water from splashing into the first partition cavity 21 through the overflow port 4 to cause interference.

[0023] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A sewage outlet monitoring device, characterized in that: include: Mounting seat (1); A tube body (2), the top end of the tube body (2) is fixed to the bottom end of the mounting seat (1), a notch (3) extending along the axial direction of the tube body (2) is provided on the side wall of the tube body (2), and an overflow port (4) is provided at the top end of the tube body (2); A sliding sealing assembly (5) comprises: a horizontal plate portion (6), a vertical plate portion (7), and a connecting portion (8); the horizontal plate portion (6) has a through hole; the horizontal plate portion (6) is slidingly and sealingly connected to the inner wall of the tube body (2) to divide the tube body (2) into a first compartment (21) located above and a second compartment (22) located below, which are isolated from each other; the vertical plate portion (7) is slidingly and sealingly connected to the outer wall of the tube body (2); the vertical plate portion (7) blocks the notch (3) on the side wall of the first compartment (21); and the connecting portion (8) passes through the notch (3) and connects the horizontal plate portion (6) located inside the tube body (2) and the vertical plate portion (7) located outside the tube body (2); A solenoid valve tube (9) is fixedly mounted on the sliding seal assembly (5), one end of the solenoid valve tube (9) is adapted to be connected to a through hole on the horizontal plate body (6), and the other end of the solenoid valve tube (9) is open; A driving device, the driving device is fixed on the mounting seat and connected to the sliding sealing assembly (5), and the driving device can drive the sliding sealing assembly (5) to move in a direction parallel to the axial direction of the tube body (2); An image acquisition terminal (10) is mounted on the mounting base (1) and is used to acquire a real-time image above the horizontal plate portion (6); The light-filling device is mounted on the mounting seat (1) and is used to fill light into the first compartment (21).

2. The monitoring device according to claim 1, characterized in that The drive unit includes: A motor (11), the motor (11) is encapsulated in the mounting base (1); The screw rod (12) is connected to the motor (11) and driven by the motor (11). The screw rod (12) is arranged in the tube body (2). The screw rod (12) passes through the horizontal plate body (6) and is threadedly connected to the horizontal plate body (6).

3. The monitoring device according to claim 1, characterized in that The device is provided with a slide groove (13) which passes through the mounting seat (1) and extends along the axial direction of the tube body (2) to an end of the side wall of the tube body (2) away from the mounting seat (1); the vertical plate body (7) is adapted to be embedded in the slide groove (13) and can move in the slide groove (13) in a direction parallel to the axial direction of the tube body (2); the slide groove (13) on the vertical plate body (7) is continuously connected with the notch (3) along the axial direction of the tube body (2), so that the vertical plate body (7) can always form a blockage for the first compartment (21).

4. The monitoring device according to claim 1, characterized in that The bottom end of the mounting seat (1) has a groove body (16), one end of the tube body (2) connected to the mounting seat (1) is located in the groove body (16), and the overflow port (4) is located in the groove body (16).