A kind of integrated inspection punch card and data interaction acquisition well device and operating method

By integrating inspection check-in and data interaction data acquisition devices, the problems of low efficiency and insufficient supervision in the traditional pipeline inspection mode have been solved, realizing automated inspection and data recording, and ensuring the safe operation of the pipeline network.

CN120656247BActive Publication Date: 2026-02-06ZHEJIANG TAISHUI SCIENCE & TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510882856.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-28
Publication Date
2026-02-06
Estimated Expiration
2045-06-28

AI Technical Summary

Technical Problem

Traditional pipeline inspection methods are cumbersome, inefficient, and generate chaotic data. They lack effective supervision and pose risks such as inspectors leaving their posts and conducting fake inspections, thus failing to guarantee the safe operation of the pipeline network.

Method used

Design a data collection well device that integrates inspection check-in and data interaction, including a pre-embedded data collection well, a well cover, and a pipeline collector. The well cover is equipped with a detection unit and a data storage and interaction unit. It adopts infrared sensors and QR code identification, combined with a water-proof mechanism, to realize automated inspection and data recording.

Benefits of technology

It improved inspection efficiency and data recording convenience, eliminated the risks of absenteeism and fake inspections, ensured the safe operation of the pipeline network, simplified data processes, and standardized recording.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application belongs to the technical field of pipeline inspection auxiliary device, especially relates to a collection well device integrating inspection clock-in and data interaction and an operation method thereof. The collection well device is installed at multiple points of the underground pipe network through pre-buried installation, and one end of the installed manhole cover is hingedly connected with the collection well. The pipeline collector installed on the inner side of the manhole cover integrates multiple functions, the detection unit of which can realize inspection clock-in detection of the corresponding points of the pipe network, and the data storage and interaction unit is responsible for data storage and interaction. Through the innovative design, the device forces the inspection personnel to clock in at the collection well, and the inspection personnel can interact with the data storage and interaction unit to quickly obtain the static and dynamic information of the corresponding pipeline. The device not only simplifies the inspection process and unifies data recording, but also realizes effective supervision, eliminates hidden dangers such as off-duty and false inspection, and comprehensively ensures the safe operation of the pipe network.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of pipeline inspection auxiliary devices, and particularly relates to a collection well device integrating inspection clock-in and data interaction and an operation method. BACKGROUND

[0002] In pipeline network inspection and maintenance, the traditional operation mode has significant technical bottlenecks. Usually, an inspection personnel manually flips through paper archives or repeatedly searches electronic archives on a mobile terminal to obtain the static information (pipe diameter, material, buried depth, construction unit, etc.) and dynamic information (time of previous inspections, repair records, leakage history) of the pipeline point where the corresponding collection well is located, which is not only cumbersome and inefficient, but also prone to data confusion due to information errors or format inconsistencies. In addition, the traditional inspection relies on manual registration and lacks effective supervision means, which may lead to problems such as personnel absence and false inspection, and cannot guarantee the safe operation of the pipeline network. SUMMARY

[0003] The purpose of the present application is to provide a collection well device integrating inspection clock-in and data interaction and an operation method to improve the clock-in enforceability and data interaction convenience during pipeline inspection, effectively improve inspection efficiency, and supervise the inspection.

[0004] Therefore, the present application provides a collection well device integrating inspection clock-in and data interaction, comprising:

[0005] The collection well is pre-buried and installed underground, and is arranged at multiple points of the pipeline network.

[0006] The well cover is installed on the collection well and is hingedly connected to one end of the collection well.

[0007] The pipeline collector is installed on the inner side of the well cover and comprises a detection unit for pipeline inspection clock-in detection at the corresponding point and a data storage and interaction unit for data storage and interaction.

[0008] In the above technical solution, further:

[0009] The well cover is provided with a first through hole and a second through hole, and the pipeline collector is provided with a boss adapted to the first through hole and a third through hole coaxially arranged with the second through hole, and a two-dimensional code mark and a transparent cover sheet are arranged on the side of the boss close to the outer surface of the well cover.

[0010] The third through hole is provided with an infrared sensor.

[0011] In the above technical solution, further:

[0012] The rubber block is installed at the second through hole and a plurality of through slits are formed on the circumference of the rubber block to form an elastic split structure along the axial direction of the second through hole.

[0013] In the above technical solution, further comprising:

[0014] The vertical pipe is connected to the pipeline at the corresponding point of the pipe network, and the other end extends below the data collector and is coaxially arranged with the second through hole.

[0015] The vertical pipe includes a first pipe section and a second pipe section connected in an extendable manner, and the first pipe section is provided with a scale mark.

[0016] In the above technical solution, further comprising:

[0017] The well cover is provided with a ventilation hole, and a water immersion prevention mechanism is provided below the pipeline collector for immersion of the pipeline collector.

[0018] The water immersion prevention mechanism includes:

[0019] The cover body is wrapped around the pipeline collector, and a rim is formed between the collection well and the well cover, and a sealing gasket is provided at the rim, and a ventilation hole is formed below the pipeline collector.

[0020] The guide column is installed in the cover body, one end of which is connected to the cover body, the other end of which is in abutment with the bottom surface of the pipeline collector, and a through hole coaxial with the second through hole and the third through hole is formed in the guide column.

[0021] The one-way flap is installed on the inner wall of the through hole, and is used to close from bottom to top.

[0022] The switch assembly is installed in the cover body, and is used to open and close the ventilation hole and the ventilation hole.

[0023] The driving assembly is installed on the cover body, and is used to drive the switch assembly to complete the opening and closing adjustment of the ventilation hole and the ventilation hole.

[0024] In the above technical solution, further, the switch assembly includes:

[0025] The annular convex ring is connected to the bottom surface of the cover body, and a plurality of annular convex rings are provided and correspondingly arranged with the plurality of ventilation holes.

[0026] The first plug is slidably connected below the annular convex ring, and is provided with a insertion hole, and can be sealingly connected with the annular convex ring to open and close the ventilation hole.

[0027] The connecting plate is slidably connected in the cover body, and is provided with a plurality of ventilation plugs coaxially arranged with the ventilation hole, and the ventilation plug is internally provided with an air passage.

[0028] The drive assembly is used to drive the connecting plate to lift, lock, and unlock. The end of the vent plug is in static frictional engagement with the socket and can pass through the annular protrusion to open the first plug under the weight of the connecting plate or pull the first plug back under the lifting of the drive assembly.

[0029] In the above technical solution, the switching component further includes:

[0030] A guide rod is installed on the bottom surface of the cover, and a sliding hole is provided on the first plug to adapt to the sliding of the guide rod;

[0031] The filter screen is fitted onto the surface of the first plug, with one end connected to the first plug and the other end connected to the bottom surface of the cover.

[0032] The filter screen is shaped like a frustum or a cylinder and can unfold after the first plug moves down, and then bend and protrude away from the axis after the first plug moves up.

[0033] In the above technical solution, the switching component further includes:

[0034] A connecting rod is mounted on the connecting plate, with one end extending below the vent hole;

[0035] The top column is installed at the end of the connecting rod located below the vent hole, and is fitted with a second plug;

[0036] A spring is installed inside the second plug and is used for raising and lowering the second plug on the top post.

[0037] In the above technical solution, the driving component further includes:

[0038] The bracket is slidably installed under the cover and is equipped with a float and anti-tilt hanging column;

[0039] The first rack is vertically slidably connected to the surface of the cover, and its bottom end is connected to the bracket;

[0040] The second rack is vertically slidably connected to the inner wall of the cover, and its bottom end is connected to the connecting plate;

[0041] A rotating shaft is provided through the inner wall of the cover, with a first gear at one end that meshes with the first rack and a second gear at the other end that meshes with the second rack;

[0042] The first rack and the second rack are arranged on the same side relative to the rotating shaft.

[0043] This invention provides an operation method for a data acquisition well device that integrates inspection check-in and data interaction, comprising the following steps:

[0044] S1: Inspection personnel use mobile devices to scan the QR code label;

[0045] S2: input corresponding inspection personnel account password;

[0046] S3: the inspection personnel know the pipeline information of the pipe network located at the corresponding point, and the pipeline information includes pipeline basic information and inspection clock-in information;

[0047] S4: the inspection personnel use the listening leakage equipment to listen to the pipeline;

[0048] S5: the infrared sensor detects the entry of the listening leakage rod, and records the inspection information, including the pipeline information number and address of the point, the inspection clock-in time and the inspection personnel information;

[0049] S6: after the listening leakage is completed, the inspection personnel supplement the record of the inspection information, including whether there is an abnormality in the listening leakage, if there is abnormal information, record and report the related abnormality.

[0050] The beneficial effects of the present application are:

[0051] 1. By setting the pipeline collector on the inner side of the well lid, and setting the detection unit for inspection clock-in and the data storage and interaction unit for pipeline data and inspection data storage and interaction in the pipeline collector, the inspection personnel are forced to clock in and inspect at the collection well, and through the interaction with the data storage and interaction unit, the static information and dynamic information of the corresponding pipeline are obtained more quickly, the process is simplified, the data record is unified, effective supervision can be carried out, hidden dangers such as off-duty and false inspection are eliminated, and the safe operation of the pipe network is ensured.

[0052] 2. By using the infrared sensor to detect whether the listening leakage device is listening leakage, the effective listening leakage of the inspection personnel is ensured to a certain extent, and by scanning the two-dimensional code mark on the convex boss of the pipeline collector, the static information and dynamic information of the corresponding pipeline can be directly obtained, the inspection efficiency and the convenience and correctness of data record are greatly improved.

[0053] 3. By setting the air hole on the well lid, the air permeation effect in hot seasons is facilitated, and the anti-immersion mechanism is set below the pipeline collector, so as to avoid immersion accidents of the pipeline collector due to heavy rain or flooding, thereby effectively protecting the pipeline collector, reducing the damage probability and effectively prolonging the service life. BRIEF DESCRIPTION OF DRAWINGS

[0054] Figure 1 is a structural schematic diagram of the present application;

[0055] Figure 2 is a structural schematic diagram of the internal section of the present application;

[0056] Figure 3 is a top view of the present application;

[0057] Figure 4is a sectional view at A-A of the present application Figure 3

[0058] Figure 5 is a structural schematic diagram of a driving assembly of the present application

[0059] Figure 6 is a structural schematic diagram of the present application when a vent hole is opened

[0060] Figure 7 is a structural schematic diagram of the present application when a vent hole is closed

[0061] Figure 8 is a structural schematic diagram of the present application in use

[0062] The marks in the figure are as follows: 1, collection well; 2, well cover; 3, pipeline collector; 4, first through hole; 5, second through hole; 6, boss; 7, third through hole; 8, vertical pipe; 80, first pipe section; 81, second pipe section; 9, anti-flooding mechanism; 90, cover body; 900, rim; 901, sealing gasket; 91, vent hole; 92, guide column; 93, through hole; 94, one-way flap; 95, switch assembly; 950, annular convex ring; 951, first plug; 952, insertion hole; 953, connecting plate; 954, vent plug; 955, air passage; 956, guide rod; 957, sliding hole; 958, filter screen; 960, connecting rod; 961, jacking column; 962, spring; 963, second plug; 97, driving assembly; 970, bracket; 971, float ring; 972, anti-inclination hanger column; 973, first rack; 974, second rack; 975, rotating shaft; 976, first gear; 977, second gear; 10, two-dimensional code mark; 11, transparent cover sheet; 12, rubber block; 13, through narrow gap; 14, air vent hole. DETAILED DESCRIPTION

[0063] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art belong to the scope of protection of the present application.

[0064] Embodiment 1

[0065] The present embodiment provides a collection well 1 device integrating patrol inspection and data interaction, comprising:

[0066] The collection well 1 is pre-buried and installed underground, and is arranged at multiple points of the pipe network;

[0067] The well cover 2 is installed on the collection well 1, and one end is hingedly connected with the collection well 1; ​

[0068] The pipeline collector 3 is installed on the inner side of the well lid 2, and includes a detection unit for pipeline inspection and card punching detection at the corresponding point, and a data storage and interaction unit for data storage and interaction;

[0069] The specific structure of the pipeline collector 3 is a mature existing technology, which includes but is not limited to a tilt monitoring unit, a vibration monitoring unit, a temperature monitoring unit, etc. in addition to the detection unit and the data storage and interaction unit of the present application. The specific structure of each unit is a mature existing technology, which only needs to achieve the detection effect and data storage and interaction effect of the present application, and the specific model is not limited in the present application, which will not be described here.

[0070] As can be seen from the present embodiment, by arranging the pipeline collector 3 on the inner side of the well lid 2, and arranging the detection unit for inspection and card punching and the data storage and interaction unit for pipeline data and inspection data storage and interaction in the pipeline collector 3, the inspection personnel are forced to punch the card at the collection well 1, and through the interaction with the data storage and interaction unit, the static information and dynamic information of the corresponding pipeline can be obtained more quickly, the process is simplified, the data record is unified, effective supervision can be carried out, hidden dangers such as off-duty and false inspection are eliminated, and the safe operation of the pipeline network is ensured.

[0071] Embodiment 2:

[0072] The present embodiment provides a collection well 1 device integrating inspection and card punching and data interaction, which has the following technical features in addition to the technical solutions of the above-mentioned embodiments.

[0073] The well lid 2 is provided with a first through hole 4 and a second through hole 5, and the pipeline collector 3 is provided with a boss 6 matched with the first through hole 4 and a third through hole 7 coaxially arranged with the second through hole 5, and a two-dimensional code mark 10 and a transparent cover sheet 11 are arranged on the side of the boss 6 close to the outer surface of the well lid 2;

[0074] The third through hole 7 is provided with an infrared sensor, and the infrared sensor is a mature existing technology;

[0075] Meanwhile, the two-dimensional code recorded on the two-dimensional code mark 10 contains the contents of the unique ID and the encrypted access key of the corresponding pipeline, and after scanning, a temporary connection is established with the pipeline collector 3 through Bluetooth, which is a mature existing technology, and will not be described here;

[0076] In addition, the transparent cover sheet 11 and the boss 6 are connected by adhesion, and glass material can be used.

[0077] The embodiment can be seen that, by using the infrared sensor to detect whether the listening device is listening, the effective listening of the inspection personnel is ensured to a certain extent, and by scanning the two-dimensional code identifier 10 on the convex boss 6 of the pipeline collector 3, the static information and dynamic information of the corresponding pipeline can be directly obtained, which greatly improves the inspection efficiency and the convenience and correctness of data recording.

[0078] Embodiment 3:

[0079] The embodiment provides a collection well 1 device integrating inspection clock-in and data interaction, in addition to the technical solutions of the above embodiments, further comprising the following technical features:

[0080] The rubber block 12 is installed at the second through hole 5, and a plurality of through narrow slits 13 are arranged on the circumference of the rubber block 12 to form an elastic split structure along the axis direction of the second through hole 5;

[0081] The width of the through narrow slit 13 can be less than 1mm, and can be in the shape of a Chinese character.

[0082] The embodiment can be seen that, by setting the rubber block 12 and arranging a plurality of through narrow slits 13, on the one hand, the listening device such as a listening rod can pass through the rubber block 12, so that the listening of the pipeline does not need to open the well cover 2, and the convenience of listening is further improved, on the other hand, the through narrow slit 13 is arranged, and the width of the through narrow slit 13 is strictly controlled, so that when the listening rod is not inserted, the rubber block 12 can play a certain dustproof and rainproof effect.

[0083] Embodiment 4:

[0084] The embodiment provides a collection well 1 device integrating inspection clock-in and data interaction, in addition to the technical solutions of the above embodiments, further comprising the following technical features:

[0085] The vertical pipe 8 is connected to the pipeline of the pipe network at the corresponding point, and the other end extends below the data collector and is coaxially arranged with the second through hole 5;

[0086] The vertical pipe 8 comprises a first pipe joint 80 and a second pipe joint 81 connected in an extension manner, and the first pipe joint 80 is provided with a scale mark;

[0087] Meanwhile, the second pipe joint 81 is provided with a rubber sleeve at the top end, and the rubber sleeve is provided with a cross-shaped through slit.

[0088] It can be seen from the embodiment that the vertical pipe 8 can guide the listening leakage device and shield external environmental noise when listening leakage, thereby improving the listening leakage effect and precision. The vertical pipe 8 is provided with the first pipe section 80 and the second pipe section 81, and the scale mark is arranged, so that the ground subsidence can be coped with, and the subsidence degree can be known from the scale mark after the height of the second pipe section 81 is adjusted, thereby facilitating intuitive understanding of the part of the corresponding pipeline.

[0089] The rubber sleeve can prevent impurities from falling into the vertical pipe 8 and affecting subsequent listening leakage. The cross-shaped through slit can not hinder the insertion of the listening leakage device.

[0090] Embodiment 5

[0091] The embodiment provides a collection well 1 device integrating patrol and data interaction, which has the following technical features in addition to the technical solutions of the above embodiments.

[0092] The vent hole 14 is arranged on the well cover 2, and the anti-immersion mechanism 9 for immersion of the pipeline collector 3 is arranged below the pipeline collector 3.

[0093] The anti-immersion mechanism 9 comprises:

[0094] The cover body 90 is wrapped on the pipeline collector 3, and the edge 900 is formed between the collection well 1 and the well cover 2. The sealing gasket 901 is arranged at the edge 900, and the vent hole 91 is arranged below the cover body 90.

[0095] The guide column 92 is installed in the cover body 90, one end of the guide column 92 is connected with the cover body 90, the other end of the guide column 92 abuts against the bottom surface of the pipeline collector 3, and the through hole 93 coaxial with the second through hole 5 and the third through hole 7 is arranged in the guide column 92.

[0096] The one-way flap 94 is installed on the inner wall of the through hole 93, and is used for closing from bottom to top.

[0097] The switch assembly 95 is installed in the cover body 90, and is used for opening and closing the vent hole 14 and the vent hole 91.

[0098] The driving assembly 97 is installed on the cover body 90, and is used for driving the switch assembly 95 to complete the opening and closing adjustment of the vent hole 14 and the vent hole 91.

[0099] The sealing gasket 901 can be made of rubber material and located on the upper end surface of the edge 900. The one-way flap 94 is a mature technology, which can be pushed to open when the listening leakage device is inserted. When the water is flooded, the one-way flap 94 cannot be opened from bottom to top.

[0100] At the same time, the cover 90 and the components in the cover 90 are appropriately sized to not block the opening and closing of the well lid 2, and are adjusted according to different sizes of the collection well 1. For routine operation, details are not repeated here.

[0101] It can be seen from the embodiment that by providing the air vent hole 14 on the well lid 2, the air ventilation effect in hot seasons is facilitated, and by providing the water immersion prevention mechanism 9 below the pipeline collector 3, water immersion accidents of the pipeline collector 3 caused by heavy rain or flooding are avoided, thereby effectively protecting the pipeline collector 3, reducing the damage probability, and effectively prolonging the service life.

[0102] And the water immersion prevention mechanism 9 adopts the cover 90 and the air vent hole 14 and the air hole 91 are respectively formed on the well lid 2 and the cover 90. In hot seasons, affected by the ground hot gas rising, part of the rising hot gas will drive the relatively low-temperature cold gas in the collection well 1 to rise, thereby enabling the cold gas to enter through the air hole 91 and then be discharged through the air vent hole 14, and at the same time, part of the heat of the pipeline collector 3 is taken away, preventing the cover 90 from forming a closed place in the environment of the pipeline collector 3 when there is no flooding, affecting the service life. At the same time, when flooding, the air hole 91 and the air vent hole 14 can be closed by driving the assembly 97, which can prevent flooding and heavy rain of the collection well 1 from entering through the air hole 91 and the air vent hole 14, respectively, to prevent the pipeline collector 3 from being immersed, and ensure the service life.

[0103] At the same time, the air vent hole 14 can be provided with multiple air vent holes, and the air vent hole 14 can also serve as a leverage structure when the well lid 2 is opened. Specifically, the iron hook is inserted from the air vent hole 14, and the well lid 2 is lifted by abutting the lower end surface of the well lid 2. Therefore, the air vent hole 14 is preferably provided on the side of the well lid 2 away from the hinge connection with the collection well 1.

[0104] Embodiment 6:

[0105] The embodiment provides a collection well 1 device integrating patrol and data interaction, which has the following technical features in addition to the technical solutions of the above-mentioned embodiments. The switch assembly 95 comprises:

[0106] The annular convex ring 950 is connected to the bottom surface of the cover 90 and is provided with multiple air vent holes 91.

[0107] The first plug 951 is slidably connected below the annular convex ring 950 and is provided with a insertion hole 952 and can be sealed with the annular convex ring 950 to open and close the air hole 91.

[0108] The connecting plate 953 is slidingly connected in the cover 90, and a plurality of air vent plugs 954 are coaxially arranged with the air vent hole 91, and air passage 955 is arranged inside the air vent plug 954;

[0109] The driving assembly 97 is used to drive the connecting plate 953 to lift, lock and unlock, and the end of the air vent plug 954 is in static friction with the plug hole 952, and can pass through the annular convex ring 950 to open the first plug 951 or pull back the first plug 951 under the self-weight of the connecting plate 953 or under the lifting of the driving assembly 97;

[0110] At the same time, the static friction between the plug hole 952 and the end of the air vent plug 954 is greater than the static friction between the first plug 951 and the annular convex ring 950, which can be realized by selecting and arranging the material of the inner wall of the plug hole 952, so as to ensure the size of the static friction. Specifically, a rubber layer is adhered to the inner wall of the plug hole 952.

[0111] In addition, the annular convex ring 950 and the cover 90 adopt an integrated structure, and the connecting plate 953 and the plurality of air vent plugs 954 adopt an integrated structure;

[0112] The connecting plate 953 is provided with a sliding hole matched with the guide column 92, and a weight block can be arranged to ensure that the air vent plug 954 pushes the first plug 951 away from the annular convex ring 950 and is inserted into the plug hole 952 to be in static friction, and the lower end surface of the inner wall of the annular convex ring 950, the lower end surface of the surface of the air vent plug 954 and the upper end surface of the inner wall of the plug hole 952 of the first plug 951 are all provided with chamfers.

[0113] As can be seen from the embodiment, the connecting plate 953 is pressed down to push the air vent plug 954 down and make it in static friction with the plug hole 952 on the first plug 951, while pushing the first plug 951 away from the annular convex ring 950, and then making the cover 90 conductive inside and outside through the air passage 955, so as to facilitate ventilation. When it is necessary to close the air vent hole 91, the connecting plate 953 is lifted by the driving assembly 97, and then the air vent plug 954 pulls back the first plug 951, and the static friction between them is greater than the static friction between the surface of the first plug 951 and the inner wall of the annular convex ring 950, so that the first plug 951 cooperates with the annular convex ring 950, thereby sealing the air vent hole 91. In addition, the driving assembly 97 also locks the connecting plate 953 after lifting, so as to avoid the situation that the connecting plate 953 is pressed down due to its self-weight.

[0114] Embodiment 7:

[0115] The embodiment provides a collection well 1 device integrating patrol check-in and data interaction, in addition to the technical scheme of the above embodiment, further has the following technical features, the switch assembly 95 further includes:

[0116] The guide rod 956 is installed at the bottom surface of the cover body 90, and the first plug 951 is provided with a sliding hole 957 that is slidably matched with the guide rod 956;

[0117] The filter screen 958 is sleeved on the surface of the first plug 951 and connected to the bottom surface of the cover body 90 at one end and connected to the other end

[0118] The filter screen 958 is in the shape of a circular truncated cone or a circular column and can be unfolded after the first plug 951 moves downward and protrude and bend away from the axis after the first plug 951 moves upward.

[0119] Meanwhile, the two ends of the filter screen 958 can be connected by adhesion, and the guide rod 956 can be made of metal and connected to the cover body 90 by interference fit type plug-in adhesion.

[0120] It can be seen from the embodiment that the guide rod 956 and the sliding hole 957 improve the stability and precision of the first plug 951 in lifting under the driving of the ventilation plug 954, ensure the matching precision between the first plug 951 and the ventilation plug 954 or the annular convex ring 950, and the filter screen 958 can prevent dust in the collection well 1 from entering the cover body 90 in the ventilation state, and the filter screen 958 can also play a pulling effect on the first plug 951 under the premise of ensuring the ventilation effect, that is, limit the height of the ventilation plug 954 (when the self-weight of the connecting plate 953 and other components connected thereto is not too large), and when the filter screen 958 is unfolded and straightened, the static friction cooperation between the ventilation plug 954 and the first plug 951 is more convenient, and the cooperation difficulty caused by the increased static friction force between the two is avoided.

[0121] And when the ventilation hole 91 is switched between opening and closing, the filter screen 958 is unfolded or folded due to the lifting of the first plug 951, which can shake off the impurities adhered to the filter screen 958, thereby ensuring ventilation.

[0122] Meanwhile, when the self-weight of the connecting plate 953 and other components connected thereto is too large, a support column can be additionally arranged on the bottom wall of the inner wall of the cover body 90 to avoid damage to the installation and connection of the filter screen 958 caused by the excessive self-weight exceeding the supporting capacity of the filter screen 958.

[0123] Embodiment 8:

[0124] The embodiment provides a collection well 1 device integrating patrol check-in and data interaction, in addition to comprising the technical scheme of the above embodiment, further has the following technical features, the switch assembly 95 further comprises:

[0125] The connecting rod 960 is installed on the connecting plate 953 and extends to below the air hole 14 at one end;

[0126] The top column 961 is installed at one end of the connecting rod 960 below the air hole 14 and is sleeved with the second plug 963;

[0127] The spring 962 is installed in the second plug 963 and is used for lifting and lowering of the second plug 963 on the top column 961;

[0128] Wherein, the second plug 963 can adopt rubber material, and is connected and fixed between the top column 961 through the spring 962, and the second plug 963 adopts a circular truncated cone shape, and the diameter size of the top end radial section is smaller than that of the air hole 14;

[0129] Meanwhile, since the air hole 14 is unidirectionally arranged on the well lid 2, the connecting rod 960, the top column 961 and the spring 962 are also unidirectionally arranged, so that the stability of the connecting plate 953 during lifting can be kept balanced on the other side by means of counterweight and the like, and after the second plug 963 abuts against the well lid 2, the side of the connecting plate 953 will be resisted, in order to balance the connecting member, a rubber elastic block is arranged on the surface of the end of the connecting plate 953 away from the connecting rod 960, so that after the second plug 963 contacts the well lid 2, the rubber elastic block contacts the bottom surface of the pipeline collector 3, thereby balancing the resistance of the two ends of the connecting plate 953, further keeping the stability of the connecting plate 953 during lifting, which is a routine operation of the person skilled in the art, and will not be described here.

[0130] It can be seen from the embodiment that, after the connecting plate 953 is lifted by the driving assembly 97, the connecting rod 960 can be pushed, and then the top column 961 pushes the second plug 963 into the air hole 91, so that the air hole 14 is closed, so that when flooding occurs due to heavy rain, the rainwater entering the cover body 90 from the air hole 14 can be greatly reduced, the flooding in the cover body 90 is avoided, and the pipeline collector 3 is prevented from being immersed and damaged; the spring 962 is arranged, so that the air hole 14 can be closed in advance, the lifting of the connecting plate 953 is avoided when the connecting plate 953 continues to be lifted (before the air hole 91 is closed), and the lifting of the connecting plate 953 is avoided, and the spring 962 can improve the plugging effect of the second plug 963 on the air hole 14 after being compressed, and the sealing effect is ensured.

[0131] Embodiment 9:

[0132] The embodiment provides a collection well 1 device integrating patrol check-in and data interaction, in addition to comprising the technical scheme of the above embodiment, further has the following technical features, the driving assembly 97 comprises:

[0133] The support 970 is slidingly installed below the cover body 90 and is provided with a float ring 971 and an anti-tilting hanging column 972;

[0134] The first rack 973 is vertically and slidingly connected to the surface of the cover body 90 and the bottom end is connected to the support 970;

[0135] The second rack 974 is vertically and slidingly connected to the inner wall of the cover body 90 and the bottom end is connected to the connecting plate 953;

[0136] The rotating shaft 975 is arranged through the inner wall of the cover body 90 and is provided with the first gear 976 meshing with the first rack 973 at one end and the second gear 977 meshing with the second rack 974 at the other end;

[0137] The first rack 973 and the second rack 974 are arranged on the same side of the rotating shaft 975.

[0138] Meanwhile, in order to limit the moving range of the first rack 973 and the second rack 974 and ensure the stability and precision of the first rack 973 and the second rack 974 during vertical sliding, fixed blocks can be arranged at the corresponding positions of the inner wall of the cover body 90 and the surface of the cover body 90, and sliding grooves meshing with the fixed blocks are formed in the first rack 973 and the second rack 974, which are conventional settings for the vertical sliding stability of the first sliding rod and the second sliding rod and will not be described here;

[0139] And a sealing structure should also be arranged at the rotating connection position of the rotating shaft 975 and the cover body 90, which is a conventional operation for improving the rotating stability of the rotating shaft, and if the wall thickness of the inner wall of the cover body 90 is small, the wall thickness of the cover body 90 at the rotating shaft can be increased or a support seat can be arranged on the inner side of the cover body 90, which are conventional operations for improving the rotating stability of the rotating shaft and will not be described here.

[0140] As can be seen from the embodiment, when water flooding occurs in the collection well 1, the rising water level pushes the support 970 upward through buoyancy, and then pushes the first rack 973 upward, drives the first gear 976 to rotate, and drives the second gear 977 to rotate through the rotating shaft 975, so that the second rack 974 is pushed upward, and the connecting plate 953 is driven to move upward, so as to complete the closure of the air hole 14 and the air hole 91.

[0141] At the same time, if the water does not recede, that is, the floating ring 971 always maintains the height of the first rack 973, thereby limiting the second rack 974, thereby locking the height of the connecting plate 953, ensuring the sealing effect of the air hole 14 and the air hole 91;

[0142] And compared with the driving mode of detecting feedback by using motors and sensors, the above-mentioned driving force is the buoyancy of water when the water is flooded, which is lower in cost and more suitable.

[0143] And since the first rack 973 and the first gear 976 are both arranged outside the cover 90, after the water subsides, the cover 90 needs to be taken out for cleaning and then put back, and since the cover 90 is fixed by the well lid 2 and the collection well 1, it can be easily taken out after the well lid 2 is opened, and the cleaning convenience is high.

[0144] Embodiment 10:

[0145] The embodiment provides an operation method of a collection well 1 device integrating patrol and data interaction, comprising the following steps:

[0146] S1: The patrol personnel scans the two-dimensional code mark 10 using a mobile terminal;

[0147] S2: Input the corresponding patrol personnel account password;

[0148] S3: The patrol personnel knows the pipeline information of the pipe network located at the corresponding point, and the pipeline information includes pipeline basic information and patrol check-in information;

[0149] S4: The patrol personnel uses a listening leak equipment to listen to the pipeline;

[0150] S5: The infrared sensor detects the entry of the listening rod, and records the inspection information, including the pipeline information number and address of the point, the inspection check-in time and the inspection personnel information;

[0151] S6: After the listening is completed, the patrol personnel supplements the inspection information, including whether there is an abnormality in this listening, if there is abnormal information, record it, and report the related abnormality;

[0152] Among them, the mobile terminal can use a mobile phone, and the above-mentioned information processing software is known by the person skilled in the art according to the conventional means, which will not be repeated here.

[0153] It can be seen from the embodiment that by forcing the inspection personnel to use the mobile terminal to scan the two-dimensional code located at the collection well 1, effective supervision can be performed, hidden dangers such as off-duty and false inspection are eliminated, safe operation of the pipe network is ensured, and through scanning the two-dimensional code, pipe foundation information and inspection punch information can be obtained, so that static information and dynamic information of the corresponding pipe can be known more quickly, a process is simplified, data records are unified, and inspection efficiency is improved.

[0154] The embodiments of the present application are described above in combination with the drawings, and the embodiments and features in the embodiments in the present application can be combined with each other without conflict, the present application is not limited to the above specific embodiments, the above specific embodiments are only illustrative but not restrictive, and a person of ordinary skill in the art can make many forms under the inspiration of the present application without departing from the scope of the present application and the protection scope of the claims.

Claims

1. An integrated inspection clock-in and data interaction collection well device, characterized in that, Include: The collection well (1) is installed in the ground by pre-buried installation, and is arranged at multiple points of the pipe network; The well cover (2) is installed on the collection well (1), and one end is hinged to the collection well (1); The pipeline collector (3) is installed on the inner side of the well cover (2), and includes a detection unit for pipeline inspection and card detection at the corresponding point, and a data storage and interaction unit for data storage and interaction; The well cover (2) is provided with a first through hole (4) and a second through hole (5), and the pipeline collector (3) is provided with a boss (6) matched with the first through hole (4), and a third through hole (7) coaxial with the second through hole (5), and a two-dimensional code (10) and a transparent cover (11) are arranged on the side of the boss (6) close to the outer surface of the well cover (2); Wherein, the third through hole (7) is provided with an infrared sensor; The well cover (2) is provided with a ventilation hole (14), and a waterproof mechanism (9) is arranged below the pipeline collector (3) for immersion of the pipeline collector (3); Wherein, the waterproof mechanism (9) comprises: The cover body (90) is wrapped around the pipeline collector (3), and a rim (900) is formed between the collection well (1) and the well cover (2), and a sealing ring (901) is arranged at the rim (900), and a ventilation hole (91) is arranged below the pipeline collector (3); The guide column (92) is installed in the cover body (90), one end is connected with the cover body (90), the other end is in abutment with the bottom surface of the pipeline collector (3), and a through hole (93) coaxial with the second through hole (5) and the third through hole (7) is arranged in the guide column (92); The one-way flap (94) is installed on the inner wall of the through hole (93), and is used for closing from bottom to top; The switch assembly (95) is installed in the cover body (90), and is used for opening and closing the ventilation hole (14) and the ventilation hole (91); The driving assembly (97) is installed on the cover body (90), and is used for driving the switch assembly (95) to complete the opening and closing adjustment of the ventilation hole (14) and the ventilation hole (91).

2. The integrated inspection check-in and data-interaction collection well device of claim 1, wherein, Also includes: The rubber block (12) is installed at the second through hole (5), and a plurality of through narrow slits (13) are arranged on the circumference of the rubber block (12) to form an elastic split structure along the axis direction of the second through hole (5).

3. The integrated inspection check-in and data-interaction collection well device of claim 1, wherein, Also includes: The vertical pipe (8) is connected to the pipeline at the corresponding point of the pipe network, and the other end extends below the data collector and is coaxially arranged with the second through hole (5); Wherein, the vertical pipe (8) comprises a first pipe joint (80) and a second pipe joint (81) connected in an extension manner, and the first pipe joint (80) is provided with a scale mark.

4. The integrated inspection check-in and data-interaction collection well device of claim 1, wherein, The switch assembly (95) comprises: The annular convex ring (950) is connected to the bottom surface of the cover body (90), and a plurality of annular convex rings (950) are arranged, and each annular convex ring (950) is arranged corresponding to the ventilation hole (91); The first plug (951) is slidably connected below the annular convex ring (950), and is provided with a insertion hole (952), and can be sealingly matched with the annular convex ring (950) to open and close the ventilation hole (91); The connecting plate (953) is slidingly connected in the cover body (90) and is provided with a plurality of venting plugs (954) coaxially with the vent hole (91), and a gas passing channel (955) is provided inside the venting plug (954). The driving assembly (97) is used for driving the connecting plate (953) to lift, lock and unlock, the end of the venting plug (954) is in static friction with the socket (952), and the venting plug (954) can pass through the annular convex ring (950) to open the first plug (951) under the self-weight of the connecting plate (953) or pull back the first plug (951) under the lifting of the driving assembly (97).

5. The integrated inspection check-in and data-interaction collection well apparatus of claim 4, wherein, The switch assembly (95) further comprises: The guide rod (956) is installed on the bottom surface of the cover body (90), and the first plug (951) is provided with a sliding hole (957) slidingly matched with the guide rod (956); The filter screen (958) is sleeved on the surface of the first plug (951) and connected with the first plug (951) at one end and the bottom surface of the cover body (90) at the other end. The filter screen (958) is in the shape of a circular truncated cone or a circular column and can be unfolded after the first plug (951) moves downward and protrude and bend away from the axis after the first plug (951) moves upward.

6. The integrated inspection clocking and data-interacting collection well apparatus of claim 4, wherein, The switch assembly (95) further comprises: The connecting rod (960) is installed on the connecting plate (953) and extends to below the vent hole (14) at one end; The jacking column (961) is installed on the end of the connecting rod (960) below the vent hole (14) and is sleeved with the second plug (963); The spring (962) is installed in the second plug (963) and is used for lifting and lowering the second plug (963) on the jacking column (961).

7. The integrated inspection clocking and data-interacting collection well apparatus of claim 4, wherein, The driving assembly (97) comprises: The bracket (970) is slidingly installed below the cover body (90) and is installed with the floating ring (971) and the anti-tilting hanger column (972); The first rack (973) is vertically and slidingly connected to the surface of the cover body (90) and connected with the bracket (970) at the bottom end; The second rack (974) is vertically and slidingly connected to the inner wall of the cover body (90) and connected with the connecting plate (953) at the bottom end; The rotating shaft (975) is provided through the inner wall of the cover body (90) and provided with the first gear (976) engaged with the first rack (973) at one end and the second gear (977) engaged with the second rack (974) at the other end; The first rack (973) and the second rack (974) are provided on the same side of the rotating shaft (975).

8. An operating method applied to the integrated inspection clock-in and data interaction collection well device of any one of claims 1-7, characterized in that, The method comprises the following steps: S1: The inspection personnel scans the two-dimensional code mark (10) using a mobile terminal; S2: Input the corresponding inspection personnel account password; S3: The inspection personnel knows the pipeline information of the pipeline network at the corresponding point, and the pipeline information includes pipeline basic information and inspection clocking information; S4: The inspection personnel uses a listening leak equipment to listen to the pipeline; S5: The infrared sensor detects that the listening rod enters, and records the inspection information, including the pipeline information number and address of the point, the inspection clocking time and the inspection personnel information; S6: After the listening and missing is completed, the inspection personnel supplements the record of the inspection information, including whether there is an abnormality in this listening and missing, if there is abnormal information, record it, and report the related abnormality.

Citation Information

Patent Citations

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