Comprehensive pipe gallery inspection operation device for safety training

By setting up escape passages and lifting devices in the integrated pipeline corridor, combined with automated controllers and sliding devices, the problem of escape difficulties in underground pipeline corridors is solved, and no burden-free escape and efficient material transportation is achieved.

CN223073717UActive Publication Date: 2025-07-08STATE GRID ZHEJIANG ELECTRIC POWER CO LTD NINGBO POWER SUPPLY CO
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Patent Information

Application Number
CN202421748485.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-07-08
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The integrated pipeline corridor is located underground, and it is difficult for staff to escape when carrying heavy items, which increases the difficulty of escape.

Method used

A comprehensive pipeline inspection operation device is designed, including escape passages, transportation pipelines and lifting devices, and the items are transported to the ground through the lifting device, and combined with an automated controller and sliding device to achieve a burden-free escape.

Benefits of technology

It improves the efficiency of escape and material transportation, ensures life safety and material protection, and has a simple structure and is easy to install.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a comprehensive pipe gallery inspection operation device for safety training, comprising an escape channel, one end of which is provided with an escape exit for people to escape; the conveying pipeline communicates with the inner side and the outer side of the comprehensive pipe gallery, and a conveying space is formed in the conveying pipeline and used for conveying objects; and the lifting device is arranged in the conveying space so as to convey the articles. The technical problems that the comprehensive pipe gallery is usually arranged underground, when workers need to carry out related work on the comprehensive pipe gallery, the situation that the workers need to enter the underground comprehensive pipe gallery inevitably exists, and when emergency situations happen in the comprehensive pipe gallery, the workers need to enter the underground comprehensive pipe gallery, and the workers cannot enter the underground comprehensive pipe gallery. A worker needs to escape to the ground through an escape ladder in the comprehensive pipe gallery inspection operation device, and if the worker carries a load-bearing object in the process, the worker needs to overcome more gravity in the process of escaping to the ground, so that the escape difficulty is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of utility tunnels, and more specifically, to an inspection operation device for utility tunnels used for safety training. Background Art

[0002] With the development of society, utility tunnels play a crucial role in beautifying the urban environment and intensively integrating urban resources. Since a large number of important life facilities such as communication cables and water pipes are integrated in the tunnels, it is necessary for personnel to regularly carry out relevant work in the utility tunnels through an inspection operation device for utility tunnels.

[0003] However, there are at least the following problems in the related art: Utility tunnels are usually located underground. When staff need to carry out relevant work in the utility tunnels, it is inevitable that they need to enter the underground utility tunnels. And when an emergency occurs in the utility tunnels, staff need to escape to the ground through the escape ladder in the inspection operation device for utility tunnels. If, during this process, the staff carry heavy items, they need to overcome more gravity during the escape to the ground, thus increasing the difficulty of escape. Summary of the Utility Model

[0004] The technical problem solved by the utility model is: Utility tunnels are usually located underground. When staff need to carry out relevant work in the utility tunnels, it is inevitable that they need to enter the underground utility tunnels. And when an emergency occurs in the utility tunnels, staff need to escape to the ground through the escape ladder in the inspection operation device for utility tunnels. If, during this process, the staff carry heavy items, they need to overcome more gravity during the escape to the ground, thus increasing the difficulty of escape.

[0005] To solve the above problems, an inspection operation device for utility tunnels used for safety training, the inspection operation device for utility tunnels cooperates with the utility tunnel, and the inspection operation device for utility tunnels includes: an escape passage, the escape passage is arranged in the utility tunnel, and one end of the escape passage is provided with an escape opening corresponding to the side wall of the utility tunnel for the target object to move; a transportation pipeline, the transportation pipeline communicates the inside and outside of the utility tunnel, and a transportation space is arranged inside the transportation pipeline; a lifting device, the lifting device is arranged in the transportation space, and the lifting device can perform ascending or descending actions.

[0006] Compared with the prior art, the technical effect achieved by adopting this technical solution: Compared with the prior art, by setting an inspection operation device for utility tunnels in the utility tunnel, the staff can place the items carried on their bodies on the lifting device, thus realizing a burden-free and rapid escape, giving priority to ensuring life safety. After the escape personnel are in a safe position, the materials are transported out through the lifting device.

[0007] In an example of the present utility model, there is a box body which is cooperatively connected with a lifting device, and an accommodating space is provided inside the box body.

[0008] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The escape personnel place the supplies in the box body, and the box body can protect the supplies from being damaged by external factors outside the box body.

[0009] In an example of the present utility model, a sliding device is provided on the outer side of the box body; a first track is provided on one inner wall of the utility tunnel, one end of the conveying pipeline located inside the utility tunnel is the inlet end, and one end of the first track is connected to the inlet end; wherein, the sliding device cooperates with the first track to enable the box body to enter the conveying pipeline from the inlet end and then be cooperatively connected with the lifting device.

[0010] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The box body enters the conveying pipeline through the sliding device from the laid track, optimizing the time consumed by the distance between the item placement position and the escape position, and improving the escape efficiency.

[0011] In an example of the present utility model, the conveying pipeline includes a first cover body which cooperates with the inlet end and is used to cover the inlet end.

[0012] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: When the box body enters the conveying pipeline, the first cover body is closed, which plays a role in blocking the box body, and at the same time isolates the box body from the outside of the conveying pipeline, playing a role in protecting the box body and the supplies.

[0013] In an example of the present utility model, the lifting device includes a lifting seat and a second track, the second track is provided on the inner side wall of the conveying pipeline, and the lifting seat is movably arranged on the second track; wherein, one end of the conveying pipeline located outside the utility tunnel is the outlet end, and the two ends of the second track are respectively correspondingly arranged at the positions of the inlet end and the outlet end, and the lifting seat performs a rising or falling action along the second track.

[0014] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The lifting seat is initially arranged at the inlet end, and the box body can quickly slide to be cooperatively connected with the lifting seat when the first track ends, improving the transportation efficiency. The lifting seat transports the box body to the outlet end through the second track, ensuring stability, reducing the bumps during the transportation process, and protecting the supplies in the box body.

[0015] In an example of the present utility model, there is a controller; a weight detection device is provided on the lifting seat; wherein, when the weight detection device detects the load-bearing signal generated by the box body on the lifting seat, the controller controls the first cover body to close and further controls the lifting device to perform a rising action.

[0016] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: By using automated intelligent devices such as a weight detection device and a controller to control the integrated utility tunnel inspection operation device, the escaping personnel only need to simply and quickly place the items in the box to escape, and during the escape process, the automated intelligent devices synchronously control the integrated utility tunnel inspection operation device to transport the materials to the outlet end of the transport passage, improving the escape and transport efficiency.

[0017] In an example of the present utility model, the transport pipeline includes a second cover body, and the second cover body is matched with the outlet end on the side close to the ground of the transport pipeline for covering the outlet end.

[0018] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: When the integrated utility tunnel inspection operation device is idle, it can prevent rain, sediment, etc. from entering the transport pipeline, so as to avoid affecting or damaging the devices inside the transport pipeline.

[0019] In an example of the present utility model, the box body includes an upper shell and a lower shell; slot holes are provided at opposite sides of the lower shell; elastic buckles are provided at opposite ends on the same side of the upper shell; wherein, when the upper shell and the lower shell are in a matching position, the elastic buckles are connected with the slot holes in a matching manner, and the upper shell is buckled on the lower shell to cover the accommodation space.

[0020] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The materials are put into the box body from the opening position of the lower shell, and the upper shell and the lower shell cooperate to form an accommodation space to ensure that the materials will not be left during the transportation process, and at the same time isolate the interference and influence of external factors. The elastic buckles are connected by pressing the upper shell and the slot holes. This solution can quickly form a firm sealed space for the box body, protecting the items in the box body while improving the escape efficiency.

[0021] In an example of the present utility model, the box body is spliced by a plurality of vacuum insulation panels.

[0022] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: In the integrated utility tunnel, if high-temperature dangerous accidents such as fires and explosions occur, the box body made of vacuum insulation panels can effectively prevent the high temperature from affecting or damaging the items in the box body.

[0023] In an example of the present utility model, a waterproof and heat-insulating coating is applied to the side wall of the transport pipeline.

[0024] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: Applying a waterproof and heat-insulating coating to the side wall of the transport pipeline can prevent disasters such as floods and fires from affecting the inside of the pipeline, effectively preventing the disasters that are likely to occur in the integrated utility tunnel from affecting and damaging the integrated utility tunnel inspection operation device.

[0025] After adopting the technical solution of the present utility model, the following technical effects can be achieved:

[0026] (1) The escape personnel transport their personal belongings to the ground through the inspection operation device of the utility tunnel, reducing the burden on the escape personnel during the escape process and improving the escape efficiency of the escape personnel;

[0027] (2) The automated intelligent equipment improves the escape and material transportation efficiency;

[0028] (3) The inspection operation device of the utility tunnel has a simple structure and is convenient for construction and installation. Description of the Drawings

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings to be used in the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts;

[0030] Figure 1 It is a schematic structural diagram of an inspection operation device for a utility tunnel provided by the present utility model;

[0031] Figure 2 For Figure 1 It is a schematic combined structure diagram of a lifting seat and a second track from a certain perspective in;

[0032] Figure 3 For Figure 1 It is a schematic diagram of the mechanism of a box body from a certain perspective in.

[0033] Explanation of the Reference Numerals in the Drawings:

[0034] 1. Transport pipeline; 10. Lifting device; 101. First track; 102. Second track; 103. Inlet end; 104. Outlet end; 105. Lifting seat; 106. First cover; 107. Second cover; 2. Box body; 201. Upper shell; 202. Lower shell; 203. Sliding device; 31. Utility tunnel layer; 32. Mezzanine; 311. First ladder; 312. Partition wall; 321. Second ladder; 322. Escape opening; 4. Ground. Detailed Embodiments

[0035] To make the above objects, features, and advantages of the present utility model more obvious and understandable, the following detailed description of the specific embodiments of the present utility model will be given in conjunction with the drawings.

[0036] See Figure 1, the present utility model provides a comprehensive pipe gallery inspection operation device for safety training. The comprehensive pipe gallery inspection operation device cooperates with the comprehensive pipe gallery. The comprehensive pipe gallery inspection operation device includes: an escape passage, which is arranged in the comprehensive pipe gallery, and one end of the escape passage is provided with an escape opening 322 corresponding to the side wall of the comprehensive pipe gallery for the target object to move; a transportation pipe 1, which communicates with both the inside and outside of the comprehensive pipe gallery, and a transportation space is arranged inside the transportation pipe 1; a lifting device 10, which is arranged in the transportation space and can perform ascending or descending actions.

[0037] Specifically, the comprehensive pipe gallery includes a pipe gallery layer 31 and a mezzanine 32. The transportation pipe 1 passes through the pipe gallery layer 31 and the mezzanine 32 and leads to the ground 4. Among them, the escape passage is provided with a first escape ladder and a second escape ladder on the pipe gallery layer 31 and the mezzanine 32 respectively. The escape opening 322 is arranged on one side of the mezzanine 32 close to the ground 4. There is a partition wall 312 between the pipe gallery layer 31 and the mezzanine 32, and a fireproof cover plate is arranged on the partition wall 312. Among them, the first ladder 311 leads to the fireproof cover plate and enters the area of the mezzanine 32 by opening the fireproof cover plate. The second ladder 321 is arranged on the side wall of the mezzanine 32 and leads to the escape opening 322. The part of the transportation pipe 1 located on the pipe gallery layer 31 has its inlet end 103 positioned flush with the ground 4 of the pipe gallery layer 31 and close to the first escape ladder. The inlet end 103 of the transportation pipe 1 is set in a horizontal direction. The pipe body part of the transportation pipe 1 is arranged away from the first ladder 311 and the second ladder 321. The outlet end 104 of the transportation pipe 1 is arranged on the part of the mezzanine 32 on the ground 4 and adjacent to the position of the escape opening 322. Among them, a slot is opened on the partition wall 312 at the position corresponding to the transportation pipe 1 for the transportation pipe 1 to pass through and be installed. The lifting device 10 is installed on the inner side wall of the transportation pipe 1. The lifting device 10 is vertically arranged along the pipe, and one end of the lifting device 10 is close to the inlet end 103 position of the transportation pipe 1, and the relative other end is close to the outlet end 104 position of the transportation pipe 1. The load-bearing part is horizontally arranged on the lifting device 10 by screws. The load-bearing part is perpendicular to the lifting device 10, and the load-bearing part can move up or down along the lifting functional structure.

[0038] Optionally, the part of the structure of the transportation pipe 1 located in the space of the mezzanine 32 is provided with a second inlet end at a position close to the partition wall 312 of the mezzanine 32. Escape personnel in the mezzanine 32 can also place materials in the transportation pipe 1 through the second inlet end.

[0039] See Figure 3 , the present utility model provides a comprehensive pipe gallery inspection operation device for safety training, including a box body 2. The box body 2 cooperates with the lifting device 10, and an accommodation space is arranged inside the box body 2.

[0040] Specifically, the box body 2 is provided with an accommodation space for accommodating articles. The box body 2 is connected to the part of the lifting device 10 that performs lifting movement to transport the box body 2 to the outlet position of the transport pipeline 1.

[0041] See Figure 1 , a sliding device 203 is provided on the outer side of the box body 2; the inspection operation device for the integrated pipe gallery includes a first track 101, and the first track 101 is laid on one inner wall of the integrated pipe gallery; one end of the transport pipeline 1 located in the integrated pipe gallery is an inlet end 103, and one end of the first track 101 is connected to the inlet end 103; wherein, the sliding device 203 cooperates with the first track 101 to enable the box body 2 to enter the transport pipeline 1 from the inlet end 103 and then cooperate and connect with the lifting device 10.

[0042] Specifically, the box body 2 is arranged in the pipe gallery layer 31, and the overall structure size of the box body 2 is slightly smaller than the transport space of the transport pipeline 1. The first track 101 is attached to the ground 4 of the pipe gallery layer 31, and one end of the first track 101 is close to the inlet end 103 of the transport pipeline 1, and the other end is close to the position where the first ladder 311 is located. One side of the box body 2 is provided with rollers along the relative four corner positions, and the rollers can cooperate with the first track 101 to realize the movement of the box body 2 along the track of the first track 101. The box body 2 enters the transport pipeline 1 along the first track 101 and slides to cooperate and connect with the load-bearing part.

[0043] The utility model provides an inspection operation device for an integrated pipe gallery for safety training. The transport pipeline 1 includes a first cover body 106, and the first cover body 106 cooperates with the inlet end 103 to cover the inlet end 103.

[0044] Specifically, a fixed position is provided on one side of the first cover body 106, and a connection position is provided at the corresponding side of the inlet end 103 of the transport pipeline 1. The fixed position of the first cover body 106 cooperates with the inlet end 103 of the transport pipeline 1 to form a hinge connection.

[0045] Preferably, a rubber strip is arranged around the outer side of the first cover body 106 and cooperates with the inlet end 103 of the transport pipeline 1. When the first cover body 106 covers the inlet end 103 of the transport pipeline 1, it forms a seal to block the influence of external factors of the transport pipeline 1 and plays a role in stopping the box body 2 entering the transport pipeline 1 to prevent the box body 2 from sliding backward and slipping out of the transport pipeline 1 during the transport process.

[0046] See Figure 2, the present utility model provides a comprehensive pipe gallery inspection operation device for safety training. The lifting device 10 includes a lifting seat 105 and a second track 102 that cooperate with each other. The second track 102 is provided on the inner side wall of the conveying pipe 1, and the lifting seat 105 is movably arranged on the second track 102. Among them, one end of the conveying pipe 1 located outside the comprehensive pipe gallery is the outlet end 104, and the two ends of the second track 102 are respectively arranged corresponding to the positions of the inlet end 103 and the outlet end 104, and the lifting seat 105 performs ascending or descending actions along the second track 102.

[0047] Specifically, the second track 102 is arranged along a straight line and fits the inner wall of the conveying track. One end of the second track 102 is close to the position of the inlet end 103 of the conveying pipe 1, and the relative other end is close to the position of the outlet end 104 of the conveying pipe 1. The lifting seat 105 is a metal plate, and one end of the lifting seat 105 is cooperatively connected with the second track 102. Among them, the area of the lifting seat 105 is slightly larger than that of the box body 2 and smaller than the cross-sectional area of the conveying channel. The lifting seat 105 is used to support the box body 2 and transport the box body 2 to the ground 4 along the second track 102.

[0048] Optionally, a large number of protrusions are provided on the side surface of the lifting seat 105 that cooperates with the box body 2, which is used to increase the friction force of the contact surface between the rollers of the box body 2 and the lifting seat 105, prevent the box body 2 from shaking greatly during transportation, and play a role in protecting the materials in the box body 2.

[0049] In an example of the present utility model, a comprehensive pipe gallery inspection operation device for safety training includes a controller; a weight detection device is provided on the lifting seat 105. Among them, when the weight detection device detects the load-bearing signal generated by the box body 2 on the lifting seat 105, the controller controls the lifting device 10 to perform an ascending action.

[0050] Specifically, the weight detection device includes a strain gauge. The strain gauge is arranged on the side of the lifting seat 105 away from the box body 2, and an elastic member is provided between the strain gauge and the lifting seat 105. Under normal circumstances, no items are placed on the lifting seat 105, and the detection amount of the strain gauge is zero. When the strain gauge detects that the weight is greater than or equal to the weight of the box body 2, it sends a detection signal to the controller. The controller judges whether the lifting seat 105 is bearing weight according to the detection signal. If the judgment is yes, it controls the first cover 106 to close, and then the controller detects and judges whether the first cover 106 is completely closed; when both conditions are met, the controller controls the lifting device 10 to perform an ascending action.

[0051] Optionally, the controller is a movable remote control and has other function buttons that can be manually operated.

[0052] Optionally, in an example of the present utility model, the conveying pipeline 1 includes at least one installation pipeline. The conveying pipeline 1 is formed by combining and connecting three installation pipelines. A plurality of fixing grooves are correspondingly provided between every two installation pipelines, and the installation pipelines are fixedly connected through screws and nuts passing through the fixing grooves.

[0053] In some embodiments, the conveying pipeline 1 includes a second cover body 107. The second cover body 107 cooperates with the outlet end 104 on the side of the conveying pipeline 1 close to the ground 4 for covering the outlet end 104.

[0054] Specifically, one side of the second cover body 107 is provided with a fixing portion, and a connecting portion is provided at the corresponding position of the outlet end 104 of the conveying pipeline 1. The two form a hinge connection. A sealing rubber strip is provided at the mating position of the second cover body 107 and the outlet end 104 to prevent rain, sediment, etc. from entering the conveying pipeline 1 and affecting the facilities.

[0055] See Figure 3 , in an embodiment of the utility model, the box body 2 includes an upper shell 201 and a lower shell 202; slot holes are provided at opposite sides of the lower shell 202; elastic buckles are provided at opposite ends on the same side of the upper shell 201; wherein, when the upper shell 201 and the lower shell 202 are in the mating position, the elastic buckles are in mating connection with the slot holes, and the upper shell 201 is buckled on the lower shell 202 to cover the accommodation space.

[0056] Specifically, a buckle member is provided on the upper shell 201, and a corresponding groove is provided on the side wall of the lower shell 202 near the opening. The upper shell 201 is buckled at the opening position of the lower shell 202, and the elastic buckle member is inserted into the groove to form a buckle connection. This structure is convenient for installation and can quickly realize the firm closure of the box body 2 in an emergency, ensuring the safety of the materials inside the box body 2.

[0057] Preferably, in an example of the present utility model, the box body 2 is spliced by vacuum insulation panels. When a fire occurs, the materials in the accommodation space of the box body 2 are isolated from the external high-temperature environment.

[0058] Preferably, in an example of the present utility model, a waterproof and heat-insulating coating is applied on the side wall of the conveying pipeline 1 to prevent the articles and devices in the conveying pipeline 1 from being affected by external disasters in case of a fire or a flood.

[0059] Optionally, in an example of the utility model, the integrated pipe corridor inspection operation device may also include a virtual reality device, which includes a handle and a helmet. Through computers and related electronic equipment, environmental data in the integrated pipe corridor is collected, and real-scene modeling is obtained through computers. According to the situation in the integrated pipe corridor, corresponding simulation events are simulated and generated, such as: fire emergency scenes, live detection, and construction inspection scenes. The user wears a helmet on the head, the display part of the helmet matches the human eye, and makes corresponding choices according to the situation in the simulated event through the various function buttons on the handheld handle, so as to achieve an immersive experience of the simulated events in the integrated pipe corridor, which can help users quickly and conveniently understand the situation in the integrated pipe corridor, and carry out relevant teaching and safety training in the integrated pipe corridor for staff through virtual reality equipment, thereby improving the quality level of teaching and safety training.

[0060] Although the utility model is disclosed as above, the utility model is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the utility model. Therefore, the protection scope of the utility model shall be subject to the scope defined by the claims.

Claims

1. An integrated inspection operation device for an utility tunnel for safety training, characterized in that, The inspection operation device for the utility tunnel cooperates with the utility tunnel. The inspection operation device for the utility tunnel includes: An escape passage which is arranged in the utility tunnel, and one end of the escape passage is provided with an escape opening (322) corresponding to the side wall of the utility tunnel for the target object to move. A conveying pipeline (1) which communicates the inner and outer sides of the utility tunnel, and a conveying space is arranged inside the conveying pipeline (1). A lifting device (10) which is arranged in the conveying space and can perform ascending or descending actions.

2. The inspection operation device for the integrated utility tunnel according to claim 1, wherein Including: A box body (2) which is cooperatively connected with the lifting device (10), and an accommodation space is arranged inside the box body (2).

3. The inspection operation device for the utility tunnel according to claim 2, wherein A sliding device (203) is arranged on the outer side of the box body (2); The inspection operation device for the utility tunnel includes a first track (101) which is laid on one inner wall of the utility tunnel; One end of the conveying pipeline (1) located inside the utility tunnel is an inlet end (103), and one end of the first track (101) is connected to the inlet end (103); Wherein, the sliding device (203) cooperates with the first track (101) to enable the box body (2) to enter the conveying pipeline (1) from the inlet end (103) and then be cooperatively connected with the lifting device (10).

4. The inspection operation device for the utility tunnel according to claim 3, wherein The conveying pipeline (1) includes a first cover body (106) which cooperates with the inlet end (103) to cover the inlet end (103).

5. The inspection operation device for the utility tunnel according to claim 4, wherein The lifting device (10) includes a lifting seat (105) and a second track (102) which cooperate with each other. The second track (102) is arranged on the inner side wall of the conveying pipeline (1), and the lifting seat (105) is movably arranged on the second track (102); Wherein, one end of the conveying pipeline (1) located outside the utility tunnel is an outlet end (104). The two ends of the second track (102) are respectively corresponding to the positions of the inlet end (103) and the outlet end (104), and the lifting seat (105) performs the ascending or descending action along the second track (102).

6. The inspection operation device for an integrated utility tunnel according to claim 5, wherein Including: A controller; A weight detection device is arranged on one side of the lifting seat (105); Wherein, when the weight detection device detects a load-bearing signal generated by the box body (2) on the lifting seat (105), the controller controls the lifting device (10) to perform an ascending action.

7. The inspection operation device for the utility tunnel according to claim 5, wherein The conveying pipeline (1) includes a second cover body (107) which cooperates with the outlet end (104) to cover the outlet end (104).

8. The integrated pipe gallery inspection operation device according to claim 2, characterized in that the box body (2) includes an upper shell (201) and a lower shell (202); slot holes are provided at opposite sides of the lower shell (202); elastic buckles are provided at opposite ends on the same side of the upper shell (201); wherein, when the upper shell (201) and the lower shell (202) are in a mating position, the elastic buckles are in mating connection with the slot holes, and the upper shell (201) is buckled on the lower shell (202) to cover the accommodation space.

9. The integrated pipe gallery inspection operation device according to claim 2, characterized in that the box body (2) is formed by splicing a plurality of vacuum insulation panels.

10. The integrated pipe gallery inspection operation device according to claim 1, characterized in that a waterproof and heat-insulating coating is applied to the side wall of the conveying pipe (1).