Intelligent monitoring type super-deep sewage pipeline relocation, transformation and transfer composite well device

By using the trapezoidal sliding parts and insert connecting columns of the intelligent monitoring-type transfer composite well device, the problems of limited volume and excessive pressure at the bottom of the well are solved, realizing efficient diversion and centralized discharge of sewage, ensuring the stability of the urban drainage system and the long service life of the equipment.

CN223853495UActive Publication Date: 2026-01-30NANJING INST OF TOURISM & HOSPITAL
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Patent Information

Application Number
CN202520475095.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-30
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

During the relocation of ultra-deep sewage pipelines, the limited volume of the transfer well and the excessive pressure at the bottom of the well can lead to sewage accumulation and the inability of pumping equipment to handle the situation in a timely manner. This can easily cause overflow, blockage, and equipment damage, affecting the safety of the urban drainage system and the lifespan of the equipment.

Method used

The intelligent monitoring-type transfer composite well device uses a trapezoidal sliding component and insert connecting column design to limit the swaying and backward movement of the moving frame. Combined with the start-up hydraulic cylinder to control the opening and closing of the connecting channel, it realizes the diversion and centralized discharge of sewage. The U-shaped pipe effect is used to lower the water level and prevent leakage and equipment wear.

Benefits of technology

It effectively avoids sewage overflow and blockage, improves equipment stability and service life, ensures the smooth operation of urban drainage systems, reduces maintenance costs and downtime, and guarantees the safety and flexibility of urban drainage systems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an intelligent monitoring type ultra-deep sewage pipeline relocation, transformation and transfer composite well device, which relates to the technical field of transfer well devices and comprises a relocation and transformation storage tank, a transfer main well is arranged on the inner wall of the relocation and transformation storage tank, and an inlet pipe is arranged on the inner wall of the transfer main well. A transfer auxiliary well is adopted to solve the problems that when the sewage discharge amount is increased sharply under extreme weather conditions such as rainstorm, a main sewage pipeline faces huge flow pressure, a large amount of sewage is accumulated in a transfer composite well due to insufficient flow dividing capacity, and pumping equipment is limited in treatment capacity, so that the sewage discharge amount is increased greatly. In the prior art, a transfer composite well is generally designed to be deep and cannot timely pump and convey inrush sewage to other treatment facilities, under the condition, the water level in a main sewage pipeline can rapidly rise, the phenomena of overflow and blockage are extremely easy to cause, and the operation efficiency and safety of an urban drainage system are seriously influenced; however, a new problem that the bottom structure of equipment is extremely easy to damage due to overlarge pressure intensity at the bottom of the well is also brought, so that a sewage leakage accident is caused.
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Description

TECHNICAL FIELD

[0001] The utility model relates to transfer well device technical field especially relates to intelligent monitoring type super deep sewage pipeline relocation transfer composite well device. BACKGROUND

[0002] The super deep sewage pipeline relocation transfer composite well device is a special facility for temporarily relocating deep-buried and large-diameter sewage pipelines during urban underground engineering construction, especially during the construction of large infrastructure such as subways. When the sewage pipeline is located within the planned construction area, in order to not affect the construction and ensure safety, these pipelines must be relocated or temporarily diverted. The transfer well is usually a large vertical shaft structure used to connect the original sewage pipeline and the newly laid temporary pipeline. Then the pumping equipment lifts the sewage from a lower position to a higher position and transports it to the new sewage pipeline.

[0003] In the prior art, the volume of the transfer composite well is limited during the relocation of the super deep main sewage pipeline. When extreme weather conditions such as heavy rain cause a sharp increase in sewage discharge, the main sewage pipeline faces a huge flow pressure. Due to insufficient flow distribution capacity, a large amount of sewage accumulates in the transfer composite well. The pumping equipment cannot timely extract and transport the incoming sewage to other treatment facilities due to limited processing capacity. In this case, the water level in the main sewage pipeline will rise rapidly, which can easily cause overflow and blockage, seriously affecting the operation efficiency and safety of the city's drainage system. In addition, in order to meet the needs of temporary diversion storage, the transfer composite well is usually designed to be deep. Although this increases the water storage capacity to some extent, it also brings a new problem - excessive pressure at the bottom of the well. As the water level continues to rise, the pressure acting on the bottom of the well also increases. Long-term exposure to high pressure can easily damage the bottom structure of the equipment, and even cause sewage leakage accidents. Once a leakage occurs, it will not only pollute the surrounding environment, but also threaten the safety of groundwater quality and public health. SUMMARY

[0004] The utility model aims at solving the shortcomings in the prior art and provides an intelligent monitoring type super deep sewage pipeline relocation transfer composite well device.

[0005] In order to achieve the above object, the utility model discloses the following technical scheme: Intelligent monitoring type ultra -deep sewage pipeline removal and change transfer composite well device, including removal and change storage groove, the removal and change storage groove inner wall is seted up and is transferred main well, the removal and change storage groove inner wall is equipped with the pipe, the removal and change storage groove top is seted up and is connected with the channel, the channel one end is seted up and is transferred auxiliary well, the removal and change storage groove inner wall is fixed with the fixed frame, the fixed frame inner wall one end is fixed with the start hydraulic cylinder, the start hydraulic cylinder one end is fixed with the motion frame, the channel inner wall is rotatably connected with the screw top ring, the screw top ring bottom is fixed with the screw short hollow cylinder, the screw short hollow cylinder perimeter is fixed with the middle connecting plate, the middle connecting plate one side is fixed with a plurality of screw short hollow cylinders, a the screw short hollow cylinder bottom is fixed with the screw bottom connecting column, the screw bottom connecting column bottom is fixed with the screw bottom, the screw bottom surface is rotatably connected with the removal and change storage groove inner wall, the screw top ring inner wall and the screw short hollow cylinder inner wall rotatably connected with the screw solid column, the screw solid column perimeter is fixed with two end connecting plates, the screw solid column top is fixed with the screw top disc, the screw top ring perimeter and the screw top disc perimeter are all fixed with male parts, the male part surface is fixed with the embedded column, the embedded column perimeter and the motion frame groove inner wall contact.

[0006] Preferably, the fixed frame inner wall is provided with a trapezoidal groove, and the two sides of the motion frame are fixed with trapezoidal sliders, and the surface of the trapezoidal slider is slidably connected with the inner wall of the trapezoidal groove. In the prior art, when the fixed frame and the motion frame slide relative to each other during equipment operation, the acceleration of the thrust of the start hydraulic cylinder is relatively fast, which easily causes the end, i.e., the motion frame, to shake. This unstable motion state will cause severe friction and wear between the motion frame, the fixed frame, the male part and other components. Over a long period of time, not only will this affect the stable operation of the equipment, but also will cause premature aging and damage of the parts of the equipment, thereby significantly reducing the service life of the equipment. In addition, the shaking of the motion frame will also cause more serious mechanical failures, such as loosening, deformation and even breaking of parts, further aggravating the damage degree of the equipment, increasing the maintenance cost and downtime, and adversely affecting the production efficiency. To solve these problems, the utility model adopts the installation of trapezoidal sliders, which realizes the sliding fit between the trapezoidal sliders and the trapezoidal groove, limits the motion trajectory of the motion frame, prevents the wear caused by shaking, and achieves the effect of improving the service life of the equipment.

[0007] Preferably, the trapezoidal slide is provided with an embedding groove on one side, a round end is fixed at one end of the trapezoidal slide, a mounting groove is formed in the inner wall of the fixed frame, an embedding piece connecting column is slidably connected to the inner wall of the mounting groove, a limiting suction end disc is fixed at one end of the embedding piece connecting column, a return spring is arranged on the surface of the limiting suction end disc, and an electromagnet is arranged on the inner wall of the migration storage groove.

[0008] Preferably, the two end connecting plates are provided with a fixed disc on one side, a connecting arc is fixed on one side of the fixed disc, and an area increasing plate is fixed at one end of the connecting arc, so that when the two end connecting plates and the middle connecting plate are rotated in place, the area increasing plate is just clamped on one side of the middle connecting plate, preventing the equipment from continuing to rotate, and preventing excessive rotation caused by excessive water pressure, thereby improving the application range of the equipment.

[0009] Preferably, the inner wall bottom of the transfer main well and the inner wall bottom of the transfer auxiliary well are both fixed with puttying triangular rings, which prevents sewage leakage and improves user experience.

[0010] Preferably, the inner wall of the transfer main well is linearly arrayed with a light reflecting corner mirror, so that the worker can simply determine the current water level by observing whether the light reflecting corner mirror reflects light during routine inspection, preventing misjudgment caused by damage to remote sensing equipment, and improving the service life of the equipment.

[0011] Preferably, the area increasing plate is covered with a rubber layer at one end, which prevents damage to components and improves the service life of the equipment.

[0012] Beneficial effects:

[0013] 1、In the prior art, in the process of relocation of ultra-deep main sewage pipeline, the volume of the transfer composite well is particularly limited. When extreme weather conditions such as heavy rain cause a sharp increase in sewage discharge, the main sewage pipeline is under great pressure. Due to insufficient flow capacity, a large amount of sewage accumulates in the transfer composite well, and the pumping equipment cannot timely pump and transport the sewage into other treatment facilities due to limited processing capacity. In this case, the water level in the main sewage pipeline will rise rapidly, which can easily cause overflow and blockage, seriously affecting the operation efficiency and safety of the urban drainage system. In addition, in order to meet the temporary diversion storage requirements, the transfer composite well is usually designed to be deep, which increases the water storage capacity to a certain extent, but also brings new problems - excessive pressure at the bottom of the well. As the water level continues to rise, the pressure acting on the bottom of the well also increases. Long-term exposure to high pressure can easily damage the bottom structure of the equipment, and even cause sewage leakage accidents. Once leakage occurs, it will not only pollute the surrounding environment, but also threaten the safety of groundwater quality and public health. To solve such problems, the utility model adopts the method of opening a transfer auxiliary well to achieve that when the water level is high, the staff can start the hydraulic cylinder to push the moving frame forward to make the embedded column of the protruding part rotate, so that the two end plates and the middle plate rotate together to open the communication channel, thereby reducing the water level in the transfer main well by using the U-shaped pipe effect. During the peak period of sewage discharge, such as heavy rain causing a sharp increase in sewage, the channel can be opened to divert part of the sewage from the main sewage pipeline to a smaller well, and then gradually release according to the carrying capacity of the subsequent pipe network, effectively avoiding overflow and blockage of the main sewage pipeline due to excessive instantaneous flow, and ensuring the stable operation of the entire drainage system. When the sewage volume is small, the channel is closed to allow the sewage to be discharged quickly through the main sewage pipeline, improving the drainage efficiency. The sewage production and discharge rules of different regions in the city are different, such as some regions with large sewage volume during the day and small sewage volume at night, or different sewage discharge characteristics between industrial and residential areas. By opening and closing the channel, the drainage route and method can be adjusted according to the actual situation to better adapt to various working conditions and improve the overall adaptability and flexibility of the drainage system. When maintenance work is carried out, the channel can be closed to allow sewage to be discharged normally through the main sewage pipeline, reducing the impact of maintenance work on the normal operation of the urban drainage system, avoiding large-scale water stop or poor drainage caused by maintenance, and ensuring the normal life of urban residents and the normal operation of the city. Harmful gases such as hydrogen sulfide may be produced in the sewage pipeline. After the "U-shaped pipe" effect is formed, even if gas accumulates in the main sewage pipeline, the gas can enter the smaller well through the channel, facilitating ventilation and reducing the concentration of harmful gases, reducing the harm to construction personnel and maintenance personnel, and improving user experience.

[0014] 2、In the prior art, when the relative sliding occurs between the fixed frame and the moving frame during the operation of the equipment, the rapid acceleration of the thrust of the starting hydraulic cylinder easily causes the end, that is, the moving frame to shake, and this unstable movement state causes the moving frame and the fixed frame, the convex component and other components to rub and wear severely, which not only affects the stable operation of the equipment, but also causes the premature aging and damage of the parts of the equipment, thereby significantly reducing the service life of the equipment, in addition, the shaking of the moving frame also causes more serious mechanical failures, such as loosening, deformation and even breakage of the parts, which further aggravates the damage degree of the equipment, increases the maintenance cost and downtime, and adversely affects the production efficiency, in view of such problems, the utility model adopts the installation of trapezoidal slides to solve the problem, realizes the sliding fit between the trapezoidal slides and the trapezoidal grooves, limits the movement track of the moving frame, prevents the wear caused by the shaking, and achieves the effect of improving the service life of the equipment.

[0015] 3、In the prior art, during the sewage discharge process, the water pressure increases with the increase of the water height, when the sewage quantity is large, the increased water pressure will have a strong pressing effect on the middle connecting plate and the two end connecting plates, and this pressing causes the equipment to lose balance and reverse, thereby causing the moving frame to retreat backward, which seriously affects the sealing and blocking effects of the equipment on the communication channel, causes the sewage to leak, backflow or mix, and further affects the normal operation and treatment effect of the entire sewage treatment system, in view of such problems, the utility model adopts the installation of embedded piece connecting columns to solve the problem, when the staff starts the starting hydraulic cylinder to push the moving frame to close the communication channel, the round end slides in the trapezoidal groove and contacts the embedded piece connecting column, the embedded piece connecting column has an inclined edge, when the inclined edge contacts the round end, the round end gradually compresses the embedded piece connecting column along the inclined edge, so that the embedded piece connecting column is retracted into the fixed frame, when the embedded groove reaches, the reset spring releases the elastic potential energy to make the embedded groove pop out and be embedded in the embedded groove again, so that the trapezoidal slide remains fixed, preventing the rotation, when the staff needs to cancel the fixation, only needs to control the electromagnet to be electrified to generate a magnetic force to pull the limiting suction end disc, the limiting suction end disc is provided with a plurality of lightening grooves on the surface, which facilitates the limiting suction end disc to be controlled by the gravity, so that the trapezoidal slide can move again, and the effect of improving the stability of the equipment is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a sectional view of the utility model;

[0017] Figure 2 It is a sectional view of the transfer auxiliary shaft in the utility model;

[0018] Figure 3 It is a sectional view of the rotating top ring in the utility model;

[0019] Figure 4 It is a three-dimensional structural schematic view of the rotating bottom connecting column in the utility model;

[0020] Figure 5 It is the three-dimensional structure schematic view of trapezoidal slide of the utility model;

[0021] Figure 6 It is the section view of arc connection of the utility model.

[0022] Legend:

[0023] 1, the storage tank is improved; 101, the transfer main shaft; 102, the inlet pipe; 2, the transfer auxiliary shaft; 201, the communication channel; 202, the fixed frame; 203, the starting hydraulic cylinder; 204, the moving frame; 205, the rotating top ring; 206, the rotating short hollow cylinder; 207, the rotating bottom column; 208, the rotating bottom; 209, the rotating solid column; 2010, the rotating top disc; 2011, the convex piece; 2012, the embedded column; 2013, the middle connecting plate; 2014, the two-end connecting plate; 3, the trapezoidal slide; 301, the trapezoidal groove; 4, the embedded groove; 401, the round end; 402, the embedded piece connecting column; 403, the limit suction end disc; 404, the reset spring; 405, the electromagnet; 5, the fixed disc; 501, the arc connection; 502, the face increasing plate; 6, the puttying triangular ring; 7, the reflecting angle mirror. DETAILED DESCRIPTION

[0024] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the following further describes the utility model in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0025] The specific embodiments of the utility model are described below in combination with the drawings. Specific embodiments:

[0027] Reference Figures 1-6, Intelligent monitoring type ultra-deep sewage pipeline relocation transfer composite well device, including relocation storage tank 1, the inner wall of relocation storage tank 1 is provided with transfer main well 101, the inner wall of transfer main well 101 is provided with pipe inlet 102, the top end of transfer main well 101 is provided with connecting channel 201, one end of connecting channel 201 is provided with transfer auxiliary well 2, the inner wall of relocation storage tank 1 is fixedly provided with fixed frame 202, one end of the inner wall of fixed frame 202 is fixedly provided with starting hydraulic cylinder 203, one end of starting hydraulic cylinder 203 is fixedly provided with moving frame 204, the inner wall of connecting channel 201 is rotatably connected with rotating top ring 205, the bottom of rotating top ring 205 is fixedly provided with rotating short hollow cylinder 206, the circumferential surface of rotating short hollow cylinder 206 is fixedly provided with middle connecting plate 2013, a plurality of rotating short hollow cylinders 206 are fixedly provided on one side of middle connecting plate 2013, the bottom of one rotating short hollow cylinder 206 is fixedly provided with rotating bottom connecting column 207, the bottom of rotating bottom connecting column 207 is fixedly provided with rotating bottom 208, the surface of rotating bottom 208 is rotatably connected with the inner wall of relocation storage tank 1, rotating solid column 209 is rotatably connected with the inner wall of rotating short hollow cylinder 206 and the inner wall of rotating top ring 205, the circumferential surface of rotating solid column 209 is fixedly provided with two-end connecting plate 2014, the top of rotating solid column 209 is fixedly provided with rotating top disc 2010, the circumferential surface of rotating top ring 205 and the circumferential surface of rotating top disc 2010 are both fixedly provided with convex piece 2011, the surface of convex piece 2011 is fixedly provided with embedded column 2012, and the circumferential surface of embedded column 2012 is in contact with the inner wall of groove of moving frame 204. The inner wall of fixed frame 202 is provided with trapezoidal groove 301, the two sides of moving frame 204 are both fixedly provided with trapezoidal sliding piece 3, and the surface of trapezoidal sliding piece 3 is slidably connected with the inner wall of trapezoidal groove 301. During the operation of the equipment, when the relative sliding between fixed frame 202 and moving frame 204 occurs, the quick acceleration of the thrust acceleration of starting hydraulic cylinder 203 is easy to cause the end, that is, moving frame 204 to shake, and the unstable motion state can cause the moving frame 204 to rub and wear with fixed frame 202, convex piece 2011 and other components, which can not only affect the stable operation of the equipment, but also cause the premature aging and damage of the components of the equipment, thereby significantly reducing the service life of the equipment, in addition, the shaking of moving frame 204 can also cause more serious mechanical failures, such as part loosening, deformation and even fracture, which can further aggravate the damage degree of the equipment, increase the maintenance cost and downtime, and have an adverse effect on the production efficiency, the installation of trapezoidal sliding piece 3 can solve the problem, the sliding fit between trapezoidal sliding piece 3 and trapezoidal groove 301 can limit the motion track of moving frame 204, prevent the wear caused by shaking, and improve the service life of the equipment.

[0028] The trapezoidal slide 3 is provided with an embedding groove 4 on one side, and a round end 401 is fixed at one end of the trapezoidal slide 3. An installation groove is provided on the inner wall of the fixed frame 202, and an embedding connecting column 402 is slidably connected to the inner wall of the installation groove. The embedding connecting column 402 is fixed at one end with a limiting suction end disc 403, and the limiting suction end disc 403 is provided with a return spring 404 on the surface. An electromagnet 405 is arranged on the inner wall of the migration storage groove 1. During the sewage discharge process, the water pressure will increase with the increase of the water level. When the sewage volume is large, the increased water pressure will have a strong compression effect on the middle connecting plate 2013 and the two end connecting plates 2014. This compression causes the equipment to lose balance and reverse, so that the moving frame 204 retreats backward. The retreat of the moving frame 204 will seriously affect the sealing and blocking effect of the equipment on the communication channel 201, causing sewage leakage, backflow or mixing, and thus affecting the normal operation and treatment effect of the entire sewage treatment system. The installation of the embedding connecting column 402 solves the problem, and when the staff starts the hydraulic cylinder 203 to push the moving frame 204 to close the communication channel 201, the round end 401 slides in the trapezoidal groove 301 and contacts the embedding connecting column 402. The embedding connecting column 402 has an inclined edge, and when the inclined edge contacts the round end 401, the round end 401 gradually compresses the embedding connecting column 402 along the inclined edge, so that the embedding connecting column 402 is retracted into the fixed frame 202. When the embedding groove 4 reaches, the return spring 404 releases the elastic potential energy to make the embedding groove 4 pop out and embed into the embedding groove 4 again, so that the trapezoidal slide 3 remains fixed to prevent rotation. When the staff needs to cancel the fixation, only needs to control the electromagnet 405 to be electrified to generate magnetic force to pull the limiting suction end disc 403. The limiting suction end disc 403 is provided with a plurality of lightening grooves on the surface, which facilitates the control of the limiting suction end disc 403 by gravity, so that the trapezoidal slide 3 can move again, achieving the effect of improving the stability of the equipment. The two end connecting plates 2014 are fixed with a fixed disc 5 on one side, and the fixed disc 5 is fixed with a connecting arc 501 on one side. The connecting arc 501 is fixed with an increased panel 502 at one end, which realizes that when the two end connecting plates 2014 and the middle connecting plate 2013 are rotated in place, the increased panel 502 also just clamps the side of the middle connecting plate 2013, preventing the equipment from continuing to rotate, and preventing excessive rotation caused by excessive water pressure, achieving the effect of improving the application range of the equipment. The inner wall bottom of the transfer main well 101 and the inner wall bottom of the transfer auxiliary well 2 are both fixed with a putty triangular ring 6, which prevents sewage leakage and improves user experience. The inner wall circumferential surface of the transfer main well 101 is linearly arrayed with a reflecting corner mirror 7, which enables the staff to simply determine the current water level by observing whether the reflecting corner mirror 7 reflects light during routine inspection, preventing misjudgment caused by damage to remote sensing equipment, and improving the service life of the equipment. The increased panel 502 is covered with a rubber layer at one end, which prevents damage to components and improves the service life of the equipment.

[0029] The utility model discloses a working principle: when water level is higher, the staff can start through control starting hydraulic cylinder 203, and the forward push movement frame 204 makes it drive the embedded column 2012 of convex piece 2011, and the rotation solid column 209 and the rotation short hollow cylinder 206 rotate simultaneously, and the both ends connecting plate 2014 and the middle connecting plate 2013 rotate and draw close, and open the communication passage 201, thereby utilizing U type pipe effect reduces the sewage level in the transfer main well 101, when the sewage discharge peak period, such as rainstorm leads to sewage quantity sharp increase, can open the passage, and make part of sewage from the main sewage pipe shunt to smaller well, and then gradually release according to the carrying capacity of subsequent pipe network, effectively avoid the main sewage pipe and appear full overflow, blockage and so on because of instantaneous flow too big, ensure the smooth operation of whole drainage system, when the sewage quantity is small, close the passage, and let sewage concentrate through the main sewage pipe and discharge fast, improve drainage efficiency, and the sewage production and discharge law of different regions of city exist difference, such as some areas daytime sewage quantity is big, and night is small, or the sewage discharge characteristics of industrial area and residential area are different, through the opening and closing passage, can adjust the drainage route and mode according to actual conditions, better adapt to various working conditions, improve the overall adaptability and flexibility of drainage system, when carrying out maintenance operation, can close the passage, and make sewage still be able to pass through the main sewage pipe and discharge normally, reduce the influence of maintenance work on the normal operation of city drainage system, avoid the problem such as large area water stop or poor drainage caused by maintenance, guarantee the normal life of urban residents and the normal operation of city, harmful gas such as hydrogen sulfide can be produced in the sewage pipe, after forming the effect of "U type pipe", even if gas accumulation appears in the main sewage pipe, the gas can enter smaller well through the passage, facilitate ventilation and ventilation, reduce harmful gas concentration, reduce the harm to construction personnel and maintenance personnel.

[0030] In the utility model, unless another definite provision and limitation, first feature is on the "upper" or "lower" of second feature can include that first and second features are in direct contact, also can include that first and second features are not in direct contact but are in contact through other features between them. Moreover, first feature is on the "upper", "upper side" and "upper surface" of second feature includes that first feature is directly above and obliquely above second feature, or only indicates that the horizontal height of first feature is higher than second feature. First feature is on the "lower", "lower side" and "under surface" of second feature includes that first feature is directly below and obliquely below second feature, or only indicates that the horizontal height of first feature is less than second feature.

[0031] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A smart monitoring type ultra-deep sewage pipeline relocation transfer composite well device, comprising a relocation storage tank (1), a transfer main well (101) is formed in the inner wall of the relocation storage tank (1), and an inlet pipe (102) is arranged in the inner wall of the transfer main well (101), characterized in that: The top of the transfer main shaft (101) is provided with a connecting channel (201), one end of the connecting channel (201) is provided with a transfer auxiliary shaft (2), the inner wall of the improved storage tank (1) is fixedly provided with a fixed frame (202), one end of the inner wall of the fixed frame (202) is fixedly provided with a starting hydraulic cylinder (203), one end of the starting hydraulic cylinder (203) is fixedly provided with a moving frame (204), the inner wall of the connecting channel (201) is rotatably connected with a rotating top ring (205), the bottom of the rotating top ring (205) is fixedly provided with a rotating short hollow cylinder (206), the circumferential surface of the rotating short hollow cylinder (206) is fixedly provided with a middle connecting plate (2013), one side of the middle connecting plate (2013) is fixedly provided with a plurality of rotating short hollow cylinders (206), the bottom of one rotating short hollow cylinder (206) is fixedly provided with a rotating bottom connecting column (207), the bottom of the rotating bottom connecting column (207) is fixedly provided with a rotating bottom (208), the surface of the rotating bottom (208) is rotatably connected with the inner wall of the improved storage tank (1), the inner wall of the rotating top ring (205) and the inner wall of the rotating short hollow cylinder (206) are rotatably connected with a rotating solid column (209), the circumferential surface of the rotating solid column (209) is fixedly provided with two end connecting plates (2014), the top of the rotating solid column (209) is fixedly provided with a rotating top disc (2010), the circumferential surface of the rotating top ring (205) and the circumferential surface of the rotating top disc (2010) are fixedly provided with convex pieces (2011), the surface of the convex pieces (2011) is fixedly provided with an embedded column (2012), and the circumferential surface of the embedded column (2012) is in contact with the inner wall of the groove of the moving frame (204). ​ 2. The intelligent monitoring type composite well device for transfer of ultra-deep sewage pipeline reconstruction according to claim 1, characterized in that: The inner wall of the fixed frame (202) is provided with a trapezoidal groove (301), and the two sides of the moving frame (204) are fixedly provided with trapezoidal sliding pieces (3), and the surface of the trapezoidal sliding pieces (3) is slidably connected with the inner wall of the trapezoidal groove (301).

3. The intelligent monitoring type composite well device for transfer of ultra-deep sewage pipeline reconstruction according to claim 2, characterized in that: One side of the trapezoidal sliding piece (3) is provided with an embedded groove (4), one end of the trapezoidal sliding piece (3) is fixedly provided with a round end (401), the inner wall of the fixed frame (202) is provided with a mounting groove, the inner wall of the mounting groove is slidably connected with an embedded piece connecting column (402), one end of the embedded piece connecting column (402) is fixedly provided with a limit suction end disc (403), the surface of the limit suction end disc (403) is provided with a return spring (404), and the inner wall of the improved storage tank (1) is provided with an electromagnet (405).

4. The intelligent monitoring type composite well device for transfer of ultra-deep sewage pipeline reconstruction according to claim 1, characterized in that: One side of the two end connecting plates (2014) is fixedly provided with a fixed disc (5), one side of the fixed disc (5) is fixedly provided with a connecting arc (501), one end of the connecting arc (501) is fixedly provided with an area increasing plate (502).

5. The intelligent monitoring type composite well device for transfer of ultra-deep sewage pipeline reconstruction according to claim 1, characterized in that: The inner wall bottom of the transfer main shaft (101) and the inner wall bottom of the transfer auxiliary shaft (2) are fixedly provided with puttying triangular rings (6). 6.The intelligent monitoring type composite well device for transfer of ultra-deep sewage pipeline reconstruction, according to claim 1, characterized in that: The circumferential surface of the inner wall of the transfer main shaft (101) is linearly arrayed with reflecting angle mirrors (7).

7. The intelligent monitoring type composite well device for transfer of ultra-deep sewage pipeline reconstruction according to claim 4, characterized in that: One end of the area increasing plate (502) is covered with a rubber layer.