Water conveying pipeline supporting system for reservoir water conveying project

By using a multi-segment adjustable pipe support and fixing structure and a combined rotating support structure, the problems of flexibility and vibration reduction in existing support methods are solved, enabling precise installation and stable fixing of pipes of different specifications and shapes, improving water delivery efficiency and extending service life.

CN121497915APending Publication Date: 2026-02-10CHONGQING NO 607 RECONNAISSANCE & SURVEY IND GENERAL CO
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Patent Information

Application Number
CN202511823043.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-05
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Existing water pipeline support methods lack flexibility and adjustability, making it difficult to adapt to pipes of different specifications and shapes. This results in difficulty in ensuring installation accuracy and a lack of effective shock absorption and buffering, affecting water delivery performance and increasing safety hazards.

Method used

It adopts a multi-segment adjustable pipe support and fixing structure, combined with a combined rotary support structure and shock-absorbing spring rods. The pipe can be precisely adjusted and fixed by adjusting the worm gear, worm, and screw screw. It is equipped with angle adjustment components and shock-absorbing devices to adapt to pipes of different specifications and shapes, enhancing the flexibility and stability of the support structure.

Benefits of technology

It enables precise installation of pipes of different specifications and shapes, improves installation accuracy and stability, reduces vibration damage to pipes, extends service life and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a water delivery pipeline support system for reservoir water delivery engineering, which comprises a fixed base, a multi-section adjustable pipeline support fixing structure is mounted on the fixed base, and the multi-section adjustable pipeline support fixing structure is mounted on the fixed base through a combined rotary support structure. The invention relates to the technical field of supporting equipment, by arranging a multi-section adjusting type pipeline supporting and fixing structure, the position of a movable block can be accurately adjusted through the synergistic effect of an adjusting worm gear, an adjusting worm, a spiral lead screw and other components, and then flexible adjustment of the positions of a fixing supporting plate, an equipment fixing plate and a clamping plate is achieved; through the design of the two pairs of angle adjusting assemblies, the angle of the second clamping plate can be conveniently adjusted, the supporting system can adapt to water conveying pipelines of different specifications and shapes, and the service life is prolonged.
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Description

Technical Field

[0001] This invention relates to the field of support equipment technology, specifically to a water pipeline support system for reservoir water conveyance projects. Background Technology

[0002] In reservoir water conveyance projects, the stable installation and effective support of water conveyance pipelines are crucial to ensuring the safe and efficient operation of the entire water conveyance system. Existing pipeline support methods are often quite simple, typically using fixed support structures, which lack flexibility and adjustability. In practical engineering applications, fixed support structures have fixed dimensions and cannot be adjusted according to the size and specifications of the pipeline, resulting in poor applicability. Due to the complex and varied terrain and various deviations that may occur during pipeline laying, fixed supports cannot accurately adjust the installation position and angle of the pipeline according to actual needs, making it difficult to guarantee the accuracy of pipeline installation. This affects the water conveyance effect and may even cause safety hazards due to uneven stress on the pipeline. Furthermore, the shock absorption and buffering performance of the supports is poor. During reservoir water conveyance, the instability of water flow and the influence of external environmental factors will cause the pipeline to vibrate and sway. Traditional supports without effective shock absorption and buffering devices cannot absorb and disperse this vibration energy in time. Over time, this will accelerate the wear and tear of the pipeline and supports, shorten their service life, and increase maintenance costs. Summary of the Invention

[0003] To address the above technical problems, this invention proposes to provide a water conveyance pipeline support system for reservoir water conveyance projects, which can adapt to water conveyance pipelines of different specifications and shapes, and effectively extend the service life of the pipelines.

[0004] Therefore, the present invention adopts the following technical solution: a water conveyance pipeline support system for reservoir water conveyance projects, including a fixed base, on which a multi-section adjustable pipeline support fixing structure is installed, and the multi-section adjustable pipeline support fixing structure is installed on the fixed base through a combined rotating support structure;

[0005] The multi-stage adjustable pipe support and fixing structure includes a support platform, two pairs of mounting slots, two pairs of screw screws, one pair of adjusting chambers, two pairs of adjusting worm gears, one pair of adjusting worms, two pairs of moving blocks, one pair of fixed support plates, several mounting rods, one pair of equipment fixing plates, several shock-absorbing spring support rods, one pair of first clamping plates, two pairs of second clamping plates, and two pairs of angle adjusting components.

[0006] The support platform is mounted on a fixed base via a combined rotating support structure. Two pairs of mounting slots are formed on the upper wall of the support platform. Two pairs of helical screws are movably mounted in the two pairs of mounting slots. A pair of adjustment chambers are formed on the outer side of the two pairs of mounting slots, with the outer end of the helical screws extending through into the adjustment chambers. Two pairs of adjusting worm gears are mounted on the two pairs of helical screws. A pair of adjusting worms are vertically embedded in the pair of adjustment chambers and mesh with the two pairs of adjusting worm gears. Two pairs of moving blocks are movably mounted on the two pairs of helical screws via threaded engagement. A pair of fixed support plates are mounted on the two pairs of moving blocks. A pair of equipment fixing plates are mounted on the inner wall of the pair of fixed support plates via several mounting rods. Several damping spring support rods are mounted on the pair of equipment fixing plates. A pair of first clamping plates are mounted on several damping spring support rods. Two pairs of second clamping plates are movably mounted on the lower end of the pair of first clamping plates. Two pairs of angle adjustment components are mounted on the inner wall of the pair of fixed support plates and connected to the two pairs of second clamping plates.

[0007] Preferably, the fixed base is provided with mounting holes.

[0008] Preferably, a stabilizing support plate is installed on the outer wall of a pair of fixed support plates, and its lower edge is in contact with the support platform.

[0009] Preferably, an adjusting block is provided at the end of a pair of adjusting worm gears.

[0010] Preferably, both pairs of angle adjustment components include a first rotary hinge, a second rotary hinge, an adjusting telescopic rod, and a locking knob;

[0011] The first rotary hinge is installed on the inner wall of the fixed support plate, and the second rotary hinge is installed on the outer wall of the second clamping plate. The two ends of the adjusting telescopic rod are respectively movably installed on the first rotary hinge and the second rotary hinge. The locking knob is tightened and fixed on the adjusting telescopic rod.

[0012] Preferably, the combined rotary support structure includes an insert groove, a rotary seat, a support seat, a first combined bracket, a second combined bracket, two pairs of rotary adjustment grooves, two pairs of positioning locking blocks, and two pairs of fixing pins.

[0013] The mounting groove is located in the middle of the upper wall of the fixed base. The bottom end of the rotating seat is movably installed in the mounting groove. The support seat is installed on the rotating seat. The support platform is installed at the top of the support seat. The first combined bracket is fitted on the fixed base. The second combined bracket is fitted on the outside of the support seat and is combined and fixed with the first combined bracket. Two pairs of rotation adjustment grooves are opened on the second combined bracket. Two pairs of fixing pins pass through two pairs of positioning locking blocks and are combined and locked on the rotating seat.

[0014] Preferably, the support base is equipped with reinforcing ribs.

[0015] Preferably, the first combined bracket and the second combined bracket are fixed together by a fixing block and a locking bolt.

[0016] Preferably, the rotating seat has a combined threaded locking hole.

[0017] The beneficial effects of this invention:

[0018] By setting up a multi-segment adjustable pipe support and fixing structure, and utilizing the synergistic effect of components such as adjusting worm gears, adjusting worms, and screw screws, the position of the moving block can be precisely adjusted, thereby achieving flexible adjustment of the positions of the fixed support plate, equipment fixing plate, and clamping plate. Through the design of two pairs of angle adjustment components, the angle of the second clamping plate can be easily adjusted, making the support system adaptable to water pipelines of different specifications and shapes, further improving the system's versatility and applicability. Regardless of how the cross-sectional shape of the pipeline changes, the angle adjustment components can effectively clamp and fix the pipeline, eliminating the need to customize special supports for different pipelines, greatly saving engineering costs and construction time.

[0019] The installation position and angle of the pipeline can be precisely adjusted according to the actual terrain, pipeline laying deviation and other factors, which greatly improves the accuracy of pipeline installation, ensures that the water pipeline can be installed stably and accurately, effectively improves the water delivery effect, and at the same time reduces the safety hazards caused by uneven stress on the pipeline.

[0020] Several damping spring supports are installed between the equipment fixing plate and the first clamping plate. When the pipeline is subjected to water flow impact or external environmental factors and vibrates, the damping spring supports can absorb and disperse the vibration energy in time, reduce the damage of vibration to the pipeline and support, effectively extend the service life of the pipeline and support, and reduce maintenance costs.

[0021] The modular rotating support structure allows the support platform to be rotated and adjusted on the fixed base, further increasing the flexibility of the system during installation. Construction personnel can adjust the direction of the support platform according to actual needs, making pipeline installation more convenient and faster. At the same time, the modular design of this rotating support structure, through the combination and fixation of the first and second modular brackets, as well as the locking action of the positioning locking block and the fixing pin, ensures that the rotating seat can be stably fixed after adjustment, guaranteeing the stability and reliability of the entire support system. Attached Figure Description

[0022] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0023] Figure 2 This is a schematic diagram of the main structure of the present invention.

[0024] Figure 3 This is a side view of the structure of the present invention.

[0025] Figure 4 This is a top view of the structure of the present invention.

[0026] Figure 5 This is a three-dimensional exploded view of the combined rotary support structure of the present invention.

[0027] Figure 6 This is a top sectional view of the support platform structure of the present invention.

[0028] In the diagram: 1-Fixed base; 2-Support platform; 3-Mounting groove; 4-Screw screw; 5-Adjusting cavity; 6-Adjusting worm gear; 7-Adjusting worm; 8-Moving block; 9-Fixed support plate; 10-Mounting rod; 11-Equipment fixing plate; 12-Shock-absorbing spring support rod; 13-First clamping plate; 14-Second clamping plate; 15-Mounting insertion hole; 16-Stabilizing support plate; 17-Adjusting insertion block; 18-First rotating hinge seat; 19-Second rotating hinge seat; 20-Adjusting telescopic rod; 21-Locking knob; 22-Embedding groove; 23-Rotating seat; 24-Supporting seat; 25-First combined bracket; 26-Second combined bracket; 27-Rotation adjustment groove; 28-Positioning locking block; 29-Fixing pin; 30-Reinforcing rib plate; 31-Fixing block; 32-Locking bolt; 33-Combined threaded lock hole. Detailed Implementation

[0029] Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] like Figures 1-6 As shown, a water conveyance pipeline support system for a reservoir water conveyance project includes a fixed base 1, on which a multi-section adjustable pipeline support fixing structure is installed. The multi-section adjustable pipeline support fixing structure is installed on the fixed base 1 through a combined rotating support structure.

[0031] The multi-stage adjustable pipe support and fixing structure mainly consists of a support platform 2, two pairs of mounting grooves 3, two pairs of spiral screws 4, one pair of adjusting chambers 5, two pairs of adjusting worm gears 6, one pair of adjusting worms 7, two pairs of moving blocks 8, one pair of fixed support plates 9, several mounting rods 10, one pair of equipment fixing plates 11, several shock-absorbing spring support rods 12, one pair of first clamping plates 13, two pairs of second clamping plates 14, and two pairs of angle adjusting components.

[0032] Support platform 2 is mounted on fixed base 1 via a combined rotary support structure. Two pairs of mounting slots 3 are formed on the upper wall of support platform 2. Two pairs of screw rods 4 are movably mounted in the two pairs of mounting slots 3. A pair of adjusting cavities 5 are formed on the outer side of the two pairs of mounting slots 3, with the outer ends of the screw rods 4 extending through into the adjusting cavities 5. Two pairs of adjusting worm gears 6 are mounted on the two pairs of screw rods 4. A pair of adjusting worms 7 are vertically embedded in the pair of adjusting cavities 5 and mesh with the two pairs of adjusting worm gears 6. Two pairs of moving blocks 8 are movably mounted on the two... On the screw 4, a pair of fixed support plates 9 are mounted on two pairs of moving blocks 8, a pair of equipment fixing plates 11 are mounted on the inner wall of the pair of fixed support plates 9 by several mounting rods 10, several damping spring support rods 12 are mounted on the pair of equipment fixing plates 11, a pair of first clamping plates 13 are mounted on several damping spring support rods 12, two pairs of second clamping plates 14 are movably mounted on the lower end position of the pair of first clamping plates 13, and two pairs of angle adjustment components are mounted on the inner wall of the pair of fixed support plates 9 and connected to the two pairs of second clamping plates 14.

[0033] The fixed base 1 is the basic support component of the entire support system. It is provided with mounting holes 15. During installation, a fixing pin is passed through the mounting holes 15 to firmly install the fixed base 1 on the pre-poured concrete foundation, ensuring that the entire support system will not shake or shift during operation. An embedding groove 22 is opened in the middle of the upper wall of the fixed base 1. The bottom end of the rotating seat 23 is movably installed in the embedding groove 22, so that the rotating seat 23 can rotate within the embedding groove 22, providing a basis for subsequent adjustment of the direction of the support platform 2. A support seat 24 is installed on the rotating seat 23. In order to enhance the structural strength of the support seat 24, a reinforcing rib plate 30 is installed on it to ensure that the support seat 24 can stably bear the weight of the upper components and water pipes.

[0034] The first combined bracket 25 is fitted onto the fixed base 1, and the second combined bracket 26 is fitted onto the outside of the support base 24. The first combined bracket 25 and the second combined bracket 26 are then combined and fixed using fixing blocks 31 and locking bolts 32, forming a stable frame structure that further fixes and supports the rotating base 23 and the support base 24. Two pairs of rotation adjustment slots 27 are provided on the second combined bracket 26. When the direction of the support platform 2 needs to be adjusted, the two pairs of fixing pins 29 are loosened, and the rotating base 23 is rotated to a suitable angle, aligning the fixing pins 29 with the rotation adjustment slots 27. Then, the two pairs of positioning locking blocks 28 are combined and locked into the combined threaded locking holes 33 on the rotating base 23, thus fixing and locking the rotating base 23. An anti-slip groove is provided on the top of the second combined bracket 26 to effectively ensure the stability of the locking.

[0035] Two pairs of mounting slots 3 are formed on the upper wall of the support platform 2. Two pairs of spiral screws 4 are movably installed in the two pairs of mounting slots 3, allowing the spiral screws 4 to rotate within the mounting slots 3. A pair of adjusting cavities 5 are formed on the outer side of the two pairs of mounting slots 3, with the outer ends of the spiral screws 4 extending through into the adjusting cavities 5. Two pairs of adjusting worm gears 6 are installed on the two pairs of spiral screws 4, and a pair of adjusting worms 7 are vertically embedded in the pair of adjusting cavities 5, ensuring that the adjusting worms 7 mesh with the two pairs of adjusting worm gears 6.

[0036] To facilitate the operation of the adjusting worm 7 using tools, adjusting blocks 17 are provided at the ends of a pair of adjusting worm 7. Two pairs of moving blocks 8 are movably mounted on two pairs of screw screws 4 through threaded engagement. When the adjusting worm 7 is rotated, the adjusting worm wheel 6 drives the screw screw 4 to rotate, thereby causing the moving blocks 8 to move on the screw screw 4.

[0037] A pair of fixed support plates 9 are installed on two pairs of movable blocks 8. As the movable blocks 8 move, the position of the fixed support plates 9 will change accordingly. To enhance the stability of the fixed support plates 9, a stabilizing support plate 16 is installed on the outer wall of the pair of fixed support plates 9, with its lower edge abutting against the support platform 2. When the fixed support plates 9 move, the stabilizing support plate 16 ensures a stable auxiliary support force. Several mounting rods 10 are used to install a pair of equipment fixing plates 11 on the inner wall of the pair of fixed support plates 9. Several damping spring support rods 12 are installed on the equipment fixing plates 11. When the water pipeline vibrates, the damping spring support rods 12 can absorb and disperse the vibration energy, playing a role in shock absorption and buffering. A pair of first clamping plates 13 are installed on several damping spring support rods 12, and two pairs of second clamping plates 14 are movably installed at the lower end of the pair of first clamping plates 13. Both pairs of angle adjustment components include a first rotating hinge seat 18, a second rotating hinge seat 19, an adjusting telescopic rod 20, and a locking knob 21. The first rotating hinge seat 18 is installed on the inner wall of the fixed support plate 9, and the second rotating hinge seat 19 is installed on the outer wall of the second clamping plate 14. The two ends of the adjusting telescopic rod 20 are respectively movably installed on the first rotating hinge seat 18 and the second rotating hinge seat 19. The locking knob 21 is tightened and fixed on the adjusting telescopic rod 20. By adjusting the length of the telescopic rod 20 and fixing it with the locking knob 21, the angle of the second clamping plate 14 can be adjusted to accommodate water pipes of different specifications and shapes.

[0038] Direction adjustment: When it is necessary to adjust the direction of the water supply pipeline according to the actual installation environment, loosen the two pairs of fixing pins 29, rotate the rotating seat 23, and the rotating seat 23 drives the support seat 24 and the support platform 2 to rotate together. When the support platform 2 rotates to the appropriate angle, the fixing pins 29 are aligned with the rotation adjustment groove 27, and then the two pairs of positioning locking blocks 28 are combined and locked on the rotating seat 23 to complete the direction adjustment.

[0039] Position adjustment: Insert the adjusting plug 17 with a tool, rotate the adjusting worm 7, the adjusting worm 7 drives the adjusting worm wheel 6 to rotate, and then the screw 4 rotates. Since the moving block 8 and the screw 4 are threaded together, the moving block 8 will move on the screw 4, thereby driving the fixed support plate 9, the equipment fixed plate 11, the first clamping plate 13 and the second clamping plate 14 to move together, so as to adjust the position of the water pipeline.

[0040] Support angle adjustment: According to the specifications and shape of the water pipeline, the angle between the second clamping plate 14 and the first clamping plate 13 is changed by adjusting the length of the telescopic rod 20. Then, the locking knob 21 is used to fix the telescopic rod 20 so that the second clamping plate 14 can better fit the water pipeline and achieve a stable clamping of the water pipeline.

[0041] When the water pipeline is subjected to water flow impact or external environmental factors and vibrates, the damping spring support rod 12 will undergo elastic deformation to absorb and disperse vibration energy, reduce the damage of vibration to the water pipeline and support system, and ensure the stable operation of the water pipeline.

[0042] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A water conveyance pipeline support system for a reservoir water conveyance project, comprising a fixed base (1), characterized in that, A multi-section adjustable pipe support fixing structure is installed on the fixed base (1). The multi-section adjustable pipe support fixing structure is installed on the fixed base (1) through a combined rotating support structure. The multi-stage adjustable pipe support and fixing structure includes a support platform (2), two pairs of mounting slots (3), two pairs of screw screws (4), a pair of adjusting chambers (5), two pairs of adjusting worm gears (6), a pair of adjusting worms (7), two pairs of moving blocks (8), a pair of fixed support plates (9), several mounting rods (10), a pair of equipment fixing plates (11), several shock-absorbing spring support rods (12), a pair of first clamping plates (13), two pairs of second clamping plates (14), and two pairs of angle adjusting components; The support platform (2) is mounted on the fixed base (1) through a combined rotating support structure. Two pairs of mounting slots (3) are opened on the upper wall of the support platform (2). Two pairs of spiral screws (4) are movably installed in the two pairs of mounting slots (3). A pair of adjustment chambers (5) are opened on the outside of the two pairs of mounting slots (3) and the outer end of the spiral screws (4) extends through into the adjustment chambers (5). Two pairs of adjusting worm gears (6) are mounted on the two pairs of spiral screws (4). A pair of adjusting worms (7) are vertically embedded in the pair of adjustment chambers (5) and mesh with the two pairs of adjusting worm gears (6). Two pairs of moving blocks (8) are movably installed through threaded engagement. On two pairs of screw screws (4), a pair of fixed support plates (9) are mounted on two pairs of moving blocks (8), a pair of equipment fixing plates (11) are mounted on the inner wall of a pair of fixed support plates (9) by several mounting rods (10), several damping spring support rods (12) are mounted on a pair of equipment fixing plates (11), a pair of first clamping plates (13) are mounted on several damping spring support rods (12), two pairs of second clamping plates (14) are movably mounted on the lower end of a pair of first clamping plates (13), and two pairs of angle adjustment components are mounted on the inner wall of a pair of fixed support plates (9) and connected to the two pairs of second clamping plates (14).

2. The water conveyance pipeline support system for reservoir water conveyance projects according to claim 1, characterized in that, The fixed base (1) is provided with mounting holes (15).

3. The water conveyance pipeline support system for reservoir water conveyance projects according to claim 1, characterized in that, A pair of fixed support plates (9) have a stabilizing support plate (16) installed on the outer wall surface, and its lower edge is in contact with the support platform (2).

4. The water conveyance pipeline support system for a reservoir water conveyance project according to claim 1, characterized in that, An adjusting plug (17) is provided at the end of a pair of adjusting worm gears (7).

5. The water conveyance pipeline support system for reservoir water conveyance projects according to claim 1, characterized in that, Both pairs of angle adjustment components include a first rotating hinge (18), a second rotating hinge (19), an adjusting telescopic rod (20), and a locking knob (21); The first rotating hinge seat (18) is installed on the inner wall of the fixed support plate (9), the second rotating hinge seat (19) is installed on the outer wall of the second clamping plate (14), the two ends of the adjusting telescopic rod (20) are respectively movably installed on the first rotating hinge seat (18) and the second rotating hinge seat (19), and the locking knob (21) is tightened and fixed on the adjusting telescopic rod (20).

6. The water conveyance pipeline support system for a reservoir water conveyance project according to claim 1, characterized in that, The combined rotating support structure includes an insert groove (22), a rotating seat (23), a support seat (24), a first combined bracket (25), a second combined bracket (26), two pairs of rotating adjustment grooves (27), two pairs of positioning locking blocks (28), and two pairs of fixing pins (29); The mounting groove (22) is located in the middle of the upper wall of the fixed base (1). The bottom end of the rotating seat (23) is movably installed in the mounting groove (22). The support seat (24) is installed on the rotating seat (23). The support platform (2) is installed at the top of the support seat (24). The first combined bracket (25) is fitted on the fixed base (1). The second combined bracket (26) is fitted on the outside of the support seat (24) and is fixed together with the first combined bracket (25). Two pairs of rotating adjustment grooves (27) are opened on the second combined bracket (26). Two pairs of fixing pins (29) pass through two pairs of positioning locking blocks (28) and are locked together on the rotating seat (23).

7. A water conveyance pipeline support system for a reservoir water conveyance project according to claim 6, characterized in that, A reinforcing rib (30) is installed on the support base (24).

8. A water conveyance pipeline support system for a reservoir water conveyance project according to claim 6, characterized in that, The first combined bracket (25) and the second combined bracket (26) are fixed together by a fixing block (31) and a locking bolt (32).

9. A water conveyance pipeline support system for a reservoir water conveyance project according to claim 6, characterized in that, The rotating base (23) has a combined threaded locking hole (33).