Buffer device and system based on water conveying pipeline capable of improving water conveying efficiency

By installing a buffer device between the water pipeline and the ground, using radial and axial buffer components to reduce vibration, and combining ribs to guide the water flow, the problems of vibration and low efficiency of the water pipeline are solved, and a stable and efficient water delivery effect is achieved.

CN223360119UActive Publication Date: 2025-09-19LIAOSHUI GROUP WATER CONSERVANCY & ELECTRIC POWER DEVELOPMENT (DANDONG) CO LTD
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Patent Information

Application Number
CN202423031723.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-09-19
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Existing water pipelines generate vibration and friction resistance when water flows, resulting in low water delivery efficiency and an inability to effectively guide the water flow.

Method used

It adopts a combination of pipe mounting seat, ground mounting seat and buffer mechanism. The radial and axial buffer components are adsorbed between the metal cylinder and the metal ring baffle to buffer the vibration between the water pipe and the ground, and guide the water flow through the ribs.

Benefits of technology

The vibration amplitude of the water pipeline is reduced, the water delivery efficiency is improved, the water flow is guided, and the stability and efficiency of the water pipeline are enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a buffer device and system based on a water delivery pipeline capable of improving the water delivery efficiency, and the buffer device based on the water delivery pipeline capable of improving the water delivery efficiency comprises a pipeline installation seat, a ground installation seat and a buffer mechanism, the utility model further discloses a buffering system based on the water conveying pipeline capable of improving the water conveying efficiency. The buffering system comprises the water conveying pipeline capable of improving the water conveying efficiency and the buffering device based on the water conveying pipeline capable of improving the water conveying efficiency. The vibration amplitude of the water conveying pipeline can be reduced, meanwhile, the water flow in the water conveying pipeline can be guided, and the water conveying efficiency of the water conveying pipeline is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of water delivery pipelines, and in particular to a buffer device and system based on a water delivery pipeline capable of improving water delivery efficiency. Background Art

[0002] At present, when water flows in a water pipeline, flow resistance and friction resistance are generated, which leads to the increase of the shear force and mutual force of the water flow, thereby causing the water pipeline to vibrate.

[0003] In addition, the existing water pipelines cannot guide the water flow therein, and the water delivery efficiency is relatively low. Utility Model Content

[0004] In response to the technical problems raised above, a buffer device and system for a water pipeline is provided that can improve water delivery efficiency. This utility model can reduce the vibration amplitude of the water pipeline and at the same time guide the water flow within the water pipeline, thereby improving the water delivery efficiency of the water pipeline. The technical means adopted by this utility model are as follows:

[0005] In a first aspect, a buffer device based on a water pipeline that can improve water delivery efficiency includes a pipeline mounting seat, a ground mounting seat and a buffer mechanism; the pipeline mounting seat is detachably mounted on the water pipeline; the ground mounting seat is detachably mounted on the ground; the buffer mechanism is detachably mounted between the pipeline mounting seat and the ground mounting seat; when the pipeline mounting seat is mounted on the water pipeline, the ground mounting seat is mounted on the ground, and the buffer mechanism is mounted between the pipeline mounting seat and the ground mounting seat, the buffer mechanism can buffer vibrations between the water pipeline and the ground.

[0006] Furthermore, the pipe mounting seat includes a first metal cylinder and an elastic cylinder; the inner diameter of the first metal cylinder is larger than the outer diameter of the water pipe; the elastic cylinder is coaxially mounted on the inner wall of the first metal cylinder, and the inner diameter of the elastic cylinder is smaller than the outer diameter of the water pipe; when the pipe mounting seat is installed on the water pipe, the first metal cylinder is coaxially sleeved outside the water pipe, and the inner wall of the elastic cylinder is in contact with the outer wall of the water pipe.

[0007] Furthermore, the first metal cylinder is divided into several first metal cylinder segments along its circumferential direction, and the elastic cylinder is divided into several elastic cylinder segments along its circumferential direction; the number of the first metal cylinder segments is the same as the number of the elastic cylinder segments, and the several elastic cylinder segments are installed one-to-one on the inner walls of the several first metal cylinder segments to form several pipe mounting seat segments; the several pipe mounting seat segments can be connected end to end along their circumferential direction to form the pipe mounting seat.

[0008] Furthermore, the ground mounting seat includes a second metal cylinder, and metal annular baffles are coaxially mounted on both ends of the second metal cylinder; the inner diameter of the second metal cylinder is larger than the outer diameter of the first metal cylinder; the inner diameter of the metal annular baffle is larger than the outer diameter of the water pipe and smaller than the outer diameter of the first metal cylinder; when the pipe mounting seat is installed on the water pipe and the ground mounting seat is installed on the ground, the second metal cylinder is coaxially sleeved outside the first metal cylinder, and the first metal cylinder is located between the metal annular baffles on both ends of the second metal cylinder.

[0009] Furthermore, the second metal cylinder is divided into several second metal cylinder segments along its circumferential direction; the several second metal cylinder segments can be connected end to end along its circumferential direction to form the second metal cylinder, and the metal ring baffles are detachably mounted on both ends of the second metal cylinder.

[0010] Furthermore, the buffer mechanism includes several radial buffer components; the radial buffer component includes a radial telescopic rod, a first radial mounting magnet, a second radial mounting magnet and a radial buffer spring; the first radial mounting magnet is installed on one end of the radial telescopic rod and can fit with the outer wall of the first metal cylinder; the second radial mounting magnet is installed on the other end of the radial telescopic rod and can fit with the inner wall of the second metal cylinder; the radial buffer spring is coaxially sleeved outside the radial telescopic rod; when the pipe mounting seat is installed on the water supply pipe, the ground mounting seat is installed on the ground and the buffer mechanism is installed between the pipe mounting seat and the ground mounting seat, the several radial buffer components are evenly distributed and installed between the first metal cylinder and the second metal cylinder, the axial direction of the radial telescopic rod is consistent with the radial direction of the first metal cylinder, the first radial mounting magnet fits on the outer wall of the first metal cylinder, and the second radial mounting magnet fits on the inner wall of the second metal cylinder.

[0011] Furthermore, the buffer mechanism includes several axial buffer components; the axial buffer component includes an axial telescopic rod, a first axial mounting magnet, a second axial mounting magnet and an axial buffer spring; the first axial mounting magnet is installed on one end of the axial telescopic rod and can be fitted with one end of the first metal cylinder; the second axial mounting magnet is installed on the other end of the axial telescopic rod and can be fitted with the side of the metal ring baffle opposite to one end of the first metal cylinder; the axial buffer spring is coaxially sleeved outside the axial telescopic rod; when the pipe mounting seat is installed on the water supply pipe, the ground mounting seat is installed on the ground and the buffer mechanism is installed between the pipe mounting seat and the ground mounting seat, the several axial buffer components are evenly distributed and installed between the first metal cylinder and the metal ring baffle, the axial direction of the axial telescopic rod is consistent with the axial direction of the first metal cylinder, the first axial mounting magnet is fitted on one end of the first metal cylinder, and the second axial mounting magnet is fitted on the side of the metal ring baffle opposite to one end of the first metal cylinder.

[0012] In the second aspect, a buffer system based on a water pipeline capable of improving water transmission efficiency comprises a water pipeline capable of improving water transmission efficiency, and also comprises a buffer device based on a water pipeline capable of improving water transmission efficiency as described in any one of the first aspects; the pipe mounting seat in the buffer device based on a water pipeline capable of improving water transmission efficiency is installed on the water pipeline; the ground mounting seat in the buffer device based on a water pipeline capable of improving water transmission efficiency is installed on the ground; and the buffer mechanism in the buffer device based on a water pipeline capable of improving water transmission efficiency is installed between the pipe mounting seat and the ground mounting seat.

[0013] Furthermore, the water supply pipeline that can improve water supply efficiency includes a pipeline body and a plurality of ribs; the axial direction of the ribs is consistent with the axial direction of the pipeline body, and the plurality of ribs are evenly distributed along the circumferential direction of the pipeline body and installed on the inner side wall of the pipeline body.

[0014] The utility model has the following advantages:

[0015] 1. In the present invention, the pipe mounting base is installed on the water pipe, the ground mounting base is installed on the ground, and the buffer mechanism is installed between the pipe mounting base and the ground mounting base. At this time, the buffer mechanism can buffer the vibration between the water pipe and the ground, reducing the vibration amplitude of the water pipe; at the same time, the several ribs in the pipe body can guide the water flow in the pipe body, thereby improving the water delivery efficiency.

[0016] 2. In the present invention, the first metal cylinder in the pipe mounting seat is tightly fitted to the outer wall of the water pipe through the elastic cylinder, so that the first metal cylinder will not be easily displaced relative to the water pipe. At the same time, the elastic cylinder can also buffer the vibration of the water pipe.

[0017] 3. In the present invention, a plurality of pipe mounting seat segments can be connected end to end along the circumferential direction to form a pipe mounting seat, so that the pipe mounting seat can be more conveniently installed on the outer wall of the water pipeline.

[0018] 4. In the present invention, a plurality of second metal cylinder segments are first connected end to end along the circumferential direction to form a second metal cylinder, and then metal annular baffles are installed on both ends of the second metal cylinder, so that the ground mounting base can be more conveniently installed outside the pipe mounting base.

[0019] 5. In the present invention, a number of radial buffer components are evenly distributed and installed between the first metal cylinder and the second metal cylinder. The two ends of the radial telescopic rod are respectively adsorbed on the outer wall of the first metal cylinder and the inner wall of the second metal cylinder through the first radially mounted magnet and the second radially mounted magnet. The radial buffer spring coaxially sleeved outside the radial telescopic rod can buffer the radial vibration between the water pipeline and the ground, so that the buffer mechanism can buffer the radial vibration between the water pipeline and the ground.

[0020] 6. In the present invention, a number of axial buffer components are evenly distributed and installed between the first metal cylinder and the metal annular baffle. The two ends of the axial telescopic rod are respectively adsorbed on one end of the first metal cylinder and the side of the metal annular baffle opposite to the one end of the first metal cylinder through the first axial mounting magnet and the second axial mounting magnet. The axial buffer spring coaxially sleeved outside the axial telescopic rod can buffer the axial vibration between the water pipeline and the ground, so that the buffer mechanism can buffer the axial vibration between the water pipeline and the ground. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0022] Figure 1 This is a front view of a buffer device based on a water pipeline capable of improving water delivery efficiency in Example 1 of the present utility model;

[0023] Figure 2 This is a left side view of a buffer device based on a water delivery pipeline capable of improving water delivery efficiency in Example 1 of the present utility model;

[0024] Figure 3 This is a cross-sectional view of a buffer device based on a water pipeline capable of improving water delivery efficiency in Example 1 of the present utility model;

[0025] Figure 4 This is an overall structural diagram of the radial buffer assembly in Example 1 of the present utility model;

[0026] Figure 5 This is an overall structural diagram of the axial buffer assembly in Example 1 of the present utility model;

[0027] Figure 6 This is a front view of a buffer system based on a water pipeline capable of improving water delivery efficiency in Example 2 of the present utility model;

[0028] Figure 7 This is an overall structural diagram of a water delivery pipeline capable of improving water delivery efficiency in Example 2 of the present utility model;

[0029] In the figure: 1-ground mounting seat; 2-pipe mounting seat; 3-buffer mechanism; 4-water supply pipeline; 101-second metal cylinder; 102-base; 103-metal ring baffle; 201-first metal cylinder; 202-elastic cylinder; 301-radial buffer assembly; 302-axial buffer assembly; 401-pipe body; 402-rib; 1011-second metal cylinder section; 2011-first metal cylinder section; 2021-elastic cylinder section; 3011-second radial mounting magnet; 3012-radial buffer spring; 3013-radial telescopic rod; 3014-first radial mounting magnet; 3021-first axial mounting magnet; 3022-axial buffer spring; 3023-axial telescopic rod; 3024-second axial mounting magnet. DETAILED DESCRIPTION

[0030] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0031] Example 1:

[0032] like Figures 1 to 5As shown, a buffer device based on a water pipeline that can improve water delivery efficiency includes a pipe mounting seat 2, a ground mounting seat 1 and a buffer mechanism 3; the pipe mounting seat 2 is detachably mounted on the water pipeline 4; the ground mounting seat 1 is detachably mounted on the ground; the buffer mechanism 3 is detachably mounted between the pipe mounting seat 2 and the ground mounting seat 1; when the pipe mounting seat 2 is mounted on the water pipeline 4, the ground mounting seat 1 is mounted on the ground and the buffer mechanism 3 is mounted between the pipe mounting seat 2 and the ground mounting seat 1, the buffer mechanism 3 can buffer the vibration between the water pipeline 4 and the ground.

[0033] In this embodiment, the pipe mounting base 2 includes a first metal cylinder 201 and an elastic cylinder 202; the inner diameter of the first metal cylinder 201 is larger than the outer diameter of the water pipe 4; the elastic cylinder 202 is coaxially mounted on the inner wall of the first metal cylinder 201, and the inner diameter of the elastic cylinder 202 is smaller than the outer diameter of the water pipe 4; when the pipe mounting base 2 is mounted on the water pipe 4, the first metal cylinder 201 is coaxially sleeved outside the water pipe 4, and the inner wall of the elastic cylinder 202 is in contact with the outer wall of the water pipe 4.

[0034] In this embodiment, the first metal cylinder 201 is evenly divided into several first metal cylinder segments 2011 along its circumferential direction, and the elastic cylinder 202 is evenly divided into several elastic cylinder segments 2021 along its circumferential direction; the first metal cylinder segments 2011 and the elastic cylinder segments 2021 are the same in number, and the several elastic cylinder segments 2021 are installed one-to-one on the inner walls of several first metal cylinder segments 2011 to form several pipe mounting seat 2 sections; the several pipe mounting seat 2 sections can be connected end to end along their circumferential direction to form the pipe mounting seat 2.

[0035] Specifically, there are two of each of the first metal cylindrical segment 2011, the elastic cylindrical segment 2021 and the pipe mounting seat 2, and first connecting platforms are installed at both ends of the circumferential direction of the first metal cylindrical segment 2011. Any two adjacent first connecting platforms are connected together through a first screw hole and a first screw.

[0036] In this embodiment, the ground mounting base 1 includes a second metal cylinder 101, and metal annular baffles 103 are coaxially mounted on both ends of the second metal cylinder 101; the inner diameter of the second metal cylinder 101 is larger than the outer diameter of the first metal cylinder 201; the inner diameter of the metal annular baffle 103 is larger than the outer diameter of the water pipe 4 and smaller than the outer diameter of the first metal cylinder 201; when the pipe mounting base 2 is installed on the water pipe 4 and the ground mounting base 1 is installed on the ground, the second metal cylinder 101 is coaxially sleeved outside the first metal cylinder 201, and the first metal cylinder 201 is located between the metal annular baffles 103 on both ends of the second metal cylinder 101.

[0037] In this embodiment, the second metal cylinder 101 is divided into a plurality of second metal cylinder segments 1011 along its circumferential direction; the plurality of second metal cylinder segments 1011 can be connected end to end along its circumferential direction to form the second metal cylinder 101, and the metal ring baffles 103 can be detachably installed on both ends of the second metal cylinder 101.

[0038] Specifically, there are two second metal cylindrical sections 1011, and second connecting platforms are installed at both ends of the second metal cylindrical section 1011 in the circumferential direction, and any two adjacent second connecting platforms are connected together through a second screw hole and a second screw; a third connecting platform is installed on the outer wall of the metal ring baffle 103, and the third connecting platform is connected to one end of the second metal cylinder 101 through a third screw hole and a third screw.

[0039] In addition, a base 102 is installed on the second metal cylindrical section 1011, and the base 102 is connected to the ground through a fourth screw hole and a fourth screw rod.

[0040] In this embodiment, the buffer mechanism 3 includes a plurality of radial buffer components 301; the radial buffer component 301 includes a radial telescopic rod 3013, a first radially mounted magnet 3014, a second radially mounted magnet 3011 and a radial buffer spring 3012; the first radially mounted magnet 3014 is mounted on one end of the radial telescopic rod 3013 and can fit with the outer wall of the first metal cylinder 201; the second radially mounted magnet 3011 is mounted on the other end of the radial telescopic rod 3013 and can fit with the inner wall of the second metal cylinder 101; the radial buffer spring 3012 is coaxially sleeved on the radial Outside the telescopic rod 3013; when the pipe mounting seat 2 is installed on the water pipe 4, the ground mounting seat 1 is installed on the ground and the buffer mechanism 3 is installed between the pipe mounting seat 2 and the ground mounting seat 1, the plurality of radial buffer assemblies 301 are evenly distributed and installed between the first metal cylinder 201 and the second metal cylinder 101, the axial direction of the radial telescopic rod 3013 is consistent with the radial direction of the first metal cylinder 201, the first radial mounting magnet 3014 is attached to the outer wall of the first metal cylinder 201, and the second radial mounting magnet 3011 is attached to the inner wall of the second metal cylinder 101.

[0041] Specifically, the buffer mechanism 3 includes three radial buffer mechanisms 3, which are evenly distributed along the axial direction of the first metal cylinder 201 and installed between the first metal cylinder 201 and the second metal cylinder 101; the radial buffer mechanism 3 includes four radial buffer components 301, which are evenly distributed along the circumferential direction of the first metal cylinder 201 and installed between the first metal cylinder 201 and the second metal cylinder 101.

[0042] In this embodiment, the buffer mechanism 3 includes a plurality of axial buffer components 302; the axial buffer component 302 includes an axial telescopic rod 3023, a first axially mounted magnet 3021, a second axially mounted magnet 3024 and an axial buffer spring 3022; the first axially mounted magnet 3021 is mounted on one end of the axial telescopic rod 3023 and can be fitted with one end of the first metal cylinder 201; the second axially mounted magnet 3024 is mounted on the other end of the axial telescopic rod 3023 and can be fitted with the side of the metal annular baffle 103 opposite to one end of the first metal cylinder 201; the axial buffer spring 3022 is coaxially sleeved on the axial Outside the telescopic rod 3023; when the pipe mounting seat 2 is installed on the water supply pipe 4, the ground mounting seat 1 is installed on the ground and the buffer mechanism 3 is installed between the pipe mounting seat 2 and the ground mounting seat 1, the several axial buffer assemblies 302 are evenly distributed and installed between the first metal cylinder 201 and the metal ring baffle 103, the axial direction of the axial telescopic rod 3023 is consistent with the axial direction of the first metal cylinder 201, the first axial mounting magnet 3021 is attached to one end of the first metal cylinder 201, and the second axial mounting magnet 3024 is attached to the side of the metal ring baffle 103 opposite to one end of the first metal cylinder 201.

[0043] Specifically, an axial buffer mechanism 3 is provided between one end of the first metal cylinder 201 and the metal annular baffle 103 corresponding to the end, and another axial buffer mechanism 3 is provided between the other end of the first metal cylinder 201 and the metal annular baffle 103 corresponding to the end; the axial buffer mechanism 3 includes four axial buffer components 302, and the four axial buffer components 302 are evenly distributed along the circumferential direction of the first metal cylinder 201 and are installed between the first metal cylinder 201 and the metal annular baffle 103.

[0044] Example 2:

[0045] like Figures 6 and 7As shown, a buffer system based on a water pipeline capable of improving water transmission efficiency includes a water pipeline 4 capable of improving water transmission efficiency, and also includes a buffer device based on a water pipeline capable of improving water transmission efficiency as described in any one of Example 1; the pipe mounting seat 2 in the buffer device based on a water pipeline capable of improving water transmission efficiency is installed on the water pipeline 4; the ground mounting seat 1 in the buffer device based on a water pipeline capable of improving water transmission efficiency is installed on the ground; the buffer mechanism 3 in the buffer device based on a water pipeline capable of improving water transmission efficiency is installed between the pipe mounting seat 2 and the ground mounting seat 1.

[0046] In this embodiment, the water supply pipeline 4 that can improve the water supply efficiency includes a pipeline body 401 and a plurality of ribs 402; the axial direction of the ribs 402 is consistent with the axial direction of the pipeline body 401, and the plurality of ribs 402 are evenly distributed along the circumferential direction of the pipeline body 401 and are installed on the inner wall of the pipeline body 401.

[0047] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A buffer device for a water pipeline capable of improving water delivery efficiency, characterized in that: It comprises a pipe mounting seat (2), a ground mounting seat (1) and a buffer mechanism (3); The pipe mounting seat (2) is detachably mounted on the water delivery pipe (4); The ground mounting base (1) is detachably mounted on the ground; The buffer mechanism (3) is detachably mounted between the pipe mounting seat (2) and the ground mounting seat (1); When the pipe mounting seat (2) is mounted on the water pipe (4), the ground mounting seat (1) is mounted on the ground, and the buffer mechanism (3) is mounted between the pipe mounting seat (2) and the ground mounting seat (1), the buffer mechanism (3) can buffer vibrations between the water pipe (4) and the ground.

2. A buffer device for a water pipeline capable of improving water delivery efficiency according to claim 1, characterized in that: The pipe mounting seat (2) comprises a first metal cylinder (201) and an elastic cylinder (202); The inner diameter of the first metal cylinder (201) is greater than the outer diameter of the water pipe (4); The elastic cylinder (202) is coaxially mounted on the inner wall of the first metal cylinder (201), and the inner diameter of the elastic cylinder (202) is smaller than the outer diameter of the water pipe (4); When the pipe mounting seat (2) is mounted on the water pipe (4), the first metal cylinder (201) is coaxially sleeved outside the water pipe (4), and the inner side wall of the elastic cylinder (202) is in contact with the outer side wall of the water pipe (4).

3. A buffer device for a water pipeline capable of improving water delivery efficiency according to claim 2, characterized in that: The first metal cylinder (201) is divided into a plurality of first metal cylinder segments (2011) along its circumferential direction, and the elastic cylinder (202) is divided into a plurality of elastic cylinder segments (2021) along its circumferential direction; The number of the first metal cylindrical segments (2011) and the elastic cylindrical segments (2021) is the same, and the plurality of elastic cylindrical segments (2021) are mounted one-to-one on the inner side walls of the plurality of first metal cylindrical segments (2011) to form a plurality of pipe mounting seat (2) segments; The plurality of pipe mounting seat (2) segments can be connected end to end along their circumferential direction to form the pipe mounting seat (2).

4. The buffer device for a water pipeline capable of improving water delivery efficiency according to claim 2, characterized in that: The ground mounting seat (1) comprises a second metal cylinder (101), and metal annular baffles (103) are coaxially mounted on both ends of the second metal cylinder (101); The inner diameter of the second metal cylinder (101) is greater than the outer diameter of the first metal cylinder (201); The inner diameter of the metal annular baffle (103) is larger than the outer diameter of the water pipe (4) and smaller than the outer diameter of the first metal cylinder (201); When the pipe mounting seat (2) is mounted on the water pipe (4) and the ground mounting seat (1) is mounted on the ground, the second metal cylinder (101) is coaxially sleeved outside the first metal cylinder (201), and the first metal cylinder (201) is located between the metal annular baffles (103) on both ends of the second metal cylinder (101).

5. The buffer device for a water pipeline capable of improving water delivery efficiency according to claim 4, characterized in that: The second metal cylinder (101) is divided into a plurality of second metal cylinder segments (1011) along its circumferential direction; The plurality of second metal cylinder segments (1011) can be connected end to end along the circumferential direction to form the second metal cylinder (101), and the metal annular baffles (103) can be detachably mounted on both ends of the second metal cylinder (101).

6. The buffer device for a water pipeline capable of improving water delivery efficiency according to claim 4, characterized in that: The buffer mechanism (3) comprises a plurality of radial buffer components (301); The radial buffer assembly (301) comprises a radial telescopic rod (3013), a first radially mounted magnet (3014), a second radially mounted magnet (3011), and a radial buffer spring (3012); The first radially mounted magnet (3014) is mounted on one end of the radial telescopic rod (3013) and can be fitted with the outer side wall of the first metal cylinder (201); The second radially mounted magnet (3011) is mounted on the other end of the radial telescopic rod (3013) and can fit against the inner wall of the second metal cylinder (101); The radial buffer spring (3012) is coaxially sleeved outside the radial telescopic rod (3013); When the pipe mounting seat (2) is mounted on the water pipe (4), the ground mounting seat (1) is mounted on the ground, and the buffer mechanism (3) is mounted between the pipe mounting seat (2) and the ground mounting seat (1), the plurality of radial buffer assemblies (301) are evenly distributed and mounted between the first metal cylinder (201) and the second metal cylinder (101), the axial direction of the radial telescopic rod (3013) is consistent with the radial direction of the first metal cylinder (201), the first radial mounting magnet (3014) is attached to the outer side wall of the first metal cylinder (201), and the second radial mounting magnet (3011) is attached to the inner side wall of the second metal cylinder (101).

7. The buffer device for a water pipeline capable of improving water delivery efficiency according to claim 4, characterized in that: The buffer mechanism (3) includes a plurality of axial buffer components (302); The axial buffer assembly (302) comprises an axial telescopic rod (3023), a first axially mounted magnet (3021), a second axially mounted magnet (3024), and an axial buffer spring (3022); The first axially mounted magnet (3021) is mounted on one end of the axial telescopic rod (3023) and can be fitted with one end of the first metal cylinder (201); The second axially mounted magnet (3024) is mounted on the other end of the axial telescopic rod (3023) and can be fitted with a side of the metal annular baffle (103) opposite to one end of the first metal cylinder (201); The axial buffer spring (3022) is coaxially sleeved outside the axial telescopic rod (3023); When the pipe mounting seat (2) is mounted on the water pipe (4), the ground mounting seat (1) is mounted on the ground, and the buffer mechanism (3) is mounted between the pipe mounting seat (2) and the ground mounting seat (1), the plurality of axial buffer assemblies (302) are evenly distributed and mounted between the first metal cylinder (201) and the metal annular baffle (103), the axial direction of the axial telescopic rod (3023) is consistent with the axial direction of the first metal cylinder (201), the first axial mounting magnet (3021) is attached to one end of the first metal cylinder (201), and the second axial mounting magnet (3024) is attached to the side of the metal annular baffle (103) opposite to one end of the first metal cylinder (201).

8. A buffer system based on a water pipeline that can improve water delivery efficiency, characterized in that: It comprises a water delivery pipeline (4) capable of improving water delivery efficiency, and further comprises a buffer device based on the water delivery pipeline capable of improving water delivery efficiency according to any one of claims 1 to 7; The pipe mounting seat (2) in the buffer device based on the water pipe capable of improving water delivery efficiency is mounted on the water pipe (4); The ground mounting seat (1) in the buffer device based on the water pipeline capable of improving water delivery efficiency is installed on the ground; The buffer mechanism (3) in the buffer device based on the water delivery pipeline capable of improving water delivery efficiency is installed between the pipeline mounting seat (2) and the ground mounting seat (1).

9. The buffer system based on a water pipeline capable of improving water delivery efficiency according to claim 8, characterized in that: The water delivery pipeline (4) capable of improving water delivery efficiency comprises a pipeline body (401) and a plurality of ribs (402); The axial direction of the ribs (402) is consistent with the axial direction of the pipe body (401), and the plurality of ribs (402) are evenly distributed along the circumferential direction of the pipe body (401) and are installed on the inner side wall of the pipe body (401).