CN110886902A - Natural gas conveying pipeline engineering laying and building method - Google Patents

Natural gas conveying pipeline engineering laying and building method Download PDF

Info

Publication number
CN110886902A
CN110886902A CN201911214785.1A CN201911214785A CN110886902A CN 110886902 A CN110886902 A CN 110886902A CN 201911214785 A CN201911214785 A CN 201911214785A CN 110886902 A CN110886902 A CN 110886902A
Authority
CN
China
Prior art keywords
foundation pit
natural gas
rope
fixed
base
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201911214785.1A
Other languages
Chinese (zh)
Other versions
CN110886902B (en
Inventor
陈小风
李西华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Foshan huaran Energy Construction Co., Ltd
Original Assignee
陈小风
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 陈小风 filed Critical 陈小风
Priority to CN201911214785.1A priority Critical patent/CN110886902B/en
Publication of CN110886902A publication Critical patent/CN110886902A/en
Application granted granted Critical
Publication of CN110886902B publication Critical patent/CN110886902B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L1/00Laying or reclaiming pipes; Repairing or joining pipes on or under water
    • F16L1/024Laying or reclaiming pipes on land, e.g. above the ground
    • F16L1/028Laying or reclaiming pipes on land, e.g. above the ground in the ground
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L1/00Laying or reclaiming pipes; Repairing or joining pipes on or under water
    • F16L1/024Laying or reclaiming pipes on land, e.g. above the ground
    • F16L1/06Accessories therefor, e.g. anchors

Abstract

The invention discloses a natural gas conveying pipeline engineering laying and establishing method, which relates to the technical field of engineering construction and comprises the following steps: s1, excavating a foundation pit, excavating the foundation pit on the ground for laying the ground natural gas conveying pipeline, wherein the opening of the foundation pit is upward, and the wall of the foundation pit is vertical to the bottom surface of the foundation pit; s2, mounting a base, namely placing the base for supporting the natural gas conveying pipeline in the foundation pit excavated in the step S1, and mounting and fixing the base at the middle position of the bottom surface of the foundation pit; and S3, preparing a pipeline, and placing the natural gas conveying pipeline near the foundation pit excavated in the step 1. According to the natural gas pipeline positioning device, the natural gas pipeline is quickly placed in the foundation pit through the rope, the supports on the two sides are extended, and the position of the natural gas pipeline placed in the foundation pit is subjected to secondary fine adjustment, so that the natural gas pipeline is tightly attached to the base, and the placement firmness of the natural gas pipeline is improved.

Description

Natural gas conveying pipeline engineering laying and building method
Technical Field
The invention relates to the technical field of pipeline construction, in particular to a natural gas conveying pipeline engineering laying and building method.
Background
Natural gas refers to all gases naturally occurring in nature, including gases formed by various natural processes in the air space, water space and rock space (including oil field gas, gas field gas, mud volcanic gas, coal bed gas, biogenetic gas and the like).
The natural gas is required to be conveyed after being collected, the natural gas is conveyed to a destination through the conveying pipeline, the natural gas conveying pipeline has two fixing modes, one mode is overhead, the other mode is landfill, and the natural gas pipeline is buried underground to guarantee the conveying safety of the natural gas pipeline.
When the natural gas pipeline is laid and constructed, because the natural gas pipeline is bulky, the natural gas pipeline is placed and is relatively troublesome to operate in the foundation ditch, and current, natural gas pipeline often uses the hoist to hoist natural gas pipeline placing, places again and accomplishes the hoist and mount in the foundation ditch, and the hoist and mount has following weak point, and concrete weak point lies in:
firstly, the hoisting is carried out by using a hoisting machine, and the cost is high.
Secondly, the crane is troublesome to operate during hoisting and high in danger, and the specific reason is that the crane needs to hoist the natural gas pipeline during hoisting so as to separate the natural gas pipeline from the ground.
Disclosure of Invention
The invention aims to provide a natural gas conveying pipeline engineering laying and establishing method, and solves the technical problems that a natural gas pipeline is large in size, is difficult to tie up firmly during binding, is easy to drop off when being lifted to be separated from the ground, and damages the ground or operators.
The technical problem to be solved by the invention is realized by adopting the following technical scheme: a natural gas conveying pipeline engineering laying and building method comprises the following steps:
s1, excavating a foundation pit, excavating the foundation pit on the ground for laying the ground natural gas conveying pipeline, wherein the opening of the foundation pit is upward, and the wall of the foundation pit is vertical to the bottom surface of the foundation pit;
s2, mounting a base, namely placing the base for supporting the natural gas conveying pipeline in the foundation pit excavated in the step S1, and mounting and fixing the base at the middle position of the bottom surface of the foundation pit;
s3, preparing a pipeline, namely placing a natural gas conveying pipeline near the foundation pit excavated in the step 1;
s4, installing a pipeline, namely pushing the natural gas conveying pipeline placed near the foundation pit in the step S3 to roll on the ground near the foundation pit, and rolling the natural gas conveying pipeline into a base of the foundation pit from the ground;
s5, filling the foundation pit, namely, putting muck into the foundation pit with the natural gas conveying pipeline in the step 4, and filling the foundation pit with the muck to level the top surface of the foundation pit with the ground;
the natural gas transportation pipeline engineering laying and establishing method in the steps S1-S5 is specifically completed by a natural gas transportation pipeline engineering laying device, the natural gas transportation pipeline engineering laying device comprises supports arranged on two sides of a foundation pit and a plurality of tractors fixedly arranged on one side of the foundation pit, the tractors are linearly and equidistantly fixed on one side of the foundation pit, each tractor is independently wound with a rope, the other end of each rope is fixed on the other side of the foundation pit, a plurality of rope buckles are fixed on the ground on the other side of the foundation pit, each rope is fixed on one of the rope buckles,
the rope buckle comprises a rope buckle body and rope piles, a base of a right-angle structure is arranged at the bottom end of the rope buckle body, the rope piles which are vertical to the base are fixed at the top end of the base, the base is fixed on the ground through screws, a through round hole is formed in the top end of the rope buckle body and located at the positions of the screws, a bent arc-shaped surface is arranged on one side wall of the rope buckle body, a square-hole-shaped bayonet is arranged at the top end of the other side wall of the rope buckle body, a movable plate of an arc-shaped structure is clamped in the bayonet, a through rope hole is formed in the middle of the movable plate, the rope hole is a long hole, and a rope penetrates through the rope hole and is fixed on the rope;
each tractor comprises a cylindrical traction roller, shaft levers are mounted at the axis positions of the traction rollers, the traction rollers and the shaft levers are connected into a whole, the shaft levers at the two ends of each traction roller are fixed on a rack through rolling bearings, the shaft levers at the two ends of each traction roller penetrate through the rack and extend out, bottom feet are arranged at the bottom of the rack, and the bottom feet at the bottom of the rack are locked on the ground through screws;
the two adjacent tractors are connected through a coupler, the coupler is installed at the connecting position of shaft rods of the two adjacent tractors, a driven gear is installed on the shaft rod of the tractor at one end, a servo motor is installed at the bottom of the shaft rod, a driving gear is installed on an output shaft of the servo motor, and the driving gear is meshed with the driven gear through a rack.
As a preferred technical scheme of the invention, the support comprises fixed supporting rods, the fixed supporting rods are vertically fixed on the bottom surface of the foundation pit and positioned at two sides of the base, the top ends of the fixed supporting rods are hinged with fourth supporting rods, the bottom ends of the fourth supporting rods are hinged with third supporting rods and first supporting rods, the other ends of the third supporting rods are hinged with second supporting rods, and the other ends of the second supporting rods are hinged with the middle parts of the fixed supporting rods;
the bottom end of the first supporting rod is hinged to the bottom end of the fixed supporting rod, a fifth supporting rod is hinged to the middle of the first supporting rod, and the top end of the fifth supporting rod is hinged to the middle of the fixed supporting rod;
the middle part of the fixed supporting rod is provided with a raised sleeve, the top end of the sleeve is provided with a cylindrical through hole, a transmission shaft is arranged in the through hole of the sleeve through a rolling bearing, a hexagonal column is arranged at the top end of the transmission shaft, the bottom end of the transmission shaft is connected with a universal shaft, the other end of the universal shaft is provided with a driving rod, the driving rod is a cylindrical rod, a fixing sleeve is arranged in the middle of the fixing support rod and above the second support rod, the axial center of the fixed sleeve is provided with a through round hole, the driving rod is arranged in the round hole of the fixed sleeve through a rolling bearing, the bottom end of the driving rod penetrates through the fixed sleeve, the outer circular surface of the driving rod penetrating through the fixed sleeve is provided with threads, the bottom end of the driving rod is connected to the top end of the nut sleeve through threaded engagement, and the bottom end of the nut sleeve is hinged to the middle of the second supporting rod.
As a preferable technical solution of the present invention, a disc-shaped base is provided at a side end of the sleeve, a plurality of pointed nails are provided at a bottom surface of the base, and tips of the pointed nails become gradually thicker toward a root.
As a preferable technical scheme of the invention, the bottom end of the fifth supporting rod is provided with a roller.
As a preferable technical solution of the present invention, the rope pile is of a vertical cylindrical structure, and the outer wall of the rope pile is provided with a raised step.
As a preferred technical solution of the present invention, a square-hole-shaped bayonet is disposed at the top end of the other side wall of the rope buckle body, a raised hook is disposed at the top end of the movable plate, the hook is of a U-shaped structure, and the hook is clamped in the square hole of the bayonet.
Compared with the prior art, the invention at least comprises the following beneficial effects:
the natural gas conveying pipeline is placed on the ground, the natural gas conveying pipeline is rolled into the foundation pit from the ground, the natural gas conveying pipeline is supported by the rope, the rope is pulled by the tractor and slowly loosened, the natural gas conveying pipeline is slowly put down in the foundation pit by the rope, and the natural gas conveying pipeline is placed in a base in the middle of the foundation pit, so that the placement safety of the natural gas conveying pipeline is improved.
Secondly, the invention is provided with the supports at the two sides of the foundation pit respectively, the supports comprise a fixed support rod and a transmission shaft, the universal shaft is driven to rotate by the rotation of the transmission shaft, the nut sleeve is driven to move downwards by the thread engagement of the driving rod and the nut sleeve, the whole support is pushed to unfold, the operation simplicity is improved, the support is supported by the fifth support rod after being unfolded by installing the roller at the bottom end of the fifth support rod, the support is firmly placed and is convenient to disassemble, the support is folded by rotating the transmission shaft, the support is conveniently pulled away from the two sides of the natural gas pipeline after the natural gas pipeline is placed in the foundation pit, the operation simplicity is improved during the disassembly,
thirdly, the natural gas pipeline is quickly placed in the foundation pit through the rope, the position of the natural gas pipeline placed in the foundation pit is subjected to secondary fine adjustment through the stretching of the supports on the two sides, the natural gas pipeline is tightly attached to the base, and the placement firmness of the natural gas pipeline is improved
The disc-shaped base is arranged at the side end of the sleeve, the plurality of sharp nails are arranged on the bottom surface of the base, the top ends of the sharp nails gradually become thicker towards the root, the whole support is stretched out, the idler wheel at the bottom end of the fifth supporting rod rolls forwards and then supports the whole support, the elevation angle of the whole support is increased through the idler wheel, the gripping force of the fixing supporting rod on the inner wall of the foundation pit is improved through the sharp nails on the bottom surface of the base, and the position accuracy of the natural gas pipeline placed on the base is improved through improving the position firmness of the fixing supporting rod.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a top view of the natural gas transportation pipeline engineering laying device of the present invention installed on both sides of a foundation pit;
FIG. 2 is a front view of the laying device for natural gas pipeline engineering of the present invention installed on both sides of a foundation pit;
FIG. 3 is a schematic structural view of a stent according to the present invention;
FIG. 4 is a schematic view of the structural attachment of the tractor of the present invention;
FIG. 5 is a schematic cross-sectional view of a cord lock of the present invention;
FIG. 6 is an enlarged view of a portion of the structure of FIG. 5;
FIG. 7 is a flow chart of a method for laying and establishing a natural gas pipeline project according to the invention;
in the figure: 1. rope buckle, 101, arc-shaped surface, 102, rope buckle body, 103, round hole, 104, bayonet, 105, hook, 106, rope hole, 107, base, 108, movable plate, 109, rope pile, 2, bracket, 201, hexagonal column, 202, fixed strut, 203, sleeve, 204, base, 205, transmission shaft, 206, universal shaft, 207, fixed sleeve, 208, nut sleeve, 209, first strut, 210, roller, 211, fifth strut, 212, second strut, 213, third strut, 214, fourth strut, 215, driving rod, 3, rope, 4, tractor, 401, traction roller, 402, coupling, 403, driven gear, 404, driving gear, 405, servo motor, 406, frame, 407, shaft lever, 5, base.
Detailed Description
The embodiments of the invention will be described in detail below with reference to the drawings, but the invention can be implemented in many different ways as defined and covered by the claims.
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further explained below by combining the specific drawings.
It will be understood that when an element is referred to as being "secured to" another element, it can be on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and similar expressions are used herein for illustrative purposes only and do not represent the only embodiments.
Example 1
Referring to fig. 1-7, an overall structure diagram of a method for laying and building a natural gas transportation pipeline project is shown, in which the method for laying and building a natural gas transportation pipeline project includes the following steps:
s1, excavating a foundation pit, excavating the foundation pit on the ground for laying the ground natural gas conveying pipeline, wherein the opening of the foundation pit is upward, and the wall of the foundation pit is vertical to the bottom surface of the foundation pit;
s2, mounting a base, namely placing the base for supporting the natural gas conveying pipeline in the foundation pit excavated in the step S1, and mounting and fixing the base at the middle position of the bottom surface of the foundation pit;
s3, preparing a pipeline, namely placing a natural gas conveying pipeline near the foundation pit excavated in the step 1;
s4, installing a pipeline, namely pushing the natural gas conveying pipeline placed near the foundation pit in the step S3 to roll on the ground near the foundation pit, and rolling the natural gas conveying pipeline into a base of the foundation pit from the ground;
s5, filling the foundation pit, namely, putting muck into the foundation pit with the natural gas conveying pipeline in the step 4, and filling the foundation pit with the muck to level the top surface of the foundation pit with the ground;
the natural gas conveying pipeline engineering laying and establishing method comprises the steps of S1-S5, and is specifically completed by a natural gas conveying pipeline engineering laying device which comprises supports 2 arranged on two sides of a foundation pit and a plurality of tractors 4 fixedly arranged on one side of the foundation pit, wherein the tractors 4 are arranged in a plurality, the tractors 4 are fixed on one side of the foundation pit at equal intervals in a straight line, a rope 3 is independently wound on each tractor 4, the other end of each rope 3 is fixed on the other side of the foundation pit, a plurality of rope buckles 1 are fixed on the ground on the other side of the foundation pit, each rope 3 is fixed on one rope buckle 1, the natural gas conveying pipeline is supported by the rope 3 to roll on the ground, so that the natural gas conveying pipeline falls into the foundation pit from the ground, the natural gas conveying pipeline is supported by the rope 3, the rope 3 is pulled by the tractors 4 and the rope 3 is slowly loosened, the natural gas conveying pipeline is slowly put down in the foundation pit through the rope 3, so that the natural gas conveying pipeline is placed in the base in the middle of the foundation pit, the placement safety of the natural gas conveying pipeline is improved,
rope buckle 1 includes rope buckle body 102, rope stake 109, the bottom of rope buckle body 102 is provided with the base 107 of right angle structure, the top of base 107 is fixed with the rope stake 109 of standing vertically in base 107, base 107 is fixed subaerial through the screw, the top of rope buckle body 102 just is located the screw position and is equipped with the round hole 103 that link up, be convenient for screw through round hole 103, a lateral wall of rope buckle body 102 is provided with crooked arcwall face 101, another lateral wall top of rope buckle body 102 is provided with the bayonet socket 104 of square hole form, the joint has the fly leaf 108 of arc structure in the bayonet socket 104, another lateral wall top of rope buckle body 102 is provided with the bayonet socket 104 of square hole form, the top of fly leaf 108 is provided with bellied pothook 105, pothook 105 is the U-shaped structure, pothook 105 joint is in the square hole of bayonet socket 104. And after the movable plate 108 is clamped and fixed, the top end of the movable plate 108 and the top end of the rope buckle body 102 are at the same horizontal height, the structural connection firmness is improved, scratch on the outer wall of the natural gas conveying pipeline is avoided, the middle part of the movable plate 108 is provided with the rope hole 106 which is through, the rope hole 106 is a long hole, the rope 3 penetrates through the rope hole 106 and is fixed on the rope pile 109, the rope pile 109 is of a vertical cylindrical structure, the outer wall of the rope pile 109 is provided with a raised step, the rope 3 is convenient to hang and is fastened, and the installation firmness of the rope 3 is improved.
Each tractor 4 comprises a cylindrical traction roller 401, a shaft rod 407 is mounted at the axis position of the traction roller 401, the traction roller 401 and the shaft rod 407 are connected into a whole, the shaft rods 407 at two ends of the traction roller 401 are fixed on a rack 406 through rolling bearings, the shaft rods 407 at two ends of the traction roller 401 penetrate through the rack 406 and extend outwards, feet are arranged at the bottom of the rack 406, and the feet at the bottom of the rack 406 are locked on the ground through screws;
the two adjacent tractors 4 are connected through a coupler 402, the coupler 402 is installed at the joint of the shaft rods 407 of the two adjacent tractors 4, a driven gear 403 is installed on the shaft rod 407 of one end of each of the two adjacent tractors 4, a servo motor 405 is installed at the bottom of the shaft rod 407, a driving gear 404 is installed on an output shaft of the servo motor 405, and the driving gear 404 is meshed with the driven gear 403 through a rack.
In the invention, the servo motor 405 drives the tractor 4 at one side of the whole foundation pit to rotate, so that the natural gas conveying pipeline is conveniently horizontally placed in the foundation pit, and the placement firmness of the natural gas pipeline is improved.
The two adjacent shaft levers 407 are connected through the couplers 402, so that the connection firmness of the two adjacent shaft levers 407 is improved, the transmission stability is improved, the natural gas conveying pipeline is convenient to disassemble and easy to replace, the safety of the natural gas conveying pipeline placed in a foundation pit is improved, and the tractors 4 can be freely and selectively placed in an increased or decreased mode according to the volume of the natural gas conveying pipeline through the connection of the plurality of couplers 402, so that the practicability of the device is improved.
According to the invention, the tractor 4 and the rope buckle 1 are respectively arranged on two sides of the foundation pit, the tractor 4 and the rope buckle 1 are connected through the rope 3, so that the natural gas conveying pipeline is placed on the ground, the natural gas conveying pipeline is rolled into the foundation pit from the ground, the natural gas conveying pipeline is supported through the rope 3, the rope 3 is dragged through the tractor 4 and slowly loosened, the natural gas conveying pipeline is slowly put down in the foundation pit through the rope 3, so that the natural gas conveying pipeline is placed in the base 5 in the middle of the foundation pit, and the placement safety of the natural gas conveying pipeline is improved.
The support 2 comprises a fixed support rod 202, the fixed support rod 202 is vertically fixed on the bottom surface of the foundation pit and is positioned on two sides of the base 5, a fourth support rod 214 is hinged to the top end of the fixed support rod 202, a third support rod 213 and a first support rod 209 are hinged to the bottom end of the fourth support rod 214, a second support rod 212 is hinged to the other end of the third support rod 213, and the other end of the second support rod 212 is hinged to the middle part of the fixed support rod 202;
the bottom end of the first supporting rod 209 is hinged to the bottom end of the fixed supporting rod 202, a slidable fifth supporting rod 211 is installed in the middle of the first supporting rod 209, so that the middle of the fifth supporting rod 211 slides along the axial direction of the first supporting rod 209 in the middle of the first supporting rod 209, and the top end of the fifth supporting rod 211 is hinged to the middle of the fixed supporting rod 202; the bottom of fifth branch 211 is longer than first branch 209, and the bottom installation gyro wheel 210 of fifth branch 211 is convenient for support fixed branch 202, makes the laminating of the discoid base 204 foundation ditch inner wall of fixed branch 202 side inseparabler, improves fixed branch 202 place the fastness.
A raised sleeve 203 is arranged in the middle of the fixed support rod 202, a disc-shaped base 204 is arranged at the side end of the sleeve 203, a plurality of sharp nails are arranged on the bottom surface of the base 204, the top ends of the sharp nails gradually become thick towards the root, a cylindrical through hole is arranged at the top end of the sleeve 203, a transmission shaft 205 is arranged in the through hole of the sleeve 203 through a rolling bearing, a hexagonal column 201 is arranged at the top end of the transmission shaft 205 and is conveniently sleeved on the hexagonal column 201 through the hexagonal sleeve, the transmission shaft 205 is pulled to rotate, a universal shaft 206 is connected at the bottom end of the transmission shaft 205, a driving rod 215 is arranged at the other end of the universal shaft 206, the driving rod 215 is a cylindrical rod, a fixed sleeve 207 is arranged in the middle of the fixed support rod 202 and above a second support rod 212, a through round hole is arranged at the axis position of the fixed, the outer circumferential surface of the driving rod 215 penetrating the fixing sleeve 207 is provided with a screw thread, the bottom end of the driving rod 215 is connected to the top end of the nut sleeve 208 by screw engagement, the driving rod 215 provides torque transmission through the universal shaft, the outer circumferential surface of the driving rod 215 is provided with a screw thread, and the bottom end of the nut sleeve 208 is hinged to the middle of the second strut 212. The nut sleeve 208 is pushed to ascend and descend by rotating the driving rod 215, so that the whole support 2 is pushed to extend, and the operation simplicity of extending the support 2 is improved.
The invention is respectively provided with the support 2 at two sides of the foundation pit, the support 2 comprises the fixed support rod 202 and the transmission shaft 205, the universal shaft 206 is driven to rotate by the rotation of the transmission shaft 205, the nut sleeve 208 is driven to move downwards by the engagement of the driving rod 215 and the screw thread of the nut sleeve 208, the whole support 2 is pushed to unfold, the operation simplicity is improved, the support 2 is supported by the fifth support rod 211 after being unfolded by the roller 210 arranged at the bottom end of the fifth support rod 211, the position installation firmness of the whole support is improved, the disassembly is convenient, the support 2 is folded by rotating the transmission shaft 205, the support 2 is pulled away from two sides of the natural gas pipeline after the natural gas pipeline is placed in the foundation pit, the operation simplicity during the disassembly is improved,
according to the invention, the natural gas pipeline is quickly placed in the foundation pit through the rope 3, and the position of the natural gas pipeline placed in the foundation pit is subjected to secondary fine adjustment through the extension of the supports 2 at the two sides, so that the natural gas pipeline is more tightly attached to the base 5, and the placement firmness of the natural gas pipeline is improved
According to the invention, the disc-shaped base 204 is arranged at the side end of the sleeve 203, the plurality of sharp nails are arranged on the bottom surface of the base 204, the top ends of the sharp nails gradually become thicker towards the root, the whole support 2 is stretched, the roller 210 at the bottom end of the fifth supporting rod 211 rolls forwards and then supports the whole support 2, the elevation angle of the whole support 2 is increased through the roller 210, the gripping force of the fixing supporting rod on the inner wall of the foundation pit is improved through the sharp nails on the bottom surface of the base 204, and the position accuracy of the natural gas pipeline placed on the base is improved through improving the position firmness of the fixing supporting rod.
The working principle is as follows: when the natural gas conveying pipeline engineering laying and establishing method is used for carrying out engineering laying on a natural gas conveying pipeline, firstly, a foundation pit for laying the natural gas conveying pipeline on the ground is excavated on the ground, the opening of the foundation pit is upward, the wall of the foundation pit is vertical to the bottom surface of the foundation pit, then, a base for supporting the natural gas conveying pipeline is placed in the excavated foundation pit, and the base is installed and fixed at the middle position of the bottom surface of the foundation pit; secondly, placing a natural gas conveying pipeline near the foundation pit excavated in the step 1; the natural gas conveying pipeline is pushed to roll on the ground near the foundation pit, the natural gas conveying pipeline is rolled from the ground into a base of the foundation pit, the natural gas conveying pipeline is supported to roll on the ground through a rope 3, the natural gas conveying pipeline is rolled from the ground into the foundation pit, the natural gas conveying pipeline is supported through the rope 3, the rope 3 is pulled through a tractor 4 and slowly loosened, the natural gas conveying pipeline is slowly put down in the foundation pit through the rope 3, the natural gas conveying pipeline is placed in the base in the middle of the foundation pit, the natural gas pipeline is stretched through supports 2 on two sides, secondary fine adjustment is carried out on the position of the natural gas pipeline placed in the foundation pit, the natural gas pipeline is tightly attached to the base 5, finally, muck is put into the foundation pit in which the natural gas conveying pipeline is placed, the foundation pit is filled with the muck, and the top surface of; the construction of the natural gas conveying pipeline can be finished.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. A natural gas conveying pipeline engineering laying and building method is characterized by comprising the following steps:
s1, excavating a foundation pit, excavating the foundation pit on the ground for laying the ground natural gas conveying pipeline, wherein the opening of the foundation pit is upward, and the wall of the foundation pit is vertical to the bottom surface of the foundation pit;
s2, mounting a base, namely placing the base for supporting the natural gas conveying pipeline in the foundation pit excavated in the step S1, and mounting and fixing the base at the middle position of the bottom surface of the foundation pit;
s3, preparing a pipeline, namely placing a natural gas conveying pipeline near the foundation pit excavated in the step 1;
s4, installing a pipeline, namely pushing the natural gas conveying pipeline placed near the foundation pit in the step S3 to roll on the ground near the foundation pit, and rolling the natural gas conveying pipeline into a base of the foundation pit from the ground;
s5, filling the foundation pit, namely, putting muck into the foundation pit with the natural gas conveying pipeline in the step 4, and filling the foundation pit with the muck to level the top surface of the foundation pit with the ground;
the natural gas transportation pipeline engineering laying and establishing method in the steps S1-S5 is specifically completed by a natural gas transportation pipeline engineering laying device, the natural gas transportation pipeline engineering laying device comprises supports arranged on two sides of a foundation pit and a plurality of tractors fixedly arranged on one side of the foundation pit, the tractors are linearly and equidistantly fixed on one side of the foundation pit, each tractor is independently wound with a rope, the other end of each rope is fixed on the other side of the foundation pit, a plurality of rope buckles are fixed on the ground on the other side of the foundation pit, each rope is fixed on one of the rope buckles,
the rope buckle comprises a rope buckle body and rope piles, a base of a right-angle structure is arranged at the bottom end of the rope buckle body, the rope piles which are vertical to the base are fixed at the top end of the base, the base is fixed on the ground through screws, a through round hole is formed in the top end of the rope buckle body and located at the positions of the screws, a bent arc-shaped surface is arranged on one side wall of the rope buckle body, a square-hole-shaped bayonet is arranged at the top end of the other side wall of the rope buckle body, a movable plate of an arc-shaped structure is clamped in the bayonet, a through rope hole is formed in the middle of the movable plate, the rope hole is a long hole, and a rope penetrates through the rope hole and is fixed on the rope;
each tractor comprises a cylindrical traction roller, shaft levers are mounted at the axis positions of the traction rollers, the traction rollers and the shaft levers are connected into a whole, the shaft levers at the two ends of each traction roller are fixed on a rack through rolling bearings, the shaft levers at the two ends of each traction roller penetrate through the rack and extend out, bottom feet are arranged at the bottom of the rack, and the bottom feet at the bottom of the rack are locked on the ground through screws;
the two adjacent tractors are connected through a coupler, the coupler is installed at the connecting position of shaft rods of the two adjacent tractors, a driven gear is installed on the shaft rod of the tractor at one end, a servo motor is installed at the bottom of the shaft rod, a driving gear is installed on an output shaft of the servo motor, and the driving gear is meshed with the driven gear through a rack.
2. The natural gas transportation pipeline engineering laying and building method according to claim 1, characterized in that: the support comprises fixed support rods, the fixed support rods are vertically fixed on the bottom surface of the foundation pit and located on two sides of the base, the top ends of the fixed support rods are hinged with fourth support rods, the bottom ends of the fourth support rods are hinged with third support rods and first support rods, the other ends of the third support rods are hinged with second support rods, and the other ends of the second support rods are hinged to the middle parts of the fixed support rods;
the bottom end of the first supporting rod is hinged to the bottom end of the fixed supporting rod, a fifth supporting rod is hinged to the middle of the first supporting rod, and the top end of the fifth supporting rod is hinged to the middle of the fixed supporting rod;
the middle part of the fixed supporting rod is provided with a raised sleeve, the top end of the sleeve is provided with a cylindrical through hole, a transmission shaft is arranged in the through hole of the sleeve through a rolling bearing, a hexagonal column is arranged at the top end of the transmission shaft, the bottom end of the transmission shaft is connected with a universal shaft, the other end of the universal shaft is provided with a driving rod, the driving rod is a cylindrical rod, a fixing sleeve is arranged in the middle of the fixing support rod and above the second support rod, the axial center of the fixed sleeve is provided with a through round hole, the driving rod is arranged in the round hole of the fixed sleeve through a rolling bearing, the bottom end of the driving rod penetrates through the fixed sleeve, the outer circular surface of the driving rod penetrating through the fixed sleeve is provided with threads, the bottom end of the driving rod is connected to the top end of the nut sleeve through threaded engagement, and the bottom end of the nut sleeve is hinged to the middle of the second supporting rod.
3. The natural gas transportation pipeline engineering laying and building method according to claim 2, characterized in that: the side of the sleeve is provided with a disc-shaped base, the bottom surface of the base is provided with a plurality of sharp nails, and the top ends of the sharp nails gradually thicken towards the root parts.
4. The natural gas transportation pipeline engineering laying and building method according to claim 2, characterized in that: and the bottom end of the fifth supporting rod is provided with a roller.
5. The natural gas transportation pipeline engineering laying and building method according to claim 1, characterized in that: the rope pile is of a vertical cylindrical structure, and the outer wall of the rope pile is provided with a raised step.
6. The natural gas transportation pipeline engineering laying and building method according to claim 1, characterized in that: the rope fastener is characterized in that a square hole-shaped bayonet is formed in the top end of the other side wall of the rope fastener body, a raised clamping hook is arranged at the top end of the movable plate, the clamping hook is of a U-shaped structure, and the clamping hook is clamped in the square hole of the bayonet.
CN201911214785.1A 2019-12-02 2019-12-02 Natural gas conveying pipeline engineering laying and building method Active CN110886902B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201911214785.1A CN110886902B (en) 2019-12-02 2019-12-02 Natural gas conveying pipeline engineering laying and building method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201911214785.1A CN110886902B (en) 2019-12-02 2019-12-02 Natural gas conveying pipeline engineering laying and building method

Publications (2)

Publication Number Publication Date
CN110886902A true CN110886902A (en) 2020-03-17
CN110886902B CN110886902B (en) 2021-03-05

Family

ID=69749903

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201911214785.1A Active CN110886902B (en) 2019-12-02 2019-12-02 Natural gas conveying pipeline engineering laying and building method

Country Status (1)

Country Link
CN (1) CN110886902B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111336316A (en) * 2020-03-25 2020-06-26 章耀尹 Long-distance oil-gas pipeline laying, installing and constructing equipment
CN111350878A (en) * 2020-03-25 2020-06-30 章耀尹 Long-distance oil and gas pipeline laying, installing and constructing method
CN113315035A (en) * 2021-06-24 2021-08-27 高沛根 Utility tunnel cable input device

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202018104992U1 (en) * 2018-08-31 2018-12-05 Birgit Alteilges Cone cutter for removing a plastic pipe laid in the ground
DE102017217081A1 (en) * 2017-09-26 2019-03-28 Steinzeug-Keramo GmbH Erdverlegbares pipe
CN109594581A (en) * 2018-11-16 2019-04-09 杭州江润科技有限公司 Cross a river segment pipe structure and its installation method
CN208935546U (en) * 2018-11-08 2019-06-04 单天智 A kind of long distance gas pipeline is convenient for stablizing mounting structure
CN209180571U (en) * 2018-12-08 2019-07-30 杭州杰美星仪机器人科技有限公司 A kind of municipal pipeline photocuring repair in well head draw liner heavy sheave wheels group

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102017217081A1 (en) * 2017-09-26 2019-03-28 Steinzeug-Keramo GmbH Erdverlegbares pipe
DE202018104992U1 (en) * 2018-08-31 2018-12-05 Birgit Alteilges Cone cutter for removing a plastic pipe laid in the ground
CN208935546U (en) * 2018-11-08 2019-06-04 单天智 A kind of long distance gas pipeline is convenient for stablizing mounting structure
CN109594581A (en) * 2018-11-16 2019-04-09 杭州江润科技有限公司 Cross a river segment pipe structure and its installation method
CN209180571U (en) * 2018-12-08 2019-07-30 杭州杰美星仪机器人科技有限公司 A kind of municipal pipeline photocuring repair in well head draw liner heavy sheave wheels group

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111336316A (en) * 2020-03-25 2020-06-26 章耀尹 Long-distance oil-gas pipeline laying, installing and constructing equipment
CN111350878A (en) * 2020-03-25 2020-06-30 章耀尹 Long-distance oil and gas pipeline laying, installing and constructing method
CN113315035A (en) * 2021-06-24 2021-08-27 高沛根 Utility tunnel cable input device

Also Published As

Publication number Publication date
CN110886902B (en) 2021-03-05

Similar Documents

Publication Publication Date Title
CN110886902B (en) Natural gas conveying pipeline engineering laying and building method
CN104532843B (en) A kind of steel column location straightening method of stand column pile
CN105421860A (en) Electricity grid telegraph pole erecting device and construction method
CN105442932A (en) Power grid pole burying device and construction method
CN107879269A (en) The electronic lifting bracket of cable tunnel inner column formula cable
CN207516090U (en) A kind of device for acquiring well water
CN210887239U (en) Municipal administration pipeline slot supporting construction
CN110886531B (en) Overhead transmission line electric power tower installation construction method
CN109441361A (en) A kind of pile frame and its vertical mast method
KR102305697B1 (en) System for installing a plurality of synthetic resin corrugated pipes
CN111305228B (en) Deep foundation pit supporting structure and supporting method thereof
CN206987509U (en) Supply line's electric pole plants lever apparatus
CN205275095U (en) Cross bridge type gin pole device
CN108661413A (en) A kind of holding tube machine and its construction method
CN215479227U (en) Public municipal administration pipe-well construction auxiliary device of municipal administration
CN214662557U (en) Light high-pressure flexible gas pipe road crossing pipe frame
CN217148391U (en) Deformable mechanism of tower assembling hoisting equipment
CN112103772B (en) Portable lightning rod and lightning protection method
CN211974244U (en) Civil engineering wall brick builds auxiliary device
CN212687418U (en) Simple hoisting device capable of being disassembled and assembled on site
CN214222642U (en) Unit type mobile operation platform
JP5395626B2 (en) Rehabilitation material drawing jig
CN113718780B (en) Automatic placer of bored concrete pile concrete placement template for municipal highway construction
CN216272811U (en) Submerged halogen pump lifting device
CN211895795U (en) Steel pipe hoisting and lifting equipment

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
TA01 Transfer of patent application right

Effective date of registration: 20210209

Address after: 528000 No. 16 Tangyuan West Street, Chancheng District, Foshan, Guangdong.

Applicant after: Foshan huaran Energy Construction Co., Ltd

Address before: 231500 Anhui Jianchuan Municipal Engineering Co., Ltd., Lujiang Economic Development Zone, Lujiang County, Hefei City, Anhui Province

Applicant before: Chen Xiaofeng

TA01 Transfer of patent application right
GR01 Patent grant
GR01 Patent grant