CN211816868U - Glass steel module pin-connected panel integration pump station - Google Patents

Glass steel module pin-connected panel integration pump station Download PDF

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Publication number
CN211816868U
CN211816868U CN202020254010.9U CN202020254010U CN211816868U CN 211816868 U CN211816868 U CN 211816868U CN 202020254010 U CN202020254010 U CN 202020254010U CN 211816868 U CN211816868 U CN 211816868U
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China
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reinforced plastic
barrel
fiber reinforced
glass fiber
pump station
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CN202020254010.9U
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Chinese (zh)
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陈育超
申耀国
裴露
丁浩
宫存鹏
车跃龙
马敏杰
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China Railway Design Corp
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China Railway Design Corp
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Abstract

The utility model relates to a glass fiber reinforced plastic module assembled integrated pump station, which comprises a cylinder body, a bottom plate positioned at the bottom of the cylinder body, a middle plate positioned at the middle part in the cylinder body, a top plate positioned at the top of the cylinder body, a water inlet hole and a water outlet hole positioned on the cylinder body, a submersible sewage pump positioned at the bottom in the cylinder body and a control cabinet; the cylinder body is cylindrical and is formed by assembling a plurality of glass fiber reinforced plastic annular cylinder rings from bottom to top, and the glass fiber reinforced plastic annular cylinder rings are connected in a socket joint manner; inside the barrel, the spigot-and-socket type junction between the glass fiber reinforced plastic annular cylinder rings is provided with annular steel support rings, each annular steel support ring is connected with two glass fiber reinforced plastic annular cylinder rings connected in a spigot-and-socket manner by adopting a connecting bolt, and each glass fiber reinforced plastic annular cylinder ring is formed by combining a plurality of arc-shaped glass fiber reinforced plastic modules. The utility model discloses pump station diameter, height can be adjusted according to the engineering demand is nimble, satisfy little, well, big, the not different scale pump station design requirements of oversize, and the installation is dismantled conveniently, does not have restriction in the aspect of the transportation, and corrosion resistance is strong, repeatedly usable.

Description

Glass steel module pin-connected panel integration pump station
Technical Field
The utility model relates to a municipal administration rain sewage transmission, promotion technical field especially relate to a fiber reinforced plastic module pin-connected panel integration pump station.
Background
In municipal drainage, sewage treatment system, need set up the pump station and promote rain sewage usually, solve the transmission problem when rain sewage can't flow by oneself. Traditional pump station is many with reinforced concrete structure, because traditional reinforced concrete pump station construction period is long, and construction procedure is complicated, and the pool wall easily receives the corruption, the prefabricated integration pump station has begun to appear in recent years, has that the construction speed is fast, the installation is simple, be convenient for advantage such as maintain. However, the diameter of the existing prefabricated integrated pump station is usually limited within 4 meters due to the limiting factors such as transportation and the like, and the construction requirement of the pump station on a larger scale cannot be met.
Disclosure of Invention
In order to solve the problem, the utility model provides a fiber reinforced plastic module pin-connected panel integration pump station, this integration pump station have solved traditional concrete pump station construction period long, and the construction procedure is complicated, and the pool wall is easily corroded to and ordinary prefabricated integration pump station scale is limited, the inconvenient problem of transportation.
The utility model is realized in such a way, a glass fiber reinforced plastic module assembled integrated pump station comprises a cylinder body, a bottom plate positioned at the bottom of the cylinder body, a middle plate positioned at the middle part in the cylinder body, a top plate positioned at the top of the cylinder body, a water inlet hole and a water outlet hole positioned on the cylinder body, a submersible sewage pump positioned at the bottom in the cylinder body and a control cabinet; the cylinder body is cylindrical and is formed by assembling a plurality of glass fiber reinforced plastic annular cylinder rings from bottom to top, and the glass fiber reinforced plastic annular cylinder rings are connected in a socket joint manner; inside the barrel, the spigot-and-socket type junction between the glass fiber reinforced plastic annular barrel rings is provided with annular steel support rings, and each annular steel support ring is connected and fixed with two glass fiber reinforced plastic annular barrel rings connected in a spigot-and-socket manner by a connecting bolt.
In the above aspect, the annular steel support ring preferably has a cross section of a "" shape.
In the above technical scheme, preferably, each annular glass fiber reinforced plastic cylinder ring is formed by combining a plurality of arc-shaped glass fiber reinforced plastic modules, the arc-shaped glass fiber reinforced plastic modules are connected in a socket-and-spigot manner, and the socket-and-spigot connection positions of the modules are connected and fixed by connecting bolts.
In the above technical solution, it is further preferable that a gasket and a sealing rubber ring are disposed between each of the connecting bolts and the contact surface of the arc-shaped glass fiber reinforced plastic module.
In the above technical scheme, preferably, the bottom plate is made of concrete, and the bottom plate and the bottom of the cylinder are fixedly installed through the installation part.
In the above technical scheme, preferably, the middle plate is circular and is formed by combining block type middle plate assemblies, the block type middle plate assemblies can reserve a middle plate equipment mounting hole and a middle plate access hole according to requirements, and the middle plate is mounted in the middle of the cylinder through a circumferential steel support ring in the middle of the cylinder or through a support steel frame arranged in the middle of the cylinder.
In the technical scheme, preferably, the top plate is circular and is formed by combining the block type top plate assemblies, the block type top plate assemblies can reserve top plate equipment mounting holes, top plate access holes and vent holes according to requirements, and the top plate is mounted at the top of the barrel through annular steel support rings arranged on the uppermost layer of the barrel or through support steel frames arranged on the uppermost layer of the barrel.
In the above technical solution, preferably, the submersible sewage pump is installed at the bottom in the cylinder in a self-coupling installation manner.
In the above technical solution, preferably, the control cabinet may be installed on the middle plate, or may be installed on the ground outside the cylinder.
The utility model has the advantages and positive effects that:
(1) the diameter and the height of the glass fiber reinforced plastic module assembled integrated pump station can be flexibly adjusted according to engineering requirements, and the design requirements of small, medium, large and super-large pump stations with different scales are met;
(2) the utility model can transport the modularized components to the field for assembly without the limitation of transportation;
(3) the utility model discloses the installation, dismantle conveniently, corrosion resistance is strong, but reuse.
Drawings
FIG. 1 is a perspective view of the glass fiber reinforced plastic module assembled integrated pump station of the present invention;
FIG. 2 is a perspective view showing the internal structure of the glass fiber reinforced plastic module assembled integrated pump station of the present invention;
FIG. 3 is a front view of the glass fiber reinforced plastic module assembled integrated pump station of the present invention;
FIG. 4 is a half sectional view of the glass fiber reinforced plastic module assembled integrated pump station of the present invention;
FIG. 5 is a schematic structural view of the glass fiber reinforced plastic annular cylinder ring of the present invention;
FIG. 6 is a first schematic structural diagram of the arc-shaped GRP module of the present invention;
FIG. 7 is a second structural schematic diagram of the arc-shaped GRP module of the present invention;
FIG. 8 is a schematic structural view of the hoop steel support ring of the present invention;
fig. 9 is a schematic structural view of one section of the circumferential steel support ring of the present invention.
In the figure: 1. a barrel; 2. a glass fiber reinforced plastic annular cylinder ring; 3. a circumferential steel support ring; 4. an arc-shaped glass fiber reinforced plastic module; 5. a base plate; 6. a middle plate; 7. a top plate; 8. a middle plate equipment mounting hole; 9. a middle plate access hole; 10. a ceiling equipment mounting hole; 11. a top plate manhole; 12. a vent hole; 13. a water inlet hole; 14. and (7) water outlet holes.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be further described in detail with reference to the following embodiments and accompanying drawings. It should be understood that the specific embodiments described herein are for the purpose of illustration only and are not intended to limit the invention.
Referring to fig. 1 to 9, the present embodiment provides a fiber reinforced plastic module assembled integrated pump station, which includes a barrel 1, a bottom plate 5 located at the bottom of the barrel, a middle plate 6 located at the middle inside the barrel, a top plate 7 located at the top of the barrel, a water inlet hole 13 and a water outlet hole 14 located on the barrel, a submersible sewage pump located at the bottom inside the barrel, and a control cabinet (the submersible sewage pump and the control cabinet are not shown in the drawings); the barrel 1 is cylindrical and is formed by assembling a plurality of glass fiber reinforced plastic annular barrel rings 2 from bottom to top, the height of the barrel can be set according to requirements, the glass fiber reinforced plastic annular barrel rings 2 are connected in a socket joint mode, and special sealant is adopted for sealing at socket joint type joint surfaces of the barrel rings during specific implementation. Inside the barrel 1, the socket joint formula junction between the glass steel annular barrel 2 is provided with hoop steel support ring 3, every hoop steel support ring 3 adopts connecting bolt to connect fixedly between two glass steel annular barrel 2 that the socket joint formula is connected, and the cross-section of hoop steel support ring 3 is "the shape of the section", and every hoop steel support ring 3 can divide into the multistage, is convenient for install, supports through hoop steel support ring, has further guaranteed the intensity of whole barrel.
Each glass fiber reinforced plastic annular cylinder ring 2 is formed by combining a plurality of arc-shaped glass fiber reinforced plastic modules 4, the diameter of the glass fiber reinforced plastic annular cylinder ring can be set according to the requirement, the arc-shaped glass fiber reinforced plastic modules 4 are connected in a socket joint mode, and the module socket joint type connection positions are connected and fixed through connecting bolts. During concrete implementation, a special sealant can be adopted for sealing at the spigot-and-socket joint surface of the module, the material strength of the arc glass reinforced plastic module meets the vertical load requirement, and the arc glass reinforced plastic module can reserve a water inlet hole and a water outlet hole according to requirements.
Each set up packing ring and sealing rubber ring between the contact surface of connecting bolt and arc glass steel module 4, both the damping can guarantee sealed again, connecting bolt has locking boss, and the inside nut of connecting bolt and bolt outcrop part all are equipped with special corrosion resistant sealed cowling during concrete implementation.
The material of bottom plate 5 is the concrete material, the bottom plate with 1 bottom of barrel is fixed through the installed part installation, adopts the formula installation of burying, and concrete bottom plate weight satisfies the anti requirement of floating of barrel, or measures such as increase anti-floating anchor rod satisfy the anti requirement of floating of barrel.
The medium plate 6 is circular, is formed by the combination of block formula medium plate subassembly, medium plate equipment fixing hole 8, medium plate access hole 9 can be reserved according to the demand to block formula medium plate subassembly, the medium plate passes through the hoop steel support ring at the middle part in the barrel and installs at the barrel middle part, the medium plate also can be installed at the barrel middle part through setting up the supporting steelframe at the middle part in the barrel, and the supporting steelframe guarantees the medium plate satisfies construction period, operation period load requirement.
Roof 7 is circular, is formed by the combination of block type roof subassembly, roof equipment fixing hole 10, roof access hole 11 and air vent 12 can be reserved according to the demand to block type roof subassembly, the roof is installed at the barrel top through setting up the hoop steel support ring in the barrel superiors. The roof also can be through the supporting steel frame that the barrel the superiors set up is installed at the barrel top, the supporting steel frame guarantees the roof satisfies construction period, operation period load requirement.
The submersible sewage pump is installed at the bottom in the cylinder body 1 in a self-coupling installation mode, and the control cabinet can be installed on the middle plate or the ground outside the cylinder body.
The utility model discloses a glass steel module pin-connected panel integration pump station can select field assembly or factory equipment according to the scale of pump station, and concrete installation as follows:
(1) and (5) manufacturing a concrete bottom plate 5 according to the structure calculation, and placing the concrete bottom plate at the bottom of the excavated foundation pit.
(2) The arc-shaped glass fiber reinforced plastic module 4 is customized according to the design diameter, the glass fiber reinforced plastic annular cylinder ring 2 is fixedly assembled through the connecting bolt, a gasket and a sealing rubber ring are arranged between the connecting bolt and the contact surface of the arc-shaped glass fiber reinforced plastic module 4 for vibration damping and sealing, and a special corrosion-resistant sealing cover is arranged on the exposed head part of the nut and the bolt inside the connecting bolt with the anti-loosening boss. And fixing the bottom of the assembled glass fiber reinforced plastic annular cylinder ring 2 and the concrete bottom plate 5 through a mounting piece.
(3) Continuously assembling the glass fiber reinforced plastic annular cylinder rings 2 according to the steps, and assembling from bottom to top, wherein the glass fiber reinforced plastic annular cylinder rings 2 are connected in a socket joint manner, and the socket joint surfaces of the cylinder rings are sealed by special sealant; and in the barrel 1, the annular steel supporting ring 3 is arranged between the glass fiber reinforced plastic annular barrel rings 2, the annular steel supporting ring 3 and the two glass fiber reinforced plastic annular barrel rings 2 connected in a socket joint mode are fixedly connected together through a connecting bolt, and the barrel 1 is formed after the assembly is carried out to the designed height.
(4) In the process of assembling the glass fiber reinforced plastic annular cylinder ring 2, a water inlet hole 13 and a water outlet hole 14 are reserved on the arc-shaped glass fiber reinforced plastic module 4 according to design requirements.
(5) The middle plate 6 is assembled by a block type middle plate component, a middle plate equipment mounting hole 8 and a middle plate access hole 9 are reserved by the block type middle plate component according to requirements, and the middle plate 6 is mounted in the middle of the barrel 1 through a supporting steel frame arranged in the middle of the barrel 1.
(6) Assembling a top plate 7 by a block type top plate assembly, and reserving a top plate equipment mounting hole 10, a top plate overhaul hole 11 and a vent hole 12 by the block type top plate assembly according to requirements; the top plate 7 is mounted on the top of the cylinder 1 through a supporting steel frame arranged on the uppermost layer of the cylinder 1.
(7) And the glass fiber reinforced plastic module assembled integrated pump station structure is assembled, and the equipment installation, the earth covering backfill and other next-order operations are carried out.
The diameter and the height of the glass fiber reinforced plastic module assembled integrated pump station can be flexibly adjusted according to engineering requirements, and the design requirements of small, medium, large and super-large pump stations with different scales are met; the modular components can be transported to the field for assembly without transportation limitation; the utility model discloses the installation, dismantle conveniently, corrosion resistance is strong, but reuse.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: it is also possible to modify the solutions described in the foregoing embodiments or to substitute some or all of the technical features of the foregoing embodiments with equivalents, without departing from the scope of the embodiments of the present invention.

Claims (9)

1. The utility model provides a glass steel module pin-connected panel integration pump station which characterized in that: the sewage submersible pump comprises a barrel, a bottom plate positioned at the bottom of the barrel, a middle plate positioned in the middle of the barrel, a top plate positioned at the top of the barrel, a water inlet hole and a water outlet hole which are positioned on the barrel, a sewage submersible pump positioned at the bottom in the barrel and a control cabinet; the cylinder body is cylindrical and is formed by assembling a plurality of glass fiber reinforced plastic annular cylinder rings from bottom to top, and the glass fiber reinforced plastic annular cylinder rings are connected in a socket joint manner; inside the barrel, the spigot-and-socket type junction between the glass fiber reinforced plastic annular barrel rings is provided with annular steel support rings, and each annular steel support ring is connected and fixed with two glass fiber reinforced plastic annular barrel rings connected in a spigot-and-socket manner by a connecting bolt.
2. The glass reinforced plastic module assembled integrated pump station according to claim 1, which is characterized in that: the circular steel supporting ring has a reverse-L-shaped section.
3. The glass reinforced plastic module assembled integrated pump station according to claim 1, which is characterized in that: each glass fiber reinforced plastic annular cylinder ring is formed by combining a plurality of arc-shaped glass fiber reinforced plastic modules, the arc-shaped glass fiber reinforced plastic modules are connected in a socket joint mode, and the socket joint type connection positions of the modules are fixedly connected through connecting bolts.
4. The glass reinforced plastic module assembled integrated pump station according to claim 3, wherein: and a gasket and a sealing rubber ring are arranged between the connecting bolts and the contact surface of the arc-shaped glass reinforced plastic module.
5. The glass reinforced plastic module assembled integrated pump station according to claim 1, which is characterized in that: the material of bottom plate is the concrete material, the bottom plate with the barrel bottom is fixed through the installed part installation.
6. The glass reinforced plastic module assembled integrated pump station according to claim 1, which is characterized in that: the middle plate is circular, is formed by the combination of block formula middle plate subassembly, medium plate equipment fixing hole, medium plate access hole can be reserved according to the demand to block formula middle plate subassembly, the medium plate passes through the hoop steel support ring at middle part in the barrel or installs at the barrel middle part through the support steelframe that sets up at the middle part in the barrel.
7. The glass reinforced plastic module assembled integrated pump station according to claim 1, which is characterized in that: the roof is circular, forms by the combination of block type roof subassembly, roof equipment fixing hole, roof access hole and air vent can be reserved according to the demand to block type roof subassembly, the roof is installed at the barrel top through the hoop steel support ring that sets up in the barrel the superiors or through the support steel frame that sets up in the barrel the superiors.
8. The glass reinforced plastic module assembled integrated pump station according to claim 1, which is characterized in that: the submersible sewage pump is arranged at the bottom in the cylinder body in a self-coupling installation mode.
9. The glass reinforced plastic module assembled integrated pump station according to claim 1, which is characterized in that: the control cabinet can be arranged on the middle plate and also can be arranged on the ground outside the cylinder body.
CN202020254010.9U 2020-03-04 2020-03-04 Glass steel module pin-connected panel integration pump station Active CN211816868U (en)

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Application Number Priority Date Filing Date Title
CN202020254010.9U CN211816868U (en) 2020-03-04 2020-03-04 Glass steel module pin-connected panel integration pump station

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020254010.9U CN211816868U (en) 2020-03-04 2020-03-04 Glass steel module pin-connected panel integration pump station

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Publication Number Publication Date
CN211816868U true CN211816868U (en) 2020-10-30

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111218975A (en) * 2020-03-04 2020-06-02 中国铁路设计集团有限公司 Glass steel module pin-connected panel integration pump station

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111218975A (en) * 2020-03-04 2020-06-02 中国铁路设计集团有限公司 Glass steel module pin-connected panel integration pump station

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