CN214005735U - Synthesize trench structure - Google Patents

Synthesize trench structure Download PDF

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Publication number
CN214005735U
CN214005735U CN202022929168.4U CN202022929168U CN214005735U CN 214005735 U CN214005735 U CN 214005735U CN 202022929168 U CN202022929168 U CN 202022929168U CN 214005735 U CN214005735 U CN 214005735U
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pipe
trench structure
glass fiber
reinforced plastic
fiber reinforced
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CN202022929168.4U
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张昶黎
吴波
李睿
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Abstract

The utility model discloses a synthesize trench structure, including the body, be provided with horizontal or vertical steelframe in the body, the steelframe is with dividing into a plurality of vertical and horizontal regions in the body, be provided with a plurality of equipment calandria on the steelframe, the steelframe is with being divided into left right three vertical region in the body, and the region all is provided with the main equipment calandria about wherein. The utility model has the advantages that: the glass fiber reinforced plastic sand inclusion comprehensive pipe ditch structure has good corrosion resistance, wear resistance, heat preservation performance, pollution resistance and mechanical insulation performance; the weight is light, the transportation is convenient, the construction is convenient, the service life is long, the safety and the reliability are realized, and the design is flexible; the cost is low, the construction period is short, cathode protection is not needed to the buried pipe, and a large amount of maintenance cost can be saved.

Description

Synthesize trench structure
Technical Field
The utility model relates to the technical field of pipelines, concretely relates to synthesize trench structure.
Background
The existing integrated pipe trench system mainly uses reinforced concrete as a main body and adopts a cast-in-place or pre-support assembly mode for construction, and the defects of the existing integrated pipe trench system are as follows: the manufacturing cost is high, and the pre-branch pipe trench is more expensive at present; the cast-in-place concrete pipe ditch has long construction period, the transportation of the pre-branch pipe ditch is inconvenient, and the cost is correspondingly increased.
The glass fiber reinforced plastic sand inclusion pipe is a novel composite material prepared by taking resin as a base material, glass fiber and products thereof as reinforcing materials and quartz sand as a filling material. The material has the characteristics of excellent corrosion resistance, wear resistance, thermal insulation performance, pollution resistance, mechanical insulation performance, light weight, convenient transportation, convenient construction, long service life, safety, reliability and flexible design, and becomes an indispensable good material in industrial and building production.
In the fields of water supply and drainage, power cables, petroleum and natural gas and the like, the national standard guides and regulates production, design, tests and the like. At present, the system is more used for various municipal sewage treatment, water supply and tap water delivery, farmland irrigation, petrochemical industry and the like. Because the present integrated pipe ditch system is mostly cast-in-place of concrete or customized production, and its shape is mostly the rectangle shell, and the size of a dimension can't be unified according to the project demand, can't realize industrialization batch production completely, therefore the cost is high.
The glass fiber reinforced plastic sand inclusion pipe has excellent mechanical property and processing characteristic, can bear the erosion of most untreated sewage, corrosive soil or underground water and a plurality of chemical substances of acid, alkali and salt seawater, and still has good toughness and extremely high strength at the temperature of minus 30 ℃. The coating does not scale or rust during use, and is not stained and attached by microorganisms such as shellfish and fungus in the sea or sewage. Compared with the material with the same pipe diameter, the weight of the glass fiber reinforced plastic sand adding pipe is only 1/4 of the steel pipe and 1/5 of the concrete, so that the transportation and the installation are very convenient. The service life of the general water supply and drainage sand inclusion glass steel pipe can reach more than 50 years, which is 2 times of that of a steel pipe and a concrete pipe, and the service life of the medium with strong corrosivity is far longer than that of the steel pipe and the like. The glass fiber reinforced plastic product has good corrosion resistance, so that measures such as rust prevention, pollution prevention, insulation, heat preservation and the like and maintenance are not needed, cathode protection is not needed for the buried pipe, and a large amount of maintenance cost can be saved.
Therefore, a comprehensive pipe trench structure needs to be designed, and the purpose is to overcome the defects that the pipe trench made of concrete in the prior art is high in manufacturing cost and long in construction period, and industrial production is inconvenient.
SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solves among the prior art that the trench cost that adopts the concrete to make is high and the inconvenient industrial production's of construction cycle length problem.
The utility model discloses a following technical scheme realizes:
the utility model provides a synthesize trench structure, includes the body, be provided with the steelframe in the body, the steelframe includes vertical pole and horizontal pole, vertical pole is with dividing into a plurality of vertical regions in the body, horizontal pole is with dividing into a plurality of horizontal regions in the body, be provided with a plurality of equipment calandria on vertical pole and the horizontal pole, vertical pole is with this internal three vertical region of left right side that divide into of body, and the region all is provided with large-scale equipment calandria about wherein.
The prior art uses reinforced concrete as a main body and adopts a cast-in-place or pre-support assembly mode for construction, and has the following defects: the manufacturing cost is high, and the pre-branch pipe trench is more expensive at present; the cast-in-place concrete pipe ditch has long construction period, the transportation of the pre-branch pipe ditch is inconvenient, and the cost is correspondingly increased.
The utility model provides a horizontal or vertical steelframe is divided into a plurality of vertical and horizontal regions in with the body, the steelframe divide into the vertical region that left right side three from the top down link up in the body again, it all is provided with the main equipment calandria to control the region, make things convenient for the inspector to overhaul, this structure quality is convenient for transport gently simultaneously, construction convenience, the long-lived safe and reliable and have the nimble characteristics of design, at the prefabricated shaping of mill, on-the-spot direct mount, construction cycle compares cast in situ concrete pipe ditch and shortens more than half, the cost of labor, the cost of manufacture all is showing and is reducing. The cost is low, the construction period is short, cathode protection is not needed to the buried pipe, and a large amount of maintenance cost can be saved.
The comprehensive pipe ditch structure is optimized, and the shape of the pipe body is circular, polygonal and the like, so that the pipe body is in a regular shell shape which is convenient for industrial production; because synthesize the trench system at present and be cast-in-place or the customization production of concrete more, its shape is mostly rectangular shell, and the size of a dimension can't be unified according to the project demand, can't realize industrialization batch production, and this utility model's structure is convenient for industrialization batch production.
The optimized comprehensive pipe ditch structure is characterized in that the material of the pipe body comprises industrial pipes such as a glass fiber reinforced plastic sand inclusion pipe and a bamboo fiber pipe, the pipe body material is convenient for industrial production and meets the strength requirements of compression resistance, corrosion resistance and the like, the pipe body material is more used for various municipal sewage treatment, water supply and tap water conveying, farmland irrigation, petrochemical industry and the like at present, and the comprehensive pipe ditch structure is a breakthrough in the application of novel materials of the pipe body.
Preferably, the comprehensive pipe trench structure is characterized in that the transverse rods comprise a first transverse rod and a second transverse rod, the middle area in the pipe body comprises a pedestrian overhaul channel, and the second transverse rod is arranged below the pedestrian overhaul channel;
the pedestrian access passage is not less than 0.7m by 1.9m, and the length of the transverse rods and the length of the vertical rods are 6m-12 m.
Preferably, a comprehensive pipe ditch structure is adopted, an inclined strut is arranged below the second transverse rod, one end of the inclined strut is connected with the second transverse rod, the other end of the inclined strut is connected with the body wall of the pipe body, and a prefabricated drain pipe is arranged between the inclined struts;
all be provided with the main equipment calandria about the region, the quality is great, so is provided with the bracing under the steelframe, the bracing is used for supporting the pressure that upper portion brought to be provided with prefabricated drain pipe between the bracing, prefabricated drain pipe can be with the water discharge.
Preferably, a comprehensive pipe trench structure is provided, and a first transverse rod is arranged above the pedestrian overhaul channel.
Preferably, a comprehensive pipe trench structure is adopted, a small equipment pipe bank is arranged above the first transverse rod, and a lamp is arranged below the first transverse rod; the lamps are used for illuminating the pedestrian access passage.
The small-sized equipment calandria quality is lighter, does not have too big heavy burden to the steelframe, sets up both to have guaranteed the stability of structure above the steelframe, has ensured the quantity of calandria again, reasonable layout.
Preferably, a comprehensive pipe ditch structure is adopted, and a pipe body is a glass fiber reinforced plastic sand inclusion pipe;
the glass fiber reinforced plastic sand inclusion pipeline can be designed according to various special use requirements, and products with various specifications, pressure grades, rigidity grades or other special properties can be manufactured through changing the design, so that the application range is wide. The coating does not scale or rust during use, and is not stained and attached by microorganisms such as shellfish and fungus in the sea or sewage. Compared with the material with the same pipe diameter, the weight of the glass fiber reinforced plastic sand adding pipe is only 1/4 of the steel pipe and 1/5 of the concrete, so that the transportation and the installation are very convenient. The service life of the general water supply and drainage sand inclusion glass steel pipe can reach more than 50 years, which is 2 times of that of a steel pipe and a concrete pipe, and the service life of the medium with strong corrosivity is far longer than that of the steel pipe and the like.
Preferably, a comprehensive pipe ditch structure is adopted, and a water well is arranged below the glass fiber reinforced plastic sand inclusion pipe;
the water well is independently arranged below the glass fiber reinforced plastic sand inclusion pipe, and the water collecting well can be designed by adopting reinforced concrete or other structural forms according to the actual terrain and is connected and blocked with the pipe wall of the glass fiber reinforced plastic sand inclusion pipe.
Preferably, a comprehensive pipe ditch structure is adopted, and the connection of adjacent glass fiber reinforced plastic sand inclusion pipes adopts at least one of socket joint type connection, flange type connection and butt welding type connection;
the prior art mostly adopts a socket joint type connection mode, the specification forms are various, the diameter is DN50mm-DN3000mm, the length is 3m-12m, the pressure grade is 0.2Mpa-2.5Mpa, and the upper part of the top of the glass fiber reinforced plastic sand inclusion pipe can be used for a fire engine to pass after the top is buried for 1m in the actual engineering.
And uniformly coating a layer of colloid on the socket part, coating the colloid with uniform thickness, coating a layer of glass cloth, coating unsaturated resin, coating the glass cloth again, and repeating the steps until the thickness meets the requirement.
Preferably, a comprehensive pipe ditch structure is adopted, and settlement joints are arranged between a plurality of adjacent glass fiber reinforced plastic sand inclusion pipes;
the settlement joint can prevent the vertical joint arranged on each part of the building from being damaged due to uneven settlement of the foundation.
Preferably, a comprehensive pipe trench structure is adopted, and the orifice of the glass fiber reinforced plastic sand inclusion pipe is provided with an inspection manhole;
the maintenance manhole is arranged above the terrace ground, can be designed according to specific specifications and project actual conditions, and can be connected with other reinforced concrete structures and other structural forms, wherein the other reinforced concrete structures and other structural forms comprise evacuation stairs, structural bodies, other pipe ditches and the like.
Compared with the prior art, the utility model, following advantage and beneficial effect have:
1. the utility model relates to a synthesize trench structure, the inside bracing piece frame system of the on-the-spot installation of the industrial production of being convenient for, equipment calandria is rationally distributed, has both guaranteed the stability of structure, has ensured the quantity of calandria again, and the industrial production of being convenient for just satisfies intensity requirements such as resistance to compression, corrosion resistant.
2. The utility model relates to a synthesize trench structure adopts glass steel sand inclusion to synthesize trench structure corrosion resisting property, wear resistance, thermal insulation performance, antipollution performance, mechanical insulation can be good.
3. The utility model relates to a synthesize trench structure adopts glass steel sand inclusion to synthesize trench structure quality light be convenient for transportation, construction convenience, longe-lived safe and reliable and have the characteristics of design flexibility.
4. The utility model relates to a synthesize trench structure, the cost is low, and construction cycle is short, need not to do cathodic protection to the buried pipe, can practice thrift a large amount of maintenance expenses.
5. The utility model relates to a synthesize trench structure, at present more be used for all kinds of municipal sewage treatment, water supply running water transport, field irrigation, petrochemical industry etc. for the trench trade is a new breakthrough.
Drawings
The accompanying drawings, which are included to provide a further understanding of the embodiments of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the principles of the invention. In the drawings:
fig. 1 is a schematic plan view of the present invention.
Fig. 2 is a sectional view of fig. 1 through 1.
Fig. 3 is a cross-sectional view 2-2 of fig. 1.
1-glass fiber reinforced plastic sand inclusion pipe, 2-steel frame, 3-equipment calandria, 4-prefabricated drain pipe, 5-lamp, 6-water well, 8-settlement joint, 9-manway maintenance channel, 10-first transverse rod and 11-second transverse rod.
Detailed Description
To make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail below with reference to the following examples and drawings, and the exemplary embodiments and descriptions thereof of the present invention are only used for explaining the present invention, and are not intended as limitations of the present invention.
Example 1
As shown in fig. 1, the utility model relates to a comprehensive pipe ditch structure, which comprises a pipe body, wherein a steel frame 2 is arranged in the pipe body, the steel frame 2 comprises a vertical rod and a transverse rod, the vertical rod divides the interior of the pipe body into a plurality of vertical areas, the transverse rod divides the interior of the pipe body into a plurality of transverse areas, a plurality of equipment calandria 3 are arranged on the vertical rod and the transverse rod, the vertical rod divides the interior of the pipe body into a left vertical area, a middle vertical area and a right vertical area, and the left vertical area and the right vertical area are both provided with large-scale equipment calandria 3; the structure of the pipe body comprises a circle and a polygon; the material of the pipe body comprises a glass fiber reinforced plastic sand inclusion pipe 1 and an industrial pipe of a bamboo fiber pipe; this structure quality is light in transportation, construction convenience, longe-lived safe and reliable and have the characteristics of design flexibility, at factory prefabrication shaping, on-the-spot direct mount, construction cycle compares cast in situ concrete pipe ditch and shortens more than half, and cost of labor, cost of manufacture are all showing and are reducing. The cost is low, the construction period is short, cathode protection is not needed to the buried pipe, and a large amount of maintenance cost can be saved.
Example 2
As shown in fig. 1 to 3, in the present embodiment, based on embodiment 1, the transverse rods include a first transverse rod 10 and a second transverse rod 11, the middle area in the pipe body includes a pedestrian access passage 9, and the second transverse rod 11 is disposed below the pedestrian access passage 9; the manway 9 is not less than 0.7m by 1.9m, and the length of the transverse rods and the vertical rods is 6m-12 m.
An inclined strut is arranged below the second transverse rod 11, one end of the inclined strut is connected with the second transverse rod 11, the other end of the inclined strut is connected with the body wall of the pipe body, and a prefabricated drain pipe 4 is arranged between the inclined struts; all be provided with the main equipment calandria 3 about the region, the quality is great, so is provided with the bracing under steelframe 2, the bracing is used for supporting the pressure that upper portion brought to be provided with prefabricated drain pipe 4 between the bracing, prefabricated drain pipe 4 can be with the water discharge.
Example 3
As shown in fig. 1-3, this embodiment is based on embodiments 1 and 2, above which the manway 9 is arranged a first transverse bar 10.
A small equipment row pipe 3 is arranged above the first transverse rod 10, and a lamp 5 is arranged below the first transverse rod 10; the lamp 5 is used for illuminating the pedestrian access passage 9; the 3 qualities of small-size equipment calandria are lighter, do not have too big heavy burden to steelframe 2, set up in 2 tops of steelframe both guaranteed the stability of structure, have ensured the quantity of calandria again, reasonable layout.
The pipe body is a glass fiber reinforced plastic sand inclusion pipe 1; the glass fiber reinforced plastic sand inclusion pipe 1 can be manufactured into products with various specifications, pressure grades, rigidity grades or other special properties by changing the design according to various special use requirements, and has wide application range. The coating does not scale or rust during use, and is not stained and attached by microorganisms such as shellfish and fungus in the sea or sewage. Compared with the material with the same pipe diameter, the weight of the glass fiber reinforced plastic sand adding pipe is only 1/4 of the steel pipe and 1/5 of the concrete, so that the transportation and the installation are very convenient. The service life of the general water supply and drainage sand inclusion glass steel pipe can reach more than 50 years, which is 2 times of that of a steel pipe and a concrete pipe, and the service life of the medium with strong corrosivity is far longer than that of the steel pipe and the like. At present, the system is more used for various municipal sewage treatment, water supply and tap water delivery, farmland irrigation, petrochemical industry and the like.
A water well 6 is arranged below the glass fiber reinforced plastic sand inclusion pipe; the water well 6 is independently arranged below the glass fiber reinforced plastic sand inclusion pipe 1, and the water collecting well 6 can be connected and plugged with the pipe wall of the glass fiber reinforced plastic sand inclusion pipe 1 according to actual topographic design.
The connection of the adjacent glass fiber reinforced plastic sand inclusion pipes 1 adopts at least one of socket joint type connection, flange type connection and butt welding type connection; the prior art mostly adopts a socket joint type connection mode, the specification forms are various, the diameter is DN50mm-DN3000mm, the length is 3m-12m, the pressure grade is 0.2Mpa-2.5Mpa, and the upper part of the glass fiber reinforced plastic sand inclusion pipe 1 can be used for a fire engine to pass after the top is buried for 1m in depth in the actual engineering; and uniformly coating a layer of colloid on the socket part, coating the colloid with uniform thickness, coating a layer of glass cloth, coating unsaturated resin, coating the glass cloth again, and repeating the steps until the thickness meets the requirement.
Settlement joints 8 are arranged between the adjacent glass fiber reinforced plastic sand inclusion pipes 1; the settlement joint 8 can prevent vertical joints arranged for house damage caused by uneven settlement of foundations of all parts of the building.
The orifice of the glass fiber reinforced plastic sand inclusion pipe 1 is provided with an inspection manhole 7; the manhole 7 is arranged above the ground of the terrace.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above description is only the embodiments of the present invention, and is not intended to limit the scope of the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (10)

1. The utility model provides a synthesize trench structure, its characterized in that, includes the body, be provided with steelframe (2) in the body, steelframe (2) include vertical pole and horizontal pole, vertical pole is with dividing into a plurality of vertical regions in the body of body, horizontal pole is with dividing into a plurality of horizontal regions in the body of body, be provided with a plurality of equipment calandria (3) on vertical pole and the horizontal pole, vertical pole is with this internal three vertical region of dividing into left side, middle right side of body, and wherein it all is provided with large-scale equipment calandria (3) to control the region.
2. The integrated duct structure according to claim 1, wherein the tubular body has a circular or polygonal shape.
3. The integrated pipe trench structure according to claim 1, wherein the material of the pipe body comprises glass fiber reinforced plastic sand inclusion pipe (1) and bamboo fiber pipe industrial pipe.
4. A comprehensive pipe trench structure according to claim 1, characterized in that the transverse bars comprise a first transverse bar (10) and a second transverse bar (11), the middle area inside the pipe body comprises a manway (9), and the second transverse bar (11) is arranged under the manway (9).
5. A comprehensive pipe trench structure according to claim 4, wherein an inclined strut is arranged below the second transverse rod (11), one end of the inclined strut is connected with the second transverse rod (11), the other end of the inclined strut is connected with the body wall of the pipe body, and a prefabricated drain pipe (4) is arranged between the inclined struts.
6. A comprehensive pipe trench structure according to claim 4, characterized in that a first transverse bar (10) is arranged above said manway access way (9).
7. A comprehensive pipe trench structure according to claim 4, characterized in that a small equipment row pipe (3) is arranged above the first transverse rod (10), and a lamp (5) is arranged below the first transverse rod (10).
8. A comprehensive pipe trench structure as claimed in claim 3, wherein a water well (6) is arranged below the glass fiber reinforced plastic sand inclusion pipe (1); the connection of the adjacent glass fiber reinforced plastic sand inclusion pipes (1) adopts at least one of socket joint type connection, flange type connection and butt welding type connection.
9. A comprehensive pipe trench structure according to claim 3, wherein settlement joints (8) are arranged between a plurality of adjacent glass fiber reinforced plastic sand inclusion pipes (1).
10. A comprehensive pipe trench structure according to claim 3, wherein the orifice of the glass fiber reinforced plastic sand inclusion pipe (1) is provided with a service manhole.
CN202022929168.4U 2020-12-09 2020-12-09 Synthesize trench structure Active CN214005735U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022929168.4U CN214005735U (en) 2020-12-09 2020-12-09 Synthesize trench structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022929168.4U CN214005735U (en) 2020-12-09 2020-12-09 Synthesize trench structure

Publications (1)

Publication Number Publication Date
CN214005735U true CN214005735U (en) 2021-08-20

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ID=77310835

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022929168.4U Active CN214005735U (en) 2020-12-09 2020-12-09 Synthesize trench structure

Country Status (1)

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CN (1) CN214005735U (en)

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