CN220070972U - River bank type infiltration structure - Google Patents

River bank type infiltration structure Download PDF

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Publication number
CN220070972U
CN220070972U CN202321419027.5U CN202321419027U CN220070972U CN 220070972 U CN220070972 U CN 220070972U CN 202321419027 U CN202321419027 U CN 202321419027U CN 220070972 U CN220070972 U CN 220070972U
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filter material
water inlet
material cylinder
hole
river bank
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CN202321419027.5U
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Chinese (zh)
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孟晗
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Individual
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Individual
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Abstract

The utility model provides a river bank type percolation structure, which relates to the technical field of percolation and aims at solving the problems that the prior percolation structure mostly needs to stop the percolation work when a filter material is replaced, so that a working blank period can occur when the filter material is replaced, and the problem comprises a filter material cylinder; the interior of the filter material cylinder is filled with a filter material for percolating river water; a movable plate is rotatably arranged on the filter material cylinder; the movable plate is of an arc-shaped structure; the bottom end of the filter material cylinder is provided with an installation tray; a water inlet pipe is arranged on the mounting carrier plate; the water inlet pipe is provided with a water pump; a water inlet hose is arranged at the bottom end of the water inlet pipe; a plug is arranged at the inner water inlet position of the filter material cylinder; and the plug is provided with a flow hole. The utility model discloses a filter material change work and infiltration work can go on simultaneously, can not lead to appearing the work blank period of infiltration structure because of changing the filter material, improves the efficiency that this infiltration structure improves to river.

Description

River bank type infiltration structure
Technical Field
The utility model belongs to the technical field of percolation, and particularly relates to a river bank type percolation structure.
Background
When water conservancy works are carried out, in order to effectively improve the quality of surface water, a percolation structure is usually arranged on the river bank to carry out percolation treatment on the river water, and the percolation treatment can remove particles, colloid and microorganisms in the water through different filter materials, so that the water quality is improved, and the river ecology restoration function is achieved.
When the conventional river bank type percolation structure is used, as the filter material is a consumable article, the filter material needs to be replaced after one end of use, but when the filter material is replaced, the conventional percolation structure mostly needs to stop the percolation operation, so that an operation blank period can appear when the filter material is replaced.
Disclosure of Invention
In order to solve the technical problems, the utility model provides a river bank type percolation structure, which aims to solve the problem that the conventional percolation structure mostly needs to stop the percolation work when the filter material is replaced, so that a work blank period can appear when the filter material is replaced.
The utility model relates to a purpose and efficiency of river bank formula filtration structure is reached by following concrete technical means:
a river bank type infiltration structure comprises an installation river bank, wherein a filter material cylinder is installed on the installation river bank; the interior of the filter material cylinder is filled with a filter material for percolating river water; a movable plate is rotatably arranged on the filter material cylinder; the movable plate is of an arc-shaped structure, and a locking bolt is arranged on the movable plate; the bottom end of the filter material cylinder is provided with an installation tray; a water inlet pipe is arranged on the mounting carrier plate; the water inlet pipe is of a T-shaped structure; the water inlet pipe is provided with a water pump; a water inlet hose is arranged at the bottom end of the water inlet pipe; a plug is arranged at the inner water inlet position of the filter material cylinder; a flow hole is formed in the plug; the flow holes are in a semicircular structure.
Further, a rotating piece is rotatably arranged at the bottom end of the interior of the filter material cylinder; the rotating piece is positioned between the filter material cylinder and the water inlet pipe; the circumference outer wall of the rotating piece is provided with a worm wheel; the center of the rotating piece is provided with a butt joint; one end of the butt joint is rotatably arranged in the plug; a butt joint hole is formed in the butt joint; the butt joint holes are of a semicircular structure; when the flow hole on the right side is communicated with the butt joint hole on the right side, the flow hole on the left side is in a staggered closing state with the butt joint hole on the left side.
Further, a drain pipe is arranged at the top of the filter material cylinder; a backflow preventing piece is arranged in the drain pipe; the backflow preventing piece is of a disc-shaped structure with a round hole formed in the bottom; the top of the backflow prevention piece is provided with a drain hole; the drain hole is of a semicircular structure; the diameter of the drain hole is larger than that of the round hole on the backflow preventing piece; a rotating head is rotatably arranged in the drain hole; a check plate is arranged on the rotating head; the check plate is of a semicircular structure; and a torsion spring is arranged between the outer wall of the rotating head and the inside of the drain hole.
Furthermore, a connecting pipe is arranged on the drain pipe; the connecting pipe is of a T-shaped structure; a return pipe is arranged on the connecting pipe; the return pipe is of a J-shaped structure; a control shaft is arranged on the outer wall of the filter material cylinder; a worm is arranged on the control shaft; the worm is connected with the worm wheel.
Compared with the prior art, the utility model has the following beneficial effects:
1. according to the utility model, water flow in a river channel is pumped into the water inlet pipe through the water pump, then flows into the filter material cylinder positioned on the right side in a unidirectional way through the matching of the butt joint hole on the right side of the water inlet pipe and the circulation hole on the right side, so that the water flow flows through the filter material to carry out percolation purification on the water flow, and then flows into the river channel for a second time through the water drainage pipe, the connecting pipe and the return pipe in sequence, thereby realizing purification on the water flow in the river channel and improving the water quality of the water flow in the river channel.
2. According to the utility model, the control shaft is rotated to drive the worm to rotate, so that the worm drives the two worm gears to rotate simultaneously, the two worm gears drive the rotating piece and the butt joint to rotate, the butt joint hole on the right side and the circulation hole on the right side rotate to be in a staggered closed state, the butt joint hole on the left side and the circulation hole on the left side rotate to be in a circulation state, thereby changing the unidirectional flowing direction of water flow, enabling the water flow to continue to carry out percolation and purification work through the left filter material cylinder, and simultaneously, because the right filter material cylinder is not filled with water, workers can also replace filter materials in the filter material cylinder, so that the filter material replacement work and percolation work can be carried out simultaneously, the working blank period of a percolation structure caused by replacement of the filter materials is avoided, and the efficiency of the percolation structure for river water improvement is improved.
Drawings
Fig. 1 is a schematic view of the overall structure of the present utility model.
Fig. 2 is a schematic view of the structure of the return pipe and the water inlet pipe of the present utility model.
Fig. 3 is a schematic diagram of a half-section structure of a filter cartridge of the present utility model.
Fig. 4 is a schematic diagram of a semi-cut drain pipe and plug-disassembling structure of the present utility model.
FIG. 5 is a schematic view of the backflow preventer of the present utility model in semi-section.
In the figure, the correspondence between the component names and the drawing numbers is:
1. installing a river bank; 101. a filter material cylinder; 102. a movable plate; 103. a plug; 104. a flow hole; 105. a rotating member; 106. a worm wheel; 107. butt joint; 108. a butt joint hole; 109. a drain pipe; 1010. a backflow preventing member; 1011. a drain hole; 1012. a rotating head; 1013. a check plate; 1014. a torsion spring; 1015. a connecting pipe; 1016. a return pipe; 1017. a control shaft; 1018. a worm; 2. mounting a loading disc; 201. a water inlet pipe; 202. a water pump; 203. and a water inlet hose.
Detailed Description
Embodiments of the present utility model are described in further detail below with reference to the accompanying drawings and examples.
Examples:
as shown in fig. 1 to 5:
the utility model provides a river bank type infiltration structure, which comprises an installation river bank 1, wherein a filter material cylinder 101 is arranged on the installation river bank 1; the interior of the filter material cylinder 101 is filled with a filter material for percolating river water; a movable plate 102 is rotatably arranged on the filter material cylinder 101; the movable plate 102 is of an arc-shaped structure, and a locking bolt is arranged on the movable plate 102; the bottom end of the filter material cylinder 101 is provided with an installation tray 2; the mounting plate 2 is provided with a water inlet pipe 201; the water inlet pipe 201 is of a T-shaped structure; the water inlet pipe 201 is provided with a water pump 202; a water inlet hose 203 is arranged at the bottom end of the water inlet pipe 201; a plug 103 is arranged at the inner water inlet position of the filter material cylinder 101; the plug 103 is provided with a flow hole 104; the flow holes 104 are semicircular in structure; the structure is arranged on the river bank, so that the structure can conveniently extract water flow in the river channel;
the water flow in the river channel is pumped into the water inlet pipe 201 through the water pump 202, then flows into the filter material cylinder 101 positioned on the right side in one way through the matching of the butt joint hole 108 on the right side of the water inlet pipe 201 and the flow hole 104 on the right side, flows through the filter material, performs percolation purification on the water flow, and then flows into the river channel for the second time through the water drain pipe 109, the connecting pipe 1015 and the return pipe 1016 in sequence, so that purification on the water flow in the river channel is realized.
Wherein, the inside bottom end of the filter cartridge 101 is rotatably provided with a rotating member 105; the rotary piece 105 is positioned between the filter cartridge 101 and the water inlet pipe 201; the circumference outer wall of the rotating member 105 is provided with a worm wheel 106; the centering position of the rotating member 105 is provided with an abutment 107; one end of the butt joint 107 is also rotatably installed inside the plug 103; the butt joint 107 is provided with a butt joint hole 108; the butt joint hole 108 is in a semicircular structure; when the right side flow hole 104 is communicated with the right side butt joint hole 108, the left side flow hole 104 and the left side butt joint hole 108 are in a staggered closed state;
through rotatory control shaft 1017, make control shaft 1017 drive worm 1018 rotatory, make worm 1018 drive two worm wheel 106 rotations simultaneously, make two worm wheel 106 drive rotation piece 105 and butt joint 107 rotation, make the butt joint hole 108 that is located the right side and the rotation of the circulation hole 104 that is located the right side be the cross closed state, and the butt joint hole 108 that is located the left side can be the circulation state with the rotation of the circulation hole 104 that is located the left side, thereby change the unidirectional flow direction of rivers, make rivers can continue to carry out the infiltration purification work through left filter material section of thick bamboo 101, simultaneously because right side filter material section of thick bamboo 101 has not led water, so the staff can also change the filter material inside filter material section of thick bamboo 101, make filter material change work and infiltration work can go on simultaneously, convenience when improving this infiltration structure and use.
Wherein, the top of the filter material cylinder 101 is provided with a drain pipe 109; a backflow preventing member 1010 is installed inside the drain pipe 109; the backflow preventing member 1010 has a disc-shaped structure with a round hole at the bottom; a drain hole 1011 is formed in the top of the backflow preventing member 1010; the drain hole 1011 has a semicircular structure; the diameter of the drain hole 1011 is larger than the diameter of the round hole on the backflow preventing member 1010; a rotating head 1012 is rotatably installed in the drain hole 1011; the rotating head 1012 is mounted with a check plate 1013; the check plate 1013 is a semicircular structure; a torsion spring 1014 is installed between the outer wall of the rotating head 1012 and the inside of the drain hole 1011; a connection pipe 1015 is installed on the drain pipe 109; the connecting pipe 1015 has a T-shaped structure; a return pipe 1016 is installed on the connection pipe 1015; the return tube 1016 is J-shaped in configuration; a control shaft 1017 is arranged on the outer wall of the filter material cylinder 101; a worm 1018 is mounted on the control shaft 1017; the worm 1018 is connected to the worm wheel 106;
when water flows from the drain pipe 109 to the connecting pipe 1015, the water flow can impulse the check plate 1013 to enable the check plate 1013 to rotate to open the drain hole 1011, so that the purified water flow is conveniently discharged, and when the water flow reversely impacts the check plate 1013 from the direction of the connecting pipe 1015, the check plate 1013 can be limited by the structure because the diameter of the drain hole 1011 is larger than the round hole on the backflow preventing member 1010, and the backflow phenomenon of the water flow is avoided.
Specific use and action of the embodiment: when the water pump is used, water in a river channel is pumped into the water inlet pipe 201 through the water pump 202, then water flows into the filter material cylinder 101 positioned on the right side through the matching of the butt joint hole 108 on the right side of the water inlet pipe 201 and the flow hole 104 on the right side, so that the water flows through the filter material, the water is subjected to infiltration and purification, then the water flows into the river channel for the second time through the water discharge pipe 109, the connecting pipe 1015 and the return pipe 1016 in sequence, the purification of the water flow in the river channel is realized, and when the filter material needs to be replaced, the control shaft 1017 drives the worm 1018 to rotate, the worm 1018 drives the two worm gears 106 to rotate at the same time, the two worm gears 106 drive the rotating member 105 and the butt joint 107 to rotate, the butt joint hole 108 positioned on the right side and the flow hole 104 positioned on the right side are staggered and are in a closed state, the butt joint hole 108 positioned on the left side and the flow hole 104 positioned on the left side are rotated to be in a circulation state, so that the unidirectional flow direction of the water flows through the filter material cylinder 101 on the left side is changed, the water flow can continue to perform the infiltration operation, and meanwhile, the right side filter material 101 can be cleaned through the filter material cylinder 101 on the left side, and the filter material can be replaced through the right side, and the movable filter material plate 102 can also be opened by a worker, and the filter material can be replaced conveniently and conveniently.

Claims (7)

1. A river bank type infiltration structure, characterized in that: the river bank type infiltration structure comprises an installation river bank (1), wherein a filter material cylinder (101) is installed on the installation river bank (1); the interior of the filter material cylinder (101) is filled with a filter material for percolating river water; a movable plate (102) is rotatably arranged on the filter material cylinder (101); the movable plate (102) is of an arc-shaped structure, and a locking bolt is arranged on the movable plate (102); the bottom end of the filter material cylinder (101) is provided with an installation tray (2); a water inlet pipe (201) is arranged on the mounting carrier plate (2); the water inlet pipe (201) is of a T-shaped structure; a water pump (202) is arranged on the water inlet pipe (201); a water inlet hose (203) is arranged at the bottom end of the water inlet pipe (201); a plug (103) is arranged at the inner water inlet position of the filter material cylinder (101); the plug (103) is provided with a flow hole (104); the flow holes (104) are in a semicircular structure.
2. A river bank filtration structure as claimed in claim 1 wherein: a rotating piece (105) is rotatably arranged at the inner bottom end of the filter material cylinder (101); the rotating piece (105) is positioned between the filter material cylinder (101) and the water inlet pipe (201); a worm wheel (106) is arranged on the circumferential outer wall of the rotating piece (105); a butt joint (107) is arranged at the middle position of the rotating piece (105).
3. A river bank filtration structure as claimed in claim 2 wherein: one end of the butt joint (107) is also rotatably arranged in the plug (103); a butt joint hole (108) is formed in the butt joint head (107); the butt joint hole (108) is of a semicircular structure; when the flow hole (104) on the right side is communicated with the butt joint hole (108) on the right side, the flow hole (104) on the left side and the butt joint hole (108) on the left side are in a staggered closed state.
4. A river bank filtration structure as claimed in claim 3 wherein: a drain pipe (109) is arranged at the top of the filter material cylinder (101); a backflow prevention piece (1010) is arranged in the drain pipe (109); the backflow prevention piece (1010) is of a disc-shaped structure with a round hole formed in the bottom; a drain hole (1011) is formed in the top of the backflow preventing piece (1010); the drain hole (1011) is of a semicircular structure.
5. A river bank filtration structure as claimed in claim 4 wherein: the diameter of the drain hole (1011) is larger than that of the round hole on the backflow prevention piece (1010); a rotating head (1012) is rotatably arranged in the drain hole (1011); a check plate (1013) is mounted on the rotating head (1012); the check plate (1013) is of a semicircular structure; a torsion spring (1014) is installed between the outer wall of the swivel head (1012) and the inside of the drain hole (1011).
6. A river bank filtration structure as claimed in claim 5 wherein: a connecting pipe (1015) is arranged on the drain pipe (109); the connecting pipe (1015) is of a T-shaped structure; a return pipe (1016) is arranged on the connecting pipe (1015); the return tube (1016) is J-shaped in configuration.
7. A river bank filtration structure as claimed in claim 6 wherein: a control shaft (1017) is arranged on the outer wall of the filter material cylinder (101); a worm (1018) is mounted on the control shaft (1017); the worm (1018) is connected to the worm wheel (106).
CN202321419027.5U 2023-06-06 2023-06-06 River bank type infiltration structure Active CN220070972U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321419027.5U CN220070972U (en) 2023-06-06 2023-06-06 River bank type infiltration structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321419027.5U CN220070972U (en) 2023-06-06 2023-06-06 River bank type infiltration structure

Publications (1)

Publication Number Publication Date
CN220070972U true CN220070972U (en) 2023-11-24

Family

ID=88814483

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321419027.5U Active CN220070972U (en) 2023-06-06 2023-06-06 River bank type infiltration structure

Country Status (1)

Country Link
CN (1) CN220070972U (en)

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