CN213508648U - Pond blowdown structure of landscape architecture design - Google Patents

Pond blowdown structure of landscape architecture design Download PDF

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Publication number
CN213508648U
CN213508648U CN202022252506.5U CN202022252506U CN213508648U CN 213508648 U CN213508648 U CN 213508648U CN 202022252506 U CN202022252506 U CN 202022252506U CN 213508648 U CN213508648 U CN 213508648U
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sludge
silt
pipe
mud
pump
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CN202022252506.5U
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何燕
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Shenzhen Ocean Landscape Engineering Design Co ltd
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Shenzhen Ocean Landscape Engineering Design Co ltd
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Abstract

The application relates to a pond sewage discharging structure designed by landscape architecture, which relates to pond sewage discharging equipment, comprising a movable frame and a sludge box arranged on the movable frame, wherein a sludge sucking component for sucking sludge into the sludge box is arranged on the movable frame, an output sludge pump is arranged on the movable frame, a sludge discharging pipe is arranged between the inlet of the output sludge pump and the sludge box, and a sludge outlet pipe is arranged at the outlet of the output sludge pump; utilize and inhale mud subassembly and inhale silt in the silt case, inhale the back full when the silt case, utilize output silt pump to discharge the silt in the silt case along mud pipe and mud pipe to this can convenient and fast discharge the silt in the silt case, increase silt exhaust convenience.

Description

Pond blowdown structure of landscape architecture design
Technical Field
The application relates to pond sewage discharge equipment, in particular to a pond sewage discharge structure designed by landscape architecture.
Background
Gardens, refer to the natural environment and recreational areas of a particular culture. The garden is a beautiful natural environment and a rest area which are created by applying engineering technology and artistic means in a certain region and modifying the terrain (or further building a mountain, stacking stones and managing water), planting trees, flowers and plants, building buildings, arranging garden roads and the like, and is called as a garden. In landscape architecture design, in order to improve the ornamental value of scenic spots, rockeries and artificial ponds are usually manufactured in the scenic spots, and ornamental fishes are cultured in the artificial ponds, so that small natural garden landscapes are built.
Chinese patent No. CN210610727U discloses a pond pollution discharge structure designed for landscape architecture, which relates to the technical field of garden planting; a circulating water inlet and a circulating water outlet are respectively arranged on two sides of the tank body, and a floater sewage collecting device is arranged on the water surface on one side of the circulating water outlet; a sewage collecting net is fixed on the periphery of the sewage collecting net frame, a sewage storage space is formed in the sewage collecting net, and a sewage inlet is formed in one side of the sewage collecting net; both ends of the sewage collecting net frame are respectively fixed with a supporting column; the upper ends of the other two sides of the tank body are respectively provided with a sliding chute, and the support posts are inserted in the sliding chutes; the center of the bottom of the pool body is provided with a concave sedimentation tank, the sedimentation tank is connected with a blow-off pipe, the blow-off pipe is connected with a blow-off pump, and the outlet end of the blow-off pump is provided with a collecting trolley.
In view of the related art in the above, the inventors consider that there are drawbacks in that: when changing the blowdown structure in the use, during the dredge pump inhales the collection dolly with the silt in the sedimentation tank, but in practical application, owing to collect full silt back in the collection dolly, need the workman to clear away the silt in the collection dolly again, inefficiency.
Disclosure of Invention
In order to improve the problem of the blowdown structure discharge silt inefficiency behind the collection silt, this application provides a landscape architecture design's pond blowdown structure.
The application provides a pond blowdown structure of landscape architecture design adopts following technical scheme:
the utility model provides a pond blowdown structure of landscape architecture design, is including removing the frame and setting up the silt case on removing the frame, it is used for inhaling the mud sucking assembly of silt case to be equipped with on removing the frame, be equipped with the output silt pump on removing the frame, be equipped with the mud pipe between import and the silt case of output silt pump, the export of output silt pump is equipped with out the mud pipe.
Through adopting above-mentioned technical scheme, utilize to inhale the mud subassembly and inhale silt in the silt case, inhale the back when the silt case, utilize output silt pump to discharge the silt in the silt case along mud pipe and mud pipe to this can convenient and fast with the silt discharge in the silt case, increase silt exhaust convenience.
Optionally, the sludge discharge pipe is arranged close to one side of the bottom of the sludge box;
be equipped with the connecting axle on the interior diapire of silt case, it is connected with row's mud board to rotate on the connecting axle, row's mud board is located the below of mud pipe, the one side that the connecting axle was kept away from to row's mud pipe is equipped with and colludes the ring, be equipped with driving motor on the roof of silt case, driving motor's the coaxial axis of rotation that is equipped with of motor shaft, around being equipped with in the axis of rotation and connecting the rope, connect the rope and keep away from the axis of rotation and stretch into in the silt case and with collude the.
Through adopting above-mentioned technical scheme, when exporting silt, utilize driving motor drive axis of rotation to can be around rotating the epaxial with connecting the rope, thereby can stimulate row's mud board and rotate round the connecting axle, thereby can export silt bottom of the case portion to row's mud pipe one side, with this can reduce remaining silt in the silt case.
Optionally, a tensioning wheel for the connecting rope to pass around is rotatably arranged on the top wall of the sludge box.
By adopting the technical scheme, the tensioning wheel is utilized to tension the connecting rope, so that the stability of pulling the mud discharging plate by the connecting rope is increased
Optionally, the sludge suction assembly comprises an input sludge pump arranged on the movable frame, a sludge suction pipe is arranged at an inlet of the input sludge pump, an input pipe is arranged at an outlet of the input sludge pump, and one end, far away from the input sludge pump, of the input sludge pump is connected with the top wall of the sludge box.
Through adopting above-mentioned technical scheme, when needs clearance pond silt, utilize input silt pump with the silt in the pond along mud suction pipe and input tube input silt case to this can convenient and fast clear up the silt in the pond.
Optionally, a connecting plate is arranged at the pipe orifice of the sludge suction pipe, a power motor is arranged on the connecting plate, a power rod is coaxially arranged on a motor shaft of the power motor, and a helical blade is arranged on the outer side wall of the power rod.
Through adopting above-mentioned technical scheme, utilize motor shaft drive power lever of power motor to rotate to can drive helical blade and rotate, and then can hank silt and loose, conveniently input the silt pump and put silt into the silt case along the suction pipe.
Optionally, a counterweight is arranged on one side of the connecting plate, which is far away from the mud suction pipe.
Through adopting above-mentioned technical scheme, utilize the balancing weight balanced power motor's weight, be favorable to increasing the stability of removing the suction dredge.
Optionally, a connecting ring is arranged at the pipe orifice of the sludge suction pipe, and a fish filtering net is arranged on one side, far away from the sludge suction pipe, of the connecting ring.
Through adopting above-mentioned technical scheme, when inhaling silt, utilize and strain the fish net and filter the fish, be favorable to reducing the possibility that fish got into the silt case.
Optionally, at least two sliding grooves are formed in the outer side wall of the pipe orifice of the sludge suction pipe along the axial direction of the pipe orifice, a fixed groove is formed in one side of the sliding groove, which is far away from the pipe orifice of the sludge suction pipe, along the circumferential direction of the sludge suction pipe, a sliding groove is formed in one side of the fixed groove, which is far away from the sliding groove, an insertion block is arranged in the sliding groove, and a spring is arranged between the insertion block and the bottom wall of the sliding groove;
the inner side wall of the connecting ring is provided with a sliding block which sequentially slides into the fixing groove of the sliding groove, and the side wall of the sliding block is provided with a jack for inserting the insertion block.
Through adopting above-mentioned technical scheme, after long-term use strains the fish net, strain the fish net and easily blockked up by silt, so remove the inserted block, the extrusion spring rotates the go-between, shifts out fixed slot and spout with the slider, can dismantle the go-between and change to this can convenient and fast will strain the fish net and change.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the sludge is sucked into the sludge box by the sludge sucking assembly, and then the sludge in the sludge box is discharged along the sludge discharge pipe and the sludge discharge pipe by the sludge output pump, so that the working mode of manually cleaning the sludge by workers can be replaced, and the convenience of discharging the sludge is improved;
2. the connecting rope is wound on the rotating shaft by using the driving motor, so that the sludge pump can be conveniently and quickly discharged, and the reduction of residual sludge in the sludge tank is facilitated;
3. the power motor is utilized to drive the power rod to rotate, so that the spiral blades can twist up the sludge, and the sludge is conveniently sucked by the sludge suction pipe.
Drawings
Fig. 1 is a schematic structural diagram of a pond sewage draining structure designed by landscape architecture in the embodiment of the application.
Fig. 2 is a schematic view showing an explosive structure between the connection ring and the suction pipe in the embodiment.
Fig. 3 is a schematic sectional view of the plane a-a in fig. 1.
Description of reference numerals: 1. a movable frame; 10. a roller; 2. a sludge tank; 20. a connecting shaft; 21. a mud discharging plate; 22. hooking a ring; 23. a drive motor; 24. a rotating shaft; 25. connecting ropes; 26. a tension wheel; 3. a mud suction assembly; 30. inputting into a sludge pump; 31. a mud suction pipe; 32. an input tube; 33. a connecting plate; 34. a power motor; 35. a power rod; 36. a helical blade; 37. a balancing weight; 38. a connecting ring; 39. filtering the fish net; 300. a chute; 301. fixing grooves; 302. a sliding groove; 303. inserting a block; 304. a spring; 305. a slider; 306. a jack; 4. a sludge discharge assembly; 40. a sludge output pump; 41. a sludge discharge pipe; 42. and (4) a mud outlet pipe.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses pond blowdown structure of landscape architecture design.
Referring to fig. 1, a pond sewage discharging structure designed by landscape architecture comprises a movable frame 1, wherein a plurality of rollers 10 are arranged on the bottom wall of the movable frame 1, a sludge box 2 is arranged on the movable frame 1, and a sludge suction assembly 3 for sucking sludge into the sludge box 2 and a sludge discharge assembly 4 for discharging sludge in the sludge box 2 are respectively arranged on the movable frame 1; when clearance pond silt, earlier remove to the pond limit with removing frame 1, utilize to inhale mud subassembly 3 and inhale silt case 2 with the silt in the pond, will remove frame 1 again, utilize the output of arranging mud subassembly 4 in with silt case 2 to this can replace the manual silt of clearing up among the silt case 2 of workman, improves the convenience of clearance silt.
Referring to fig. 1, the sludge suction assembly 3 includes an input sludge pump 30 disposed on the moving frame 1, an inlet of the input sludge pump 30 is provided with a sludge suction pipe 31, an outlet thereof is provided with an input pipe 32, and one end of the input pipe 32 far from the input sludge pump 30 is connected with a top wall of the sludge tank 2; when sludge needs to be cleaned, the sludge suction pipe 31 is placed in the pond, and the sludge is sucked into the sludge box 2 from the sludge suction pipe 31 and the input pipe 32 through the input sludge pump 30, so that the sludge at the bottom of the pond can be cleaned conveniently and quickly.
Referring to fig. 1, a connecting plate 33 is arranged at a pipe orifice of a sludge suction pipe 31, a power motor 34 is arranged on the connecting plate 33, a power rod 35 is coaxially arranged on a motor shaft of the power motor 34, the power rod 35 is arranged along the axial direction of the sludge suction pipe 31, and a helical blade 36 is arranged on the outer side wall of the power rod 35; the power rod 35 is driven by the power motor 34 to rotate, and the spiral blade 36 can be screwed into the sludge, so that the sludge can be stirred and loosened, and the sludge can be conveniently pumped up by the sludge pump 30.
Referring to fig. 1, a counterweight 37 is arranged on one side of the connecting plate 33 away from the suction pipe 31; the weight of the power motor 34, the power rod 35 and the helical blade 36 is balanced by the counterweight 37, which is beneficial to increasing the stability of the mud suction pipe 31 during mud suction.
Referring to fig. 2, when the mud suction pipe 31 sucks mud, small fish are easily sucked into the mud suction pipe 31, and the mud suction of the mud suction pipe 31 is affected, so at least two sliding grooves 300 are arranged on the outer side wall of the pipe opening of the mud suction pipe 31 and along the axial direction of the small fish, the sliding grooves 300 can be two, one side of the sliding groove 300, away from the pipe opening of the mud suction pipe 31, of each sliding groove 300 is provided with a fixing groove 301 along the circumferential direction of the mud suction pipe 31, one side of the fixing groove 301, away from the sliding groove 300, is provided with a sliding groove 302, an insertion block 303 in a T shape is arranged in the sliding groove 302, and a spring 304 is arranged between.
Referring to fig. 2, a connecting ring 38 is arranged at the pipe orifice of the sludge suction pipe 31, a fish filtering net 39 is arranged on one side of the connecting ring 38 away from the sludge suction pipe 31, a sliding block 305 which sequentially slides into a fixing groove 301 of a sliding chute 300 is arranged on the inner side wall of the connecting ring 38, and an insertion hole 306 for inserting an insertion block 303 is arranged on the side wall of the sliding block 305; before sucking mud, remove inserted block 303 earlier, extrusion spring 304, overlap go-between 38 on mud suction pipe 31, slide slider 305 in spout 300 again, when sliding to spout 300 bottom, rotate go-between 38 again, slide slider 305 in fixed slot 301, when sliding to fixed slot 301 bottom, loosen inserted block 303, spring 304 inserts inserted block 303 in jack 306, with this can convenient and fast fix go-between 38 on mud suction pipe 31, utilize and strain fish net 39 and filter the fish, be favorable to reducing the possibility that the fish got into mud suction pipe 31.
Referring to fig. 3, the sludge discharging assembly 4 comprises an output sludge pump 40 arranged on the movable frame 1, the inlet of the output sludge pump 40 is provided with a sludge discharging pipe 41, the outlet is provided with a sludge discharging pipe 42, one end of the sludge discharging pipe 41 far away from the output sludge pump 40 is connected with the sludge tank 2, and one side of the sludge discharging pipe 41 near the bottom of the sludge tank 2 is arranged; when the sludge in the sludge tank 2 needs to be cleaned, the sludge in the sludge tank 2 is output by the output sludge pump 40, so that the sludge can be conveniently and quickly discharged out of the sludge tank 2.
Referring to fig. 3, when sludge is discharged, sludge is easily left at the bottom of the sludge tank 2; therefore, the top wall of the sludge tank 2 is provided with a driving motor 23, a motor shaft of the driving motor 23 is coaxially provided with a rotating shaft 24, a connecting rope 25 is wound on the rotating shaft 24, and the top wall of the sludge tank 2 is rotatably provided with a tension pulley 26 for the connecting rope 25 to pass; the friction between the connecting rope 25 and the sludge tank 2 is reduced.
Referring to fig. 3, a connecting shaft 20 is arranged on the inner bottom wall of the sludge box 2 and below a driving motor 23, a sludge discharge plate 21 is rotatably connected to the connecting shaft 20, the sludge discharge plate 21 is arranged below a sludge discharge pipe 41, a hook ring 22 is arranged on one side of the sludge discharge pipe 41 away from the connecting shaft 20, and one end of a connecting rope 25 away from a tension pulley 26 extends into the sludge box 2 and is connected with the hook ring 22; when the output sludge pump 40 discharges sludge, the driving motor 23 is started, the driving motor 23 drives the rotating shaft 24 to rotate, so that the connecting rope 25 can be wound, the sludge discharge plate 21 can be pulled to rotate, and sludge at the bottom of the sludge tank 2 can be driven to flow towards one side of the sludge discharge pipe 41, so that residual sludge in the sludge tank 2 can be reduced.
The implementation principle of the pond pollution discharge structure designed by landscape architecture in the embodiment of the application is as follows: when the clearance, utilize and inhale mud subassembly 3 and inhale silt in the pond in silt case 2, when needing to arrange mud, utilize row mud subassembly 4 with silt discharge silt case 2 to this working method that can replace the manual clearance silt of workman in silt case 2 alleviates workman work burden, improves work efficiency.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a pond blowdown structure of landscape architecture design which characterized in that: including removing frame (1) and setting up silt case (2) on removing frame (1), be equipped with on removing frame (1) and be used for inhaling silt mud sucking assembly (3) of silt case (2), be equipped with output silt pump (40) on removing frame (1), be equipped with between the import of output silt pump (40) and silt case (2) mud pipe (41), the export of output silt pump (40) is equipped with out mud pipe (42).
2. A landscape architecture designed pond drainage structure according to claim 1, wherein: the sludge discharge pipe (41) is arranged close to one side of the bottom of the sludge box (2);
be equipped with on the inner diapire of silt case (2) connecting axle (20), it is connected with mud discharging plate (21) to rotate on connecting axle (20), mud discharging plate (21) are located the below of mud discharging pipe (41), one side that connecting axle (20) were kept away from in mud discharging pipe (41) is equipped with and colludes ring (22), be equipped with driving motor (23) on the roof of silt case (2), the coaxial axis of rotation (24) that is equipped with of motor shaft of driving motor (23), around being equipped with on axis of rotation (24) and connecting rope (25), connect rope (25) keep away from axis of rotation (24) and stretch into in silt case (2) and with collude ring (22) and be connected.
3. A landscape architecture designed pond drainage structure according to claim 2, wherein: and a tension wheel (26) which is used for the connecting rope (25) to pass by is rotatably arranged on the top wall of the sludge box (2).
4. A landscape architecture designed pond drainage structure according to claim 1, wherein: the sludge suction assembly (3) comprises an input sludge pump (30) arranged on the movable frame (1), a sludge suction pipe (31) is arranged at an inlet of the input sludge pump (30), an input pipe (32) is arranged at an outlet of the input sludge pump (30), and one end, far away from the input sludge pump (30), of the input pipe (32) is connected with the top wall of the sludge box (2).
5. A landscape architecture designed pond drainage structure according to claim 4, wherein: the pipe mouth department of suction dredge (31) is equipped with connecting plate (33), be equipped with power motor (34) on connecting plate (33), the motor shaft of power motor (34) is coaxial to be equipped with power rod (35), be equipped with helical blade (36) on the lateral wall of power rod (35).
6. A landscape architecture designed pond drainage structure according to claim 5, wherein: and a counterweight (37) is arranged on one side of the connecting plate (33) far away from the mud suction pipe (31).
7. A landscape architecture designed pond drainage structure according to claim 4, wherein: the pipe orifice of the sludge suction pipe (31) is provided with a connecting ring (38), and one side of the connecting ring (38) far away from the sludge suction pipe (31) is provided with a fish filtering net (39).
8. A landscape architecture designed pond drainage structure according to claim 7, wherein: the outer side wall of the pipe orifice of the mud suction pipe (31) is provided with at least two sliding grooves (300) along the axial direction, one side of each sliding groove (300) far away from the pipe orifice of the mud suction pipe (31) is provided with a fixing groove (301) along the circumferential direction of the mud suction pipe (31), one side of each fixing groove (301) far away from the corresponding sliding groove (300) is provided with a sliding groove (302), an inserting block (303) is arranged in each sliding groove (302), and a spring (304) is arranged between each inserting block (303) and the bottom wall of each sliding groove (302);
the inner side wall of the connecting ring (38) is provided with a sliding block (305) which sequentially slides into the fixing groove (301) of the sliding groove (300), and the side wall of the sliding block (305) is provided with an insertion hole (306) for the insertion of the insertion block (303).
CN202022252506.5U 2020-10-11 2020-10-11 Pond blowdown structure of landscape architecture design Active CN213508648U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022252506.5U CN213508648U (en) 2020-10-11 2020-10-11 Pond blowdown structure of landscape architecture design

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022252506.5U CN213508648U (en) 2020-10-11 2020-10-11 Pond blowdown structure of landscape architecture design

Publications (1)

Publication Number Publication Date
CN213508648U true CN213508648U (en) 2021-06-22

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Application Number Title Priority Date Filing Date
CN202022252506.5U Active CN213508648U (en) 2020-10-11 2020-10-11 Pond blowdown structure of landscape architecture design

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Country Link
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