CN214829785U - Water distribution device of biochemical pool - Google Patents

Water distribution device of biochemical pool Download PDF

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Publication number
CN214829785U
CN214829785U CN202121124894.7U CN202121124894U CN214829785U CN 214829785 U CN214829785 U CN 214829785U CN 202121124894 U CN202121124894 U CN 202121124894U CN 214829785 U CN214829785 U CN 214829785U
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Prior art keywords
treatment tank
tank
water
buffer tank
connecting pipe
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CN202121124894.7U
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Chinese (zh)
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胡丽
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Chongqing Zunyu Environmental Protection Engineering Co ltd
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Chongqing Zunyu Environmental Protection Engineering Co ltd
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Abstract

The utility model belongs to the technical field of water distribution devices, in particular to a biochemical pool water distribution device, which comprises a pool body, a buffer tank and a treatment tank, wherein the buffer tank and the treatment tank are both positioned on the right side of the pool body, the treatment tank is positioned above the buffer tank, an upper cover is arranged above the treatment tank, the upper cover is connected with the treatment tank through a bolt, a filter plate is arranged inside the treatment tank, a filter screen is embedded in the filter plate and used for filtering impurities in water, a water pump is arranged between the buffer tank and the treatment tank, a first connecting pipe is connected between the upper end of the buffer tank and the water pump, a second connecting pipe is connected between the lower end of the treatment tank and the water pump, the treatment tank and the buffer tank sequentially pass through the second connecting pipe, the water pump and the first connecting pipe from top to bottom, a rotating plate is arranged inside the buffer tank and used for buffering the speed of water flow; the utility model discloses effectively avoid the inside water of cell body to spill over and cause the trouble, the cushioning effect through changeing the board stops rivers, avoids closing the too urgent injury that causes the solenoid valve of rivers suddenly with the solenoid valve.

Description

Water distribution device of biochemical pool
Technical Field
The utility model belongs to the technical field of water distribution device technique and specifically relates to a biochemical pond water distribution device is related to.
Background
The biochemical pond is the device that goes on detaching to the inside impurity of sewage, its main principle is that the feeding is stood, make the impurity in the sewage subside under the effect of various chemical raw materials and separate impurity and water, current biochemical pond can be equipped with water distribution device usually, current water distribution device lets in water from biochemical pond bottom through the water pump usually, the in-process that lets in generally needs the user to observe the surface of water of biochemical pond inside, closed the valve again behind the suitable water level and stopped the water distribution, the inside water of biochemical pond just is filled easily and is overflowed when the user is unnoticed, the valve also causes the damage under more urgent rivers impact easily when closing the valve, cause the trouble.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the problem that above-mentioned exists with not enough, provide a biochemical pond water distribution device, effectively avoid the inside water of cell body to spill over and cause the trouble, block rivers through the cushioning effect who changes the board, avoid suddenly closing rivers with the solenoid valve and cause the injury to the solenoid valve too urgently.
In order to achieve the purpose, the adopted technical scheme is as follows:
the utility model provides a biochemical pond water distribution device, includes cell body, baffle-box and handles the case:
the buffer tank and the treatment tank are both positioned on the right side of the pool body, and the treatment tank is positioned above the buffer tank;
an upper cover is arranged above the treatment box, the upper cover is connected with the treatment box through bolts, a filter plate is arranged inside the treatment box, a filter screen is embedded into the filter plate, and the filter screen is used for filtering impurities in water;
a water pump is arranged between the buffer tank and the treatment tank, a first connecting pipe is connected between the upper end of the buffer tank and the water pump, a second connecting pipe is connected between the lower end of the treatment tank and the water pump, and the treatment tank and the buffer tank are communicated through the second connecting pipe, the water pump and the first connecting pipe from top to bottom in sequence;
the buffer box is internally provided with a rotating plate which is used for buffering the speed of water flow.
Preferably, a water inlet pipe communicated with the inside of the upper cover is inserted above the upper cover, a ring of ring plate is connected above the inner wall of the treatment box, and the filter plate is positioned above the ring plate.
Preferably, the left side and the right side of the upper surface of the ring plate are both provided with slots, the left end and the right end of the lower surface of the filter plate are both connected with inserted rods corresponding to the slots, and the filter plate is detachably connected with the ring plate through the inserted rods.
Preferably, the lower end of the filter screen is arc-shaped, and the lower end of the filter screen is embedded into the annular plate.
Preferably, the side groove has been opened to baffle-box inner wall left surface, it is located the side inslot portion to change the board, the inside upper end of side inslot is rotated and is connected with the pivot, the motor is installed to the baffle-box rear end, motor power take off end is connected with the pivot rear end, it is connected with the pivot to change board upper end, it can rotate right to correspond about to with connecting pipe.
Preferably, be connected with the input tube between cell body and the baffle-box, the input tube is located the side channel below, cell body and baffle-box communicate with each other through the input tube, the PLC controller is installed in the inside lower extreme embedding of baffle-box, the PLC controller is located the input tube below, the solenoid valve is installed to input tube outside, the embedding of cell body inner wall right side upper end is installed the moisture inductor, motor, solenoid valve all with PLC controller electric connection.
The utility model has the advantages that: because the moisture inductor is installed in the embedding of cell body inner wall right side upper end, when the surface of water in the cell body risees to the position of moisture inductor, the moisture inductor alright with the existence of effectual sensing moisture, the moisture inductor alright with give PLC controller with signal transmission, PLC controller alright with control motor drive commentaries on classics board rotates right, the commentaries on classics board when rotating right alright with the connecting pipe that is used for supplying water on the baffle-box about one, commentaries on classics board alright with effectual rivers that flow into in the baffle-box, the simultaneous control solenoid valve is closed and is avoided rivers to continue to flow in the cell body through the baffle-box again inside, the effectual inside water of having avoided the cell body spills over and causes the trouble, the cushioning effect through changeing the board stops rivers, rivers cause the injury to the solenoid valve too urgently when avoiding suddenly closing the solenoid valve.
Drawings
Fig. 1 is a schematic view of the overall three-dimensional structure of the present invention;
FIG. 2 is a schematic view of the overall front view cross-section structure of the present invention;
FIG. 3 is a schematic view of the left side cross-sectional structure of the buffer box of the present invention;
fig. 4 is an enlarged schematic view of a part a of fig. 2 according to the present invention;
fig. 5 is a schematic diagram of a partially enlarged structure B of fig. 2 according to the present invention.
The labels in the figure are: the device comprises a tank body 101, a moisture sensor 102, an input pipe 103, an electromagnetic valve 104, a PLC 105, a buffer tank 106, a first connecting pipe 107, a water pump 108, a second connecting pipe 109, a treatment tank 110, an upper cover 111, a water inlet pipe 112, a rotating plate 113, a side groove 114, a rotating shaft 115, a motor 116, a ring plate 117, a filter plate 118, an inserted link 119, a slot 120 and a filter screen 121.
Detailed Description
As shown in fig. 1 to 5, the application is a biochemical pool water distribution device, which comprises a pool body 101, a buffer tank 106 and a processing tank 110, wherein the buffer tank 106 and the processing tank 110 are both positioned on the right side of the pool body 101, the processing tank 110 is positioned above the buffer tank 106, an upper cover 111 is arranged above the processing tank 110, the upper cover 111 is connected with the processing tank 110 through bolts, a filter plate 118 is arranged inside the processing tank 110, a filter screen 121 is embedded into the filter plate 118 and used for filtering impurities in water, a water inlet pipe 112 communicated with the inside of the upper cover 111 is inserted into the upper part of the upper cover 111, a ring plate 117 is connected to the upper part of the inner wall of the processing tank 110, the filter plate 118 is positioned above the ring plate 117, the pool body 101 is embedded into the ground, the buffer tank 106 at the lower end of the right side of the pool body 101 is also embedded into the ground, the processing tank 110 is installed on the ground, and water is introduced into the processing tank 110 through the water inlet pipe 112, water can be filtered through the filter screen 121 in the filter plate 118, and larger impurities in the water can stay on the filter screen 121, so that the situation that other parts of the water distribution device are blocked by large impurities is effectively avoided;
the left side and the right side of the upper surface of the ring plate 117 are provided with slots 120, the left end and the right end of the lower surface of the filter plate 118 are connected with inserting rods 119 corresponding to the slots 120, the filter plate 118 is detachably connected with the ring plate 117 through the inserting rods 119, the lower end of the filter screen 121 is arc-shaped, the lower end of the filter screen 121 is embedded into the ring plate 117, bolts between the upper cover 111 and the treatment tank 110 are unscrewed to remove the connection between the upper cover 111 and the treatment tank 110, so that the upper cover 111 is taken down, the filter plate 118 is taken up upwards, the inserting rods 119 at the lower end of the filter plate 118 can be separated from the slots 120, the filter plate 118 can be conveniently separated from the ring plate 117, a user can replace the filter plate 118, a new filter plate 118 is inserted into the slots 120 through the inserting rods 119 at the lower end of the filter plate 118 to be clamped with the ring plate 117, the user inserts the lower end of the filter screen 121 to the center of the ring plate 117, and then the upper cover 111 is bolted with the treatment tank 110 again, the filter plate 118 can be replaced, the lower end of the filter screen 121 is arc-shaped and is embedded into the annular plate 117, so that the contact area between water and the filter screen 121 can be increased to a certain extent, the filter screen 121 can intercept larger impurities in water more effectively, the filter screen 121 can be supported to a certain extent through the annular plate 117, and the filter screen 121 is prevented from being damaged by larger impact;
a water pump 108 is arranged between the buffer tank 106 and the treatment tank 110, a first connecting pipe 107 is connected between the upper end of the buffer tank 106 and the water pump 108, a second connecting pipe 109 is connected between the lower end of the treatment tank 110 and the water pump 108, the treatment tank 110 and the buffer tank 106 are communicated with each other through the second connecting pipe 109, the water pump 108 and the first connecting pipe 107 from top to bottom in sequence, a rotating plate 113 is arranged in the buffer tank 106 and used for buffering the speed of water flow, a side groove 114 is formed in the left surface of the inner wall of the buffer tank 106, the rotating plate 113 is positioned in the side groove 114, a rotating shaft 115 is rotatably connected to the upper end in the side groove 114, a motor 116 is installed at the rear end of the buffer tank 106, the power output end of the motor 116 is connected with the rear end of the rotating shaft 115, the upper end of the rotating plate 113 is connected with the rotating shaft 115, the rotating plate 113 can rotate rightwards to vertically correspond to the first connecting pipe 107, and the water pump 108 is electrified, the water pump 108 can suck water into the buffer tank 106 through the second connecting pipe 109 and then pump the water into the buffer tank through the first connecting pipe 107, the motor 116 is powered on, the motor 116 can drive the rotating shaft 115 and the rotating plate 113 to rotate anticlockwise, the rotating plate 113 can rotate rightwards from the inside of the side groove 114 to correspond to one end, inserted into the buffer tank 106, of the first connecting pipe 107 up and down, in the process that the rotating plate 113 rotates rightwards, the rotating plate 113 can generate a blocking force for water flow, the blocking effect of the water flow can be more obvious along with the rightward rotation of the rotating plate 113, so that the effect of buffering the water flow is achieved, and the water supply to the pool body 101 is conveniently stopped subsequently;
an input pipe 103 is connected between the pool body 101 and the buffer tank 106, the input pipe 103 is located below the side groove 114, the pool body 101 is communicated with the buffer tank 106 through the input pipe 103, the PLC 105 is embedded and installed at the lower end inside the buffer tank 106, the PLC 105 is located below the input pipe 103, an electromagnetic valve 104 is installed outside the input pipe 103, a moisture sensor 102 is embedded and installed at the upper end of the right side of the inner wall of the pool body 101, the moisture sensor 102, the motor 116 and the electromagnetic valve 104 are all electrically connected with the PLC 105, when the water surface in the pool body 101 rises to the position of the moisture sensor 102, the moisture sensor 102 can effectively sense the existence of moisture, the moisture sensor 102 can transmit signals to the PLC 105, the PLC 105 can control the motor 116 to drive the rotating plate 113 to rotate rightwards to buffer water flow, and simultaneously control the electromagnetic valve 104 to close to prevent the water flow from continuously flowing into the pool body 101 through the buffer tank 106, the effectual inside water of having avoided cell body 101 overflows and causes the trouble, blocks the rivers through the cushioning effect who changes board 113, avoids suddenly closing back rivers with solenoid valve 104 and causes the injury to solenoid valve 104 too soon.

Claims (6)

1. The biochemical tank water distribution device is characterized by comprising a tank body (101), a buffer tank (106) and a treatment tank (110):
the buffer tank (106) and the treatment tank (110) are both positioned on the right side of the pool body (101), and the treatment tank (110) is positioned above the buffer tank (106);
an upper cover (111) is arranged above the treatment tank (110), the upper cover (111) is connected with the treatment tank (110) through bolts, a filter plate (118) is arranged inside the treatment tank (110), a filter screen (121) is embedded into the filter plate (118), and the filter screen (121) is used for filtering impurities in water;
a water pump (108) is arranged between the buffer tank (106) and the treatment tank (110), a first connecting pipe (107) is connected between the upper end of the buffer tank (106) and the water pump (108), a second connecting pipe (109) is connected between the lower end of the treatment tank (110) and the water pump (108), and the treatment tank (110) and the buffer tank (106) are communicated through the second connecting pipe (109), the water pump (108) and the first connecting pipe (107) in sequence from top to bottom;
the buffer tank (106) is internally provided with a rotating plate (113), and the rotating plate (113) is used for buffering the speed of water flow.
2. The water dispenser of claim 1, wherein: a water inlet pipe (112) communicated with the inside of the upper cover (111) is inserted above the upper cover, a ring plate (117) is connected above the inner wall of the treatment box (110), and the filter plate (118) is positioned above the ring plate (117).
3. The water dispenser of claim 2, wherein: the left side and the right side of the upper surface of the ring plate (117) are provided with slots (120), the left end and the right end of the lower surface of the filter plate (118) are connected with inserting rods (119) corresponding to the slots (120), and the filter plate (118) is detachably connected with the ring plate (117) through the inserting rods (119).
4. The water dispenser of claim 2, wherein: the lower end of the filter screen (121) is arc-shaped, and the lower end of the filter screen (121) is embedded into the annular plate (117).
5. The water dispenser of claim 1, wherein: buffer bin (106) inner wall left surface is opened there is side groove (114), it is inside that commentaries on classics board (113) are located side groove (114), the inside upper end of side groove (114) is rotated and is connected with pivot (115), motor (116) are installed to buffer bin (106) rear end, motor (116) power take off end is connected with pivot (115) rear end, it is connected with pivot (115) to change board (113) upper end, it can rotate right to correspond from top to bottom with connecting pipe (107) to change board (113).
6. The water dispenser of claim 5, wherein: be connected with input tube (103) between cell body (101) and baffle-box (106), input tube (103) are located side groove (114) below, cell body (101) and baffle-box (106) communicate with each other through input tube (103), PLC controller (105) are installed in the inside lower extreme embedding of baffle-box (106), PLC controller (105) are located input tube (103) below, input tube (103) externally mounted has solenoid valve (104), moisture inductor (102) are installed in the embedding of cell body (101) inner wall right side upper end, moisture inductor (102), motor (116), solenoid valve (104) all with PLC controller (105) electric connection.
CN202121124894.7U 2021-05-25 2021-05-25 Water distribution device of biochemical pool Active CN214829785U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121124894.7U CN214829785U (en) 2021-05-25 2021-05-25 Water distribution device of biochemical pool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121124894.7U CN214829785U (en) 2021-05-25 2021-05-25 Water distribution device of biochemical pool

Publications (1)

Publication Number Publication Date
CN214829785U true CN214829785U (en) 2021-11-23

Family

ID=78776383

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121124894.7U Active CN214829785U (en) 2021-05-25 2021-05-25 Water distribution device of biochemical pool

Country Status (1)

Country Link
CN (1) CN214829785U (en)

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