CN210230888U - High-efficient belt cleaning device of waterline breeds - Google Patents

High-efficient belt cleaning device of waterline breeds Download PDF

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Publication number
CN210230888U
CN210230888U CN201920844612.7U CN201920844612U CN210230888U CN 210230888 U CN210230888 U CN 210230888U CN 201920844612 U CN201920844612 U CN 201920844612U CN 210230888 U CN210230888 U CN 210230888U
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waterline
inlet
vortex
water
tube
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CN201920844612.7U
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Youzhi Ma
马友治
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Shandong Shebaien Environmental Protection Technology Co ltd
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Shandong Shebaien Environmental Protection Technology Co ltd
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Abstract

The utility model provides a breed high-efficient belt cleaning device of waterline, belt cleaning device are including connecting the water pump at the entrance point of breeding the waterline and connecting the stock solution section of thick bamboo at the exit end of breeding the waterline, and the delivery port of water pump passes through pipe connection on the inlet end of breeding the waterline, and the water inlet of water pump is connected with external water source. The outlet end of the culture waterline is connected with a vortex tube, the outer end of the vortex tube is connected with a collecting tube through a liquid discharge tube, and a liquid discharge nozzle of the collecting tube is connected to a liquid inlet at the top of the liquid storage cylinder. The water pump can provide high-pressure rivers and wash breed waterline inner wall, and rivers can take place the vortex at the vortex intraductal in vortex, high-pressure rivers wash the exit end of breeding the waterline repeatedly through vortex pipe, fluid-discharge tube and header backward flow entering liquid storage cylinder, can carry out the rinse thoroughly to the exit end of breeding the waterline. The utility model discloses compare current belt cleaning device to breed waterline abluent more high-efficient and abluent more thoroughly.

Description

High-efficient belt cleaning device of waterline breeds
Technical Field
The utility model belongs to the technical field of breed waterline washs and specifically relates to a breed high-efficient belt cleaning device of waterline.
Background
The aquaculture waterline uses and to feed water in the automatic of plant periodicity, alleviates breeder's work load, can improve the water feeding efficiency of plant simultaneously greatly. At present, a farm mostly uses a colony house mode for cultivation, the environment of the colony house is generally poor, water scales or green moss can be generated on the inner wall of a cultivation waterline after the cultivation waterline is used for a period of time, bacteria can be easily parasitic on the water scales or the green moss on the inner wall of the waterline, and poultry or livestock can be infected with diseases when drinking polluted water. Have waterline cleaning device on the current market, waterline cleaning device adopts steel wire or glass fiber silk structure, and waterline cleaning device clears up in will wearing the waterline, and whole cleaning process is comparatively complicated, especially whole cleaning process needs manual operation. Because the water outlet of the aquaculture water line is exposed at the outermost side, bacteria and dirt are easily stained on the water outlet, the conventional cleaning equipment mostly adopts a direct-current washing mode to clean the aquaculture water line, and the dirt on the water outlet cannot be thoroughly cleaned. With regard to the problems, the high-efficiency cleaning device for the aquaculture waterline is characterized in that a water pump is used for supplying water to wash the aquaculture waterline, a vortex tube is mounted on a water outlet of the aquaculture waterline, water flow generates vortex in the vortex tube and can repeatedly wash the water outlet, and the water outlet is thoroughly cleaned.
SUMMERY OF THE UTILITY MODEL
The utility model provides a breed high-efficient belt cleaning device of waterline adopts the water pump to supply water and washes and breed the waterline, installs the vortex tube on the delivery port of breeding the waterline, and rivers take place the vortex in the vortex tube and can wash the delivery port repeatedly, and the comparison of delivery port clearance is thorough like this.
The technical scheme of the utility model is realized like this: a cleaning device for the high-efficiency cultivation water line is connected with the inlet end and the outlet end of the cultivation water line and comprises a water pump connected with the inlet end of the cultivation water line and a liquid storage cylinder connected with the outlet end of the cultivation water line; the water pump is provided with a water inlet and a water outlet, the water outlet is connected to the inlet end of the culture waterline through a conduit, and the water inlet is connected with an external water source; the outlet end of the culture waterline is connected with a vortex tube, the outer end of the vortex tube is connected with a collecting tube through a liquid discharge tube, the collecting tube is upwards provided with a plurality of liquid inlet nozzles, the tail end of the liquid discharge tube is connected to the liquid inlet nozzles, and the collecting tube is downwards provided with a liquid discharge nozzle; the top of the liquid storage cylinder is provided with a liquid inlet, and the liquid discharge nozzle is connected to the liquid inlet.
Further, a three-way pipe is connected to a water inlet of the water pump, a first electromagnetic valve and a second electromagnetic valve are respectively connected to the outer end of the three-way pipe, and the first electromagnetic valve can be connected with an external water source; and a backflow nozzle is outwards arranged at the bottom of the liquid storage cylinder and is connected with the second electromagnetic valve through a backflow pipe.
The vortex tube comprises a cylinder with two communicated ends, connecting nozzles are arranged at the two ends of the cylinder, and a pair of the connecting nozzles are respectively connected to the outlet end of the cultivation waterline and the liquid discharge tube; the inner diameter value of the cylinder is respectively larger than the inner diameter value of the outlet end of the culture waterline and the inner diameter value of the liquid discharge pipe.
Furthermore, a third electromagnetic valve is connected between the outlet end of the culture waterline and the vortex tube.
By adopting the technical scheme, the beneficial effects of the utility model are that:
the utility model relates to a breed high-efficient belt cleaning device of waterline, belt cleaning device are including connecting the water pump at the entrance point of breeding the waterline and connecting the stock solution section of thick bamboo at the exit end of breeding the waterline, and the delivery port of water pump passes through pipe connection on the inlet end of breeding the waterline, and the water inlet of water pump is connected with external water source. The outlet end of the culture waterline is connected with a vortex tube, the outer end of the vortex tube is connected with a collecting tube through a liquid discharge tube, and a liquid discharge nozzle of the collecting tube is connected to a liquid inlet at the top of the liquid storage cylinder. The water pump can provide high-pressure rivers and wash breed waterline inner wall, and rivers can take place the vortex at the vortex intraductal in vortex, high-pressure rivers wash the exit end of breeding the waterline repeatedly through vortex pipe, fluid-discharge tube and header backward flow entering liquid storage cylinder, can carry out the rinse thoroughly to the exit end of breeding the waterline. The utility model discloses compare current belt cleaning device to breed waterline abluent more high-efficient and abluent more thoroughly.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of the split structure of the present invention;
wherein: 1. the system comprises a breeding waterline, 2, an inlet end, 3, an outlet end, 4, a water pump, 5, a liquid storage barrel, 6, a water inlet, 7, a water outlet, 8, a guide pipe, 9, a vortex pipe, 10, a liquid discharge pipe, 11, a collecting pipe, 12, a liquid inlet nozzle, 13, a liquid discharge nozzle, 14, a liquid inlet, 15, a three-way pipe, 16, a first electromagnetic valve, 17, a second electromagnetic valve, 18, a liquid return nozzle, 19, a return pipe, 20, a barrel, 21, a connecting nozzle, 22 and a third electromagnetic valve.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in fig. 1 and 2, the cleaning device is connected with an inlet end 2 and an outlet end 3 of a cultivation water line 1, and comprises a water pump 4 connected with the inlet end 2 of the cultivation water line 1 and a liquid storage cylinder 5 connected with the outlet end 3 of the cultivation water line 1; the water pump 4 is provided with a water inlet 6 and a water outlet 7, the water outlet 7 is connected to the inlet end 2 of the aquaculture waterline 1 through a conduit 8, and the water inlet 6 is connected with an external water source; the outlet end 3 of the culture waterline 1 is connected with a vortex tube 9, the outer end of the vortex tube 9 is connected with a collecting tube 11 through a liquid discharge tube 10, the collecting tube 11 is upwards provided with a plurality of liquid inlet nozzles 12, the tail end of the liquid discharge tube 10 is connected to the liquid inlet nozzles 12, and the collecting tube 11 is downwards provided with a liquid discharge nozzle 13; the top of the liquid storage cylinder 5 is provided with a liquid inlet 14, and the liquid discharge nozzle 13 is connected to the liquid inlet 14.
The water inlet 6 of the water pump 4 of the embodiment is connected with a three-way pipe 15, the outer end of the three-way pipe 15 is respectively connected with a first electromagnetic valve 16 and a second electromagnetic valve 17, and the first electromagnetic valve 16 can be connected with an external water source; and a backflow nozzle 18 is arranged at the bottom of the liquid storage cylinder 5 outwards, and the backflow nozzle 18 is connected with the second electromagnetic valve 17 through a backflow pipe 19. The backflow nozzle 18 at the bottom of the liquid storage cylinder 5 is connected with the second electromagnetic valve 17 through the backflow pipe 19, and the water flow which is flushed through the aquaculture water line 1 is stored in the liquid storage cylinder 5 and can be reused to clean the inner wall of the aquaculture water line 1.
The vortex tube 9 of the embodiment comprises a cylinder 20 with two through ends, wherein two ends of the cylinder 20 are provided with connecting nozzles 21, and a pair of the connecting nozzles 21 are respectively connected to the outlet end 3 of the cultivation waterline 1 and the drain pipe 10; the inner diameter value of the cylinder 20 is respectively larger than the inner diameter value of the outlet end 3 of the cultivation waterline 1 and the inner diameter value of the liquid discharge pipe 10. The inner diameter value of the cylinder 20 is larger than the inner diameter value of the outlet end 3 of the cultivation waterline 1 and the inner diameter value of the liquid discharge pipe 10, the high-pressure water flow can generate vortex in the cylinder 20, and the high-pressure water flow can reversely flow into the outlet end 3 of the cultivation waterline 1, so that the outlet end 3 of the cultivation waterline 1 can be repeatedly cleaned.
A third electromagnetic valve 22 is connected between the outlet end 3 of the cultivation water line 1 and the vortex tube 9. The outlet end 3 is cleaned separately by controlling the opening or closing of the third on/off valve 22, and the cleaning is more thorough.
The utility model relates to a breed high-efficient belt cleaning device of waterline, belt cleaning device are including connecting at the water pump 4 of the entrance point 2 of breeding waterline 1 and connecting at the stock solution section of thick bamboo 5 of the exit end 3 of breeding waterline 1, and the delivery port 7 of water pump 4 passes through pipe 8 to be connected on the entrance point 2 of breeding waterline 1, and the water inlet 6 of water pump 4 is connected with external water source. The outlet end 3 of the culture waterline 1 is connected with a vortex tube 9, the outer end of the vortex tube 9 is connected with a collecting tube 11 through a liquid discharge tube 10, and a liquid discharge nozzle 13 of the collecting tube 11 is connected on a liquid inlet 14 at the top of the liquid storage cylinder 5. The water pump 4 can provide high-pressure rivers and wash 1 inner wall of breed waterline, and rivers can be through vortex tube 9, fluid-discharge tube 10 and collection pipe 11 backward flow into liquid storage cylinder 5 in, and high-pressure rivers take place the vortex in vortex tube 9, and high-pressure rivers rinse the exit end 3 of breeding waterline 1 repeatedly, can carry out rinse thoroughly to the exit end 3 of breeding waterline 1. The utility model discloses compare current belt cleaning device to breed 1 abluent more high-efficient and abluent more thoroughly of waterline.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (4)

1. A high-efficiency cleaning device for a cultivation waterline is connected with an inlet end (2) and an outlet end (3) of the cultivation waterline (1), and is characterized by comprising a water pump (4) connected with the inlet end (2) of the cultivation waterline (1) and a liquid storage barrel (5) connected with the outlet end (3) of the cultivation waterline (1); the water pump (4) is provided with a water inlet (6) and a water outlet (7), the water outlet (7) is connected to the inlet end (2) of the aquaculture waterline (1) through a conduit (8), and the water inlet (6) is connected with an external water source; a vortex tube (9) is connected to the outlet end (3) of the aquaculture waterline (1), the outer end of the vortex tube (9) is connected with a collecting tube (11) through a liquid discharge tube (10), a plurality of liquid inlet nozzles (12) are arranged on the collecting tube (11) in an upward direction, the tail end of the liquid discharge tube (10) is connected to the liquid inlet nozzles (12), and a liquid discharge nozzle (13) is arranged on the collecting tube (11) in a downward direction; the top of the liquid storage cylinder (5) is provided with a liquid inlet (14), and the liquid discharge nozzle (13) is connected to the liquid inlet (14).
2. The efficient cleaning device for the aquaculture waterlines of claim 1, wherein a three-way pipe (15) is connected to a water inlet (6) of the water pump (4), a first electromagnetic valve (16) and a second electromagnetic valve (17) are respectively connected to the outer end of the three-way pipe (15), and the first electromagnetic valve (16) can be connected with an external water source; the bottom of the liquid storage cylinder (5) is outwards provided with a backflow nozzle (18), and the backflow nozzle (18) is connected with the second electromagnetic valve (17) through a backflow pipe (19).
3. The efficient cleaning device for the cultivation waterline according to claim 1, characterized in that the vortex tube (9) comprises a cylinder (20) with two ends communicated, two ends of the cylinder (20) are provided with connecting nozzles (21), and a pair of the connecting nozzles (21) are respectively connected to the outlet end (3) and the drain pipe (10) of the cultivation waterline (1); the inner diameter value of the cylinder (20) is respectively larger than the inner diameter value of the outlet end (3) of the cultivation waterline (1) and the inner diameter value of the liquid discharge pipe (10).
4. The efficient cleaning device for the cultivation waterline of claim 1, characterized in that a third electromagnetic valve (22) is connected between the outlet end (3) of the cultivation waterline (1) and the vortex tube (9).
CN201920844612.7U 2019-06-05 2019-06-05 High-efficient belt cleaning device of waterline breeds Active CN210230888U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920844612.7U CN210230888U (en) 2019-06-05 2019-06-05 High-efficient belt cleaning device of waterline breeds

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920844612.7U CN210230888U (en) 2019-06-05 2019-06-05 High-efficient belt cleaning device of waterline breeds

Publications (1)

Publication Number Publication Date
CN210230888U true CN210230888U (en) 2020-04-03

Family

ID=69974369

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920844612.7U Active CN210230888U (en) 2019-06-05 2019-06-05 High-efficient belt cleaning device of waterline breeds

Country Status (1)

Country Link
CN (1) CN210230888U (en)

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