CN209242727U - Solid matter aperture swirl nozzle separator - Google Patents
Solid matter aperture swirl nozzle separator Download PDFInfo
- Publication number
- CN209242727U CN209242727U CN201821978595.8U CN201821978595U CN209242727U CN 209242727 U CN209242727 U CN 209242727U CN 201821978595 U CN201821978595 U CN 201821978595U CN 209242727 U CN209242727 U CN 209242727U
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- China
- Prior art keywords
- aperture
- swirl nozzle
- tube
- inner tube
- middle pipe
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Abstract
The utility model discloses a kind of solid matter aperture swirl nozzle separator, including the outer pipe, the pipe and the inner pipe, exocoel, lumen and inner cavity are respectively formed between the outer pipe, the pipe and the inner pipe;Dense arrangement, which is corresponded to, on middle pipe and the tube wall of inner tube processes concentric through-hole, and it is managed in this in every a pair of of through-hole corresponding with inner tube and is inlaid with the cylindrical aperture swirl nozzle that center is cavity, the lateral wall of the upper end of the aperture swirl nozzle is equipped with the top aperture tangent with the inner wall of the aperture swirl nozzle and is connected to exocoel, the lateral wall of the lower end of the aperture swirl nozzle is equipped with the lower part aperture tangent with the inner wall of the aperture swirl nozzle and is connected to lumen, and the bottom of the aperture swirl nozzle is equipped with central small hole and is connected to inner cavity.The solid matter aperture swirl nozzle separator has simple for structure, liquid good separating effect, and low power consumption and other advantages are used especially for water-oil separating, purification of water quality and air cleaning of high quality etc..
Description
Technical field
The utility model belongs to isolation technics apparatus field, particularly relates to a kind of separator, more particularly to a kind of
Solid matter aperture swirl nozzle separator.
Background technique
With the development of society, the environmental consciousness of people is more and more stronger, need to discard in the processing of trade effluent
Oil liquid is separated with water, and the waste water for only reaching discharge standard can just be discharged.Divide although current separator has
From effect, but separating effect is bad, it is impossible to be used in water-oil separating, purification of water quality and air cleaning energy of high quality etc..
Summary of the invention
In order to overcome drawbacks described above, the utility model provides a kind of solid matter aperture swirl nozzle separator, using eddy flow
Separation, it is not only structurally reasonable, and also separating effect is obvious, can be used for water-oil separating, purification of water quality and the air cleaning of high quality
Energy is equal.
The utility model is to solve technical solution used by its technical problem: a kind of solid matter aperture swirl nozzle point
From device, including the outer pipe, the pipe and the inner pipe, in one end closed at one end for being placed in middle pipe of inner tube, outer tube sleeve is set to middle pipe and interior
Outside the part that pipe is overlapped, and two ends of outer tube seal between middle pipe lateral wall and inner tube lateral wall respectively;The outer tube
Exocoel is formed between middle pipe, forms lumen between the middle pipe and inner tube, said inner tube is centrally formed inner cavity;The outer tube side
Face is equipped with the inlet tube with the outer tube vertical connection, and the middle pipe other end extends outward to form outlet tube, and said inner tube is another
End extends outward to form overflow pipe;Dense arrangement is corresponded on the middle pipe and the tube wall of inner tube and processes concentric through-hole, and in this
It manages in every a pair of of through-hole corresponding with inner tube and is inlaid with the cylindrical aperture swirl nozzle that center is cavity, with the aperture eddy flow
Nozzle is bottom close to one end of inner tube, and the opposite other end is top, and end cap is equipped at the top of the aperture swirl nozzle and is passed through
The through-hole of the middle pipe is placed in described outer intracavitary, and the lateral wall of the upper end of the aperture swirl nozzle is equipped with and the aperture eddy flow sprays
The tangent top aperture of the inner wall of mouth is simultaneously connected to the exocoel, and the lateral wall of the lower end of the aperture swirl nozzle is equipped with and this
The tangent lower part aperture of the inner wall of aperture swirl nozzle is simultaneously connected to the lumen, during the bottom of the aperture swirl nozzle is equipped with
Heart aperture is connected to the inner cavity.
The aperture swirl nozzle is cylinder as a further improvement of the utility model, and the top aperture is under
Inner wall tangential direction of portion's aperture respectively along the aperture swirl nozzle of its corresponding position is arranged.
The aperture of the top aperture is 0.02-4mm, the lower part aperture as a further improvement of the utility model,
Aperture be 0.02-5mm, the aperture of the central small hole is 0.02-4mm.
The aperture of the lower part aperture is greater than the aperture of top aperture as a further improvement of the utility model, and should
Lower part aperture is identical as the rotation direction of top aperture.
The aperture swirl nozzle is clouded in the middle pipe and inner tube in array as a further improvement of the utility model,
On.
The top aperture is set to the top end cover of the aperture swirl nozzle as a further improvement of the utility model,
On, the central small hole is set to the bottom centre of the aperture swirl nozzle, and the central small hole is close to one end of said inner tube
In the diffusing opening of cone.
The inlet tube is connected with high pressure mixing flow tube road as a further improvement of the utility model,.
The beneficial effects of the utility model are: the solid matter aperture swirl nozzle separator by, in, outer tube formed in,
In, exocoel, and solid matter inlays narrow meshed swirl nozzle between the inner and outer pipe sections, makes between swirl nozzle and three cavitys point
It Xing Cheng not be connected to, when outer tube enters high pressure mixing liquid, be formed under the action of the aperture on swirl nozzle into swirl nozzle
High-speed screw vortex, to carry out the separation of high/low density to mixing liquid medium.With simple for structure, liquid good separating effect,
Low power consumption and other advantages are used especially for water-oil separating, purification of water quality and air cleaning of high quality etc..
Detailed description of the invention
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the utility model section structural schematic diagram;
Fig. 3 is the portion A enlarged structure schematic diagram in Fig. 2;
Fig. 4 is swirl nozzle structural schematic diagram described in the utility model;
Fig. 5 is the utility model swirl nozzle the schematic diagram of the section structure.
In conjunction with attached drawing, make the following instructions:
1 --- outer tube;2 --- middle pipe;
3 --- inner tube;4 --- exocoel;
5 --- lumen;6 --- inner cavity;
7 --- inlet tube;8 --- outlet tube;
9 --- overflow pipe;10 --- swirl nozzle;
11 --- top aperture;12 --- lower part aperture;
13 --- central small hole.
Specific embodiment
Below in conjunction with attached drawing, elaborate to a preferred embodiment of the utility model.But the guarantor of the utility model
Shield range is not limited to following embodiments, i.e., in every case with simple made by present utility model application the scope of the patents and description
Equivalent changes and modifications all still belong within the utility model patent covering scope.
Refering to fig. 1-5, a kind of solid matter aperture swirl nozzle separator, including outer tube 1, middle pipe 2 and inner tube 3, the one of inner tube 3
End seal is closed in the one end for being placed in middle pipe 2, outside the part that outer tube 1 is sheathed on middle pipe 2 and inner tube 3 is overlapped, and two ends of outer tube
Portion seals between middle pipe lateral wall and inner tube lateral wall respectively;Between the outer tube and middle pipe formed exocoel 4, the middle pipe and
Lumen 5 is formed between inner tube, said inner tube is centrally formed inner cavity 6;The outer tube side be equipped with the outer tube vertical connection into
Liquid pipe 7, the middle pipe other end extend outward to form outlet tube 8, and the said inner tube other end extends outward to form overflow pipe 9;Institute
It states and corresponds to dense arrangement on pipe and the tube wall of inner tube and process concentric through-hole, and manage every a pair of through-hole corresponding with inner tube in this
Inside be inlaid with the cylindrical aperture swirl nozzle 10 that center is cavity, using the aperture swirl nozzle close to one end of inner tube the bottom of as
Portion, the opposite other end are top, and end cap is equipped at the top of the aperture swirl nozzle and is placed in across the through-hole of the middle pipe described
Outer intracavitary, the lateral wall of the upper end of the aperture swirl nozzle is equipped with the top aperture tangent with the inner wall of the aperture swirl nozzle
It 11 and is connected to the exocoel, the lateral wall of the lower end of the aperture swirl nozzle is equipped with the inner wall phase with the aperture swirl nozzle
The lower part aperture 12 cut simultaneously is connected to the lumen, and the bottom of the aperture swirl nozzle is equipped with central small hole 13 and the inner cavity
Connection.
Wherein, the aperture swirl nozzle is cylinder, and the top aperture and lower part aperture are respectively along its corresponding position
The inner wall tangential direction of aperture swirl nozzle is arranged.The aperture of the top aperture is 0.02-4mm, the hole of the lower part aperture
Diameter is 0.02-5mm, and the aperture of the central small hole is 0.02-4mm.The aperture of the lower part aperture is greater than the hole of top aperture
Diameter, and the lower part aperture is identical as the rotation direction of top aperture.The aperture swirl nozzle 10 in array be clouded in the middle pipe and
In inner tube.The top aperture is set in the top end cover of the aperture swirl nozzle, and the central small hole is set to the aperture
The bottom centre of swirl nozzle, and the central small hole is in conical diffusing opening close to one end of said inner tube.The inlet tube
It is connected with high pressure mixing flow tube road.
The solid matter aperture swirl nozzle separator forms three cavitys by the outer pipe, the pipe and the inner pipe, between middle pipe and inner tube
Arrangement aperture swirl nozzle is intensively inlayed, the top aperture of the upper surface of setting is connected to exocoel on aperture swirl nozzle, aperture rotation
The following lower part aperture of flow nozzle is connected to lumen, and the central small hole of aperture swirl nozzle bottom is connected to inner cavity.
When high-pressure mixing fluid is filtered large granular impurity, into coming after liquid pipe enters exocoel, due to exocoel
Pressure difference is formed between lumen, pressure difference is formed between lumen and inner cavity, mixed liquor is first in exocoel through aperture swirl nozzle
On top aperture enter aperture swirl nozzle, since top aperture and the inside of aperture swirl nozzle are tangent, mixed liquor
High-speed screw is formed after into aperture swirl nozzle, fluid is flowed at downward spiral, and what centrifugal force made light specific gravity flows to center,
Its revolving speed becomes larger, and centrifugal force, which increases, promotes separation, and the fluid of light specific gravity flows out to inner cavity by central small hole and flows to overflow pipe, specific gravity
Big fluid flows out to lumen by lower part aperture and flows to outlet tube, the adjustable liquid proportional out of installation valve at outlet tube.
The separator increases aperture swirl nozzle quantity by close-packed configuration by close-packed configuration, reduces the interior of swirl nozzle
Chamber diameter and reduction small aperture, fluid can generate bigger centrifugal acceleration in the identical energy of consumption in swirl nozzle, mention
High separating effect, or reach identical separating effect and reduce energy consumption.
It can be seen that the solid matter aperture swirl nozzle separator in, in, outer tube formed in, in, exocoel, and inside
Solid matter inlays aperture swirl nozzle between pipe and outer tube, makes to be respectively formed between aperture swirl nozzle and three cavitys and is connected to, when
When outer tube enters high pressure mixing liquid, enters swirl nozzle under the action of the aperture on aperture swirl nozzle and form high-speed screw whirlpool
Stream, to carry out the separation of high/low density to mixing liquid medium.With simple for structure, liquid good separating effect, it is excellent that low energy consumption etc.
Point is used especially for water-oil separating, purification of water quality and air cleaning of high quality etc..
Claims (7)
1. a kind of solid matter aperture swirl nozzle separator, it is characterised in that: including outer tube (1), middle pipe (2) and inner tube (3), inner tube
(3) in one end closed at one end for being placed in middle pipe (2), outside the part that outer tube (1) is sheathed on middle pipe (2) and inner tube (3) is overlapped,
And two ends of outer tube seal between middle pipe lateral wall and inner tube lateral wall respectively;It is formed between the outer tube and middle pipe outer
Chamber (4), forms lumen (5) between the middle pipe and inner tube, and said inner tube is centrally formed inner cavity (6);The outer tube side is equipped with
With the inlet tube (7) of the outer tube vertical connection, the middle pipe other end extends outward to form outlet tube (8), and said inner tube is another
End extends outward to form overflow pipe (9);Dense arrangement is corresponded on the middle pipe and the tube wall of inner tube and processes concentric through-hole, and should
It is inlaid with the cylindrical aperture swirl nozzle (10) that center is cavity in middle pipe and corresponding every a pair of of the through-hole of inner tube, it is small with this
Hole swirl nozzle is bottom close to one end of inner tube, and the opposite other end is top, is equipped with end cap at the top of the aperture swirl nozzle
And the through-hole for passing through the middle pipe is placed in described outer intracavitary, the lateral wall of the upper end of the aperture swirl nozzle is equipped with and the aperture
The tangent top aperture (11) of the inner wall of swirl nozzle is simultaneously connected to, the outside of the lower end of the aperture swirl nozzle with the exocoel
Wall is equipped with the lower part aperture (12) tangent with the inner wall of the aperture swirl nozzle and is connected to the lumen, the aperture eddy flow spray
The bottom of mouth is equipped with central small hole (13) and is connected to the inner cavity.
2. solid matter aperture swirl nozzle separator according to claim 1, it is characterised in that: the aperture swirl nozzle is
The inner wall tangential direction of cylinder, the top aperture and lower part aperture respectively along the aperture swirl nozzle of its corresponding position is arranged.
3. solid matter aperture swirl nozzle separator according to claim 2, it is characterised in that: the aperture of the top aperture
For 0.02-4mm, the aperture of the lower part aperture is 0.02-5mm, and the aperture of the central small hole is 0.02-4mm.
4. solid matter aperture swirl nozzle separator according to claim 3, it is characterised in that: the aperture of the lower part aperture
Greater than the aperture of top aperture, and the lower part aperture is identical as the rotation direction of top aperture.
5. solid matter aperture swirl nozzle separator according to claim 1, it is characterised in that: the aperture swirl nozzle
(10) it is clouded in the middle pipe and inner tube in array.
6. solid matter aperture swirl nozzle separator according to claim 1, it is characterised in that: the top aperture is set to institute
In the top end cover for stating aperture swirl nozzle, the central small hole is set to the bottom centre of the aperture swirl nozzle, and in this
Heart aperture is close to one end of said inner tube in the diffusing opening of cone.
7. solid matter aperture swirl nozzle separator according to claim 1, it is characterised in that: the inlet tube and high pressure are mixed
Combined pipeline is connected.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821978595.8U CN209242727U (en) | 2018-11-26 | 2018-11-26 | Solid matter aperture swirl nozzle separator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821978595.8U CN209242727U (en) | 2018-11-26 | 2018-11-26 | Solid matter aperture swirl nozzle separator |
Publications (1)
Publication Number | Publication Date |
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CN209242727U true CN209242727U (en) | 2019-08-13 |
Family
ID=67529653
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201821978595.8U Withdrawn - After Issue CN209242727U (en) | 2018-11-26 | 2018-11-26 | Solid matter aperture swirl nozzle separator |
Country Status (1)
Country | Link |
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CN (1) | CN209242727U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109231358A (en) * | 2018-11-26 | 2019-01-18 | 张芮滔 | Solid matter aperture swirl nozzle separator |
-
2018
- 2018-11-26 CN CN201821978595.8U patent/CN209242727U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109231358A (en) * | 2018-11-26 | 2019-01-18 | 张芮滔 | Solid matter aperture swirl nozzle separator |
CN109231358B (en) * | 2018-11-26 | 2023-09-12 | 张芮滔 | Dense small hole cyclone nozzle separator |
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Legal Events
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned | ||
AV01 | Patent right actively abandoned | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20190813 Effective date of abandoning: 20230912 |
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AV01 | Patent right actively abandoned |
Granted publication date: 20190813 Effective date of abandoning: 20230912 |