CN202170275U - Aeration and oxygen-increasing device for microporous hose in pond - Google Patents

Aeration and oxygen-increasing device for microporous hose in pond Download PDF

Info

Publication number
CN202170275U
CN202170275U CN2011202427696U CN201120242769U CN202170275U CN 202170275 U CN202170275 U CN 202170275U CN 2011202427696 U CN2011202427696 U CN 2011202427696U CN 201120242769 U CN201120242769 U CN 201120242769U CN 202170275 U CN202170275 U CN 202170275U
Authority
CN
China
Prior art keywords
flexible pipe
micropore flexible
oxygen
micropore
pond
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2011202427696U
Other languages
Chinese (zh)
Inventor
杨军
罗永巨
杨弘
陈家常
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
LIUZHOU YUJIALE FEED CO Ltd
Original Assignee
LIUZHOU YUJIALE FEED CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by LIUZHOU YUJIALE FEED CO Ltd filed Critical LIUZHOU YUJIALE FEED CO Ltd
Priority to CN2011202427696U priority Critical patent/CN202170275U/en
Application granted granted Critical
Publication of CN202170275U publication Critical patent/CN202170275U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W10/00Technologies for wastewater treatment
    • Y02W10/10Biological treatment of water, waste water, or sewage

Landscapes

  • Farming Of Fish And Shellfish (AREA)

Abstract

The utility model relates to an aquatic water oxygen-increasing technology, in particular to an aeration and oxygen-increasing device for a microporous hose in a pond. The oxygen-increasing device comprises a microporous hose, plastic straight connectors uniformly distributed below the microporous hose and a soft rope sequentially passing through each plastic straight connector, wherein at least one end of the microporous hose is connected with an air outlet pipe of an air compressor or a blower through a sealing hose; each plastic straight connector is bound at the bottom of the microporous hose through an electrician's tape; knots of which the diameter is more than the diameter of the plastic straight connector are tied outside the plastic straight connectors at two ends of the bottom of the microporous hose; the knots are clamped at the outer side ends of the plastic straight connectors at two ends of the bottom of the microporous hose; and the oxygen-increasing device further comprises sandbags which are respectively bound outside the knots at two ends of the soft rope and used for pulling the microporous hose to sink in the water. When the oxygen-increasing device is used, the microporous hose is uniformly pulled by the sandbags to skin at the proper positions under the water, the microporous hose is distributed in the required water layer in a balanced way by adjusting the height of the soft rope and the sandbags at two ends, the sinking height of the microporous hose is proper, and the aeration is uniform.

Description

Pond micropore flexible pipe aeration oxygen replenishing device
Technical field
The utility model relates to a kind of aquaculture water bleeding technique, especially a kind of water body aeration oxygen replenishing device.
Background technology
The micro-pore aeration bleeding technique is one of at present up-to-date high efficient fishery cultural technique.Pond micro-pore aeration bleeding technique is through at pond bottom installation microporous pipe aeration, is pressed into microporous pipe to high-pressure air through compressor, and microporous pipe is the appropriate location aeration in water layer; In water body, produce microbubble and rising; Improve the contact area of air and water body, increase the water body dissolved oxygen, and make pond levels water body produce convective exchange; The abundant water body of oxygen that contains of pond bottom anoxybiotic water body and the generation of top layer, pond algae is exchanged; Especially the dissolved oxygen, the reduction ammonia nitrogen that promote lower floor's water body are effective, make to guarantee the aquatic organism healthy growth by dissolved oxygen and nutrient uniform distribution in whole water body; Efficiently solve the oxygenation difficult problem of high-density, batch production, intensification, aquatic products healthy aquaculture, more and more receive raiser's welcome.
The microporous pipe of the pond micro-pore aeration oxygen-increasing device that uses at present has two kinds of hard tube and flexible pipes, is main with special hose wherein.Light because of flexible pipe, buoyancy is big, balance, evenly lay and be installed in difficulty of water layer appropriate location.Known installation method mainly contains two kinds: a kind of is that disc type is installed, and promptly flexible pipe is bundled on the disk that heavy water, hard material such as iron and steel do, and makes the micropore flexible pipe be sunken to the water layer appropriate location with disk; Another kind is that straight line is installed, and straight line is installed branch piling installation method and floating is installed method, and piling installation method is to beat spud pile in the water layer appropriate location, in stake, binds the micropore flexible pipe, makes it at pond bottom maintenance straight line; Floating installation method is to entangle the micropore flexible pipe for one section one section with the fine circle that plastics or iron and steel are made; At ball float of fine circle upper end binding; Sinker of lower end binding; Make the micropore flexible pipe remain on certain water depth balance, as on September 1st, 2010 issued patent number be 200920238581.7 the floated micropore flexible pipe of the described used for aquiculture of Chinese patent aeration oxygen replenishing device.In the disc type installation method, heavy water disk such as iron and steel is dipped in that being prone in the water gets rusty is not durable, and material cost is too high, and air output is inhomogeneous in the pond, can't reach straight line stringing effect, and the big area pond can't reach the oxygenation requirement.But the piling installation method in the present straight line stringing method needs in the water layer appropriate location whenever to fix at a distance from 3~5 meters piling or binding weight, behind underwater driving, influences the fishing operation, and can't drive piles to pond, the hard end; Installed not, in addition, this method also need be put Gan Chishui (influencing breeding production); Could install by the professional; Cost is higher, and inconvenient operation is difficult to apply.Floating in the straight line stringing method is installed method and on microporous pipe, is directly bundled fine circle, on have the weight pulling force arranged under the buoyancy, very easily pull off or break microporous pipe; Water surface float is installed too much, can influence the production operation attractive in appearance and various of water surface for aquaculture, and float is often blown mobile by stormy waves; Displacement of micropore flexible pipe and pulling force are produced considerable influence; The cost that this kind device is installed is also higher, and complicacy is installed, and it is big to produce difficulty in batches.
The utility model content
The purpose of the utility model is in order to solve the deficiency that existing micro-pore aeration oxygen-increasing device exists, and provides a kind of aeration evenly, not receive water surface stormy waves to influence, do not influence the pond micropore flexible pipe aeration oxygen replenishing device that water surface production operation, simple in structure, simple installation, cost are low, can produce in batches.
The utility model adopts technical scheme to be for realizing above-mentioned purpose: a kind of pond micropore flexible pipe aeration oxygen replenishing device; This oxygen-increasing device comprises that micropore flexible pipe, the plastics that evenly are arranged under the micropore flexible pipe lead directly to, pass successively the straight-through tightrope of each plastics; At least one end of micropore flexible pipe is connected with the escape pipe of air or gas blower through seal tube; The straight-through bottom that is bundled in the micropore flexible pipe respectively through electrician's adhesive plaster of each plastics; The straight-through outside of plastics of tightrope end positions in micropore flexible pipe bottom is equipped with the knot of diameter greater than the straight-through diameter of plastics; Knot is stuck in the straight-through outboard end of plastics of micropore flexible pipe bottom end positions, and said oxygen-increasing device comprises that also being bundled in the knot outside, tightrope two ends respectively draws the sandbag that is sink in the water with the micropore flexible pipe.
The further art scheme of the utility model is: an end of said micropore flexible pipe is connected with the escape pipe of air or gas blower through seal tube, and the other end of micropore flexible pipe is through the Plastic cap sealing.
The further art scheme of the utility model is: between the knot of said tightrope two ends rope long with the micropore hose length about equally, two ends are respectively left and can be arrived the bank point of fixity and be fixed on the connection section on the point of fixity behind the tightrope knotting.
The beneficial effect of the utility model: the utility model pond micropore flexible pipe aeration oxygen replenishing device is owing to utilize tightrope to pass to be bundled in the plastics of micropore flexible pipe bottom straight-through; And the sandbag through being bundled in the tightrope two ends straight-through and micropore flexible pipe together draws and is sink in the water with plastics; Plastics are straight-through evenly to be arranged under the micropore flexible pipe, and the micropore flexible pipe is stressed evenly, the micropore flexible pipe with buoyancy receive buoyancy upwards and the downward pulling force of tightrope make its in the underwater some position maintenance balances; Utilize electrician's adhesive plaster that certain width is arranged; Straight-through fixing plastics with micropore flexible pipe binding (stickup), increased the stressed cross section of micropore flexible pipe, make it to be difficult for breaking; And electrician's adhesive plaster difficult drop-off in water, the serviceable time is longer; Only need during installation to drop into the two ends sandbag in the water, being strained and fixed the two ends tightrope gets final product again, and only needs during dismounting to untie the two ends tightrope; Pull out the two ends sandbag in the water, the micropore flexible pipe floats the water surface automatically, easily packs up again; Therefore, no matter installing or remove all can be very easy; This device materials is economized and the sandbag that is used to sink material does not need supporting; Can gather materials on the spot, save cost, the influence of water depth when this device does not receive pond area, type, planeness and installation; Need not to put that Chi Shui just can lay accurately with piling, balance, aeration be even, aeration efficient height; Can produce suite in batches, can carry out clip by the required length of reality during installation, reduce production, packing, transportation and fitting operation cost; Not influenced by water surface stormy waves, do not influence water surface production operation, one-piece construction is simple and practical.
Below in conjunction with accompanying drawing and embodiment the utility model pond micropore flexible pipe aeration oxygen replenishing device is further described.
Description of drawings
Fig. 1 is the utility model pond micropore flexible pipe aeration oxygen replenishing device local structure enlarged diagram.
The structural representation of Fig. 2 the utility model pond micropore flexible pipe aeration oxygen replenishing device embodiment one.
The structural representation of Fig. 3 the utility model pond micropore flexible pipe aeration oxygen replenishing device embodiment two.
The main element label declaration: 1-PVC plastics are straight-through, 2-micropore flexible pipe, 3-electrician's adhesive plaster, 4-Vilaterm tightrope, 5-pool base, 6-connection section, 7-seal tube, 8-adapter of plastic, 9-sandbag, 10-knot, 11-Plastic cap.
Embodiment
Embodiment one:
Like Fig. 1, shown in Figure 2; The utility model pond micropore flexible pipe aeration oxygen replenishing device (following abbreviation " oxygen-increasing device "); This oxygen-increasing device comprise micropore flexible pipe 2, evenly be arranged in plastics under the micropore flexible pipe 2 straight-through 1, pass the tightrope 4 of each plastics straight-through 1 successively; Plastics straight-through 1 are PVC plastics straight-through 1 in the present embodiment; Tightrope 4 is the Vilaterm tightrope, and each plastics straight-through 1 are respectively through electrician's adhesive plaster 3 (tying up 3 layers) bottom that is bundled in micropore flexible pipe 2 tightly, and micropore flexible pipe 2 bottoms are whenever at a distance from PVC plastics of two meters bindings straight-through 1.Micropore flexible pipe 2 at least one ends are connected with the escape pipe (not shown) of air or gas blower through seal tube 7; End at present embodiment micropore flexible pipe 2 is connected with the escape pipe of air or gas blower through seal tube 7; 2 of seal tube 7 and micropore flexible pipes also are connected with adapter of plastic 8; The other end of micropore flexible pipe 2 is through Plastic cap 11 sealings; Can certainly make the two ends of micropore flexible pipe be connected (not shown) through seal tube 7 with the escape pipe of air or gas blower respectively; Tightrope 4 is equipped with the knot 10 of diameter greater than straight-through 1 diameter of PVC plastics in straight-through 1 outside of the plastics of micropore flexible pipe 2 bottom end positions, and knot 10 is stuck in straight-through 1 outboard end of PVC plastics of micropore flexible pipe 2 bottom end positions, 100 meters distances is installed with interior pond width; Available diameter 1cm tightrope, diameter 1.5cm~2.5cmPVC plastics straight-through 1.
Said oxygen-increasing device comprises that also being bundled in tightrope 4 two ends knots 10 outsides respectively draws micropore flexible pipe 2 in the sandbag 9 that is sink in the water; Between the said tightrope 4 two ends knots 10 rope long with micropore flexible pipe 2 length about equally, two ends, tightrope 4 knottings, 10 back are respectively left and can be arrived bank point of fixity (not shown) and be fixed on the connection section 6 on the point of fixity.
During use, as shown in Figure 2, oxygen-increasing device is installed in the pond that width is less than or equal to 30 meters in the present embodiment, and micropore flexible pipe 2 cloth length of tube are suitable with the pond width.During installation; One end of going into gas connects seal tube 7 and micropore flexible pipe 2 air inlet ends through adapter of plastic 8; Seal tube 7 stays the enough length that can connect house steward's air outlet (mouth of pipe of giving vent to anger of air or gas blower); Connect Plastic cap 11 in micropore flexible pipe 2 rear ends; Tightly bundle sandbag 9 on the both sides, pond with tightrope 4, be thrown into the water layer appropriate location to sandbag 9 along the limit, pond, move the connection section 6 at tightrope 4 two ends to be fixed up on the pool base 5 in pond (point of fixity that is connected with tightrope on the base of the not shown pool).The pond all installs; Begin the start debugging,, explain that the sandbag 9 two ends degree of depth are inconsistent if aeration is even inadequately; Suitably the height of sandbag 9 and tightrope 4 is tied up at the adjustment two ends; Thereby changed the degree of depth of micropore flexible pipe 2, made it to reach desired location, made micropore flexible pipe 2 aeration balances, even with tightrope 4.
Embodiment two:
As shown in Figure 3, present embodiment and the foregoing description difference are, in the present embodiment oxygen-increasing device are installed in width greater than in 30 meters the pond, and at this moment 2 of micropore flexible pipes are laid 20~30 meters length, less than the opposite bank, pond.The oxygen-increasing device (not shown) that another group is oppositely arranged can be installed in the opposite bank, pond, and its installation process and the foregoing description are basic identical at this repeated description no longer.It also can reach the described technique effect of the foregoing description.
The foregoing description only is the preferred forms of the utility model, can not be used for limit the utility model, also can change the microlith bag into like sandbag, as long as the conversion of in the scope of the utility model, doing all belongs to the category of the utility model.

Claims (3)

1. pond micropore flexible pipe aeration oxygen replenishing device; It is characterized in that; This oxygen-increasing device comprise micropore flexible pipe (2), evenly be arranged in plastics straight-through (1) under the micropore flexible pipe (2), pass the tightrope (4) of each plastics straight-through (1) successively; At least one end of micropore flexible pipe (2) is connected with the escape pipe of air or gas blower through seal tube (7); Each plastics straight-through (1) are bundled in the bottom of micropore flexible pipe (2) respectively through electrician's adhesive plaster (3); Plastics straight-through (1) outside of tightrope (4) end positions in micropore flexible pipe (2) bottom is equipped with the knot (10) of diameter greater than straight-through (1) diameter of plastics; Knot (10) is stuck in straight-through (1) outboard end of plastics of micropore flexible pipe (2) bottom end positions, and said oxygen-increasing device comprises that also being bundled in tightrope (4) two ends knots (10) outside respectively draws the sandbag (9) that is sink in the water with micropore flexible pipe (2).
2. pond as claimed in claim 1 micropore flexible pipe aeration oxygen replenishing device; It is characterized in that; One end of said micropore flexible pipe (2) is connected with the escape pipe of air or gas blower through seal tube (7), and the other end of micropore flexible pipe (2) is through Plastic cap (11) sealing.
3. pond as claimed in claim 2 micropore flexible pipe aeration oxygen replenishing device; It is characterized in that; Between said tightrope (4) the two ends knots (10) rope long with micropore flexible pipe (2) length about equally, two ends, tightrope (4) knotting (10) back are respectively left and can be arrived the bank point of fixity and be fixed on the connection section (6) on the point of fixity.
CN2011202427696U 2011-07-11 2011-07-11 Aeration and oxygen-increasing device for microporous hose in pond Expired - Fee Related CN202170275U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011202427696U CN202170275U (en) 2011-07-11 2011-07-11 Aeration and oxygen-increasing device for microporous hose in pond

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011202427696U CN202170275U (en) 2011-07-11 2011-07-11 Aeration and oxygen-increasing device for microporous hose in pond

Publications (1)

Publication Number Publication Date
CN202170275U true CN202170275U (en) 2012-03-21

Family

ID=45828476

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011202427696U Expired - Fee Related CN202170275U (en) 2011-07-11 2011-07-11 Aeration and oxygen-increasing device for microporous hose in pond

Country Status (1)

Country Link
CN (1) CN202170275U (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102960297A (en) * 2012-12-21 2013-03-13 中国水产科学研究院黑龙江水产研究所 Environmental-friendly oxygenation aeration device used in aquaculture pond and manufacturing method thereof
CN104230021A (en) * 2014-09-29 2014-12-24 西安理工大学 Microporous hose aeration water quality improvement system
CN106171838A (en) * 2016-08-02 2016-12-07 广西水利电力职业技术学院 A kind of plastic flexible pipe for agrcultural irrigation
CN106587402A (en) * 2017-01-17 2017-04-26 居文钟 Hose microporous aerator for oxygenating and stirring natural water and aquatic breeding water
CN106818603A (en) * 2016-05-24 2017-06-13 衢州锐思机械科技有限公司 The river course aerator of solar power generation

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102960297A (en) * 2012-12-21 2013-03-13 中国水产科学研究院黑龙江水产研究所 Environmental-friendly oxygenation aeration device used in aquaculture pond and manufacturing method thereof
CN104230021A (en) * 2014-09-29 2014-12-24 西安理工大学 Microporous hose aeration water quality improvement system
CN104230021B (en) * 2014-09-29 2015-12-30 西安理工大学 A kind of microporous hose aeration water correction system
CN106818603A (en) * 2016-05-24 2017-06-13 衢州锐思机械科技有限公司 The river course aerator of solar power generation
CN106171838A (en) * 2016-08-02 2016-12-07 广西水利电力职业技术学院 A kind of plastic flexible pipe for agrcultural irrigation
CN106587402A (en) * 2017-01-17 2017-04-26 居文钟 Hose microporous aerator for oxygenating and stirring natural water and aquatic breeding water

Similar Documents

Publication Publication Date Title
US20230210071A1 (en) Submersible aquatic algae cultivation system
CN202170275U (en) Aeration and oxygen-increasing device for microporous hose in pond
CN106614203A (en) Combined artificial fish reef
CN102669033B (en) Operation platform for floating-rope type abalone raising net cage and operation method of operation platform
CN201733719U (en) Floating type net cage
CN206251751U (en) Combined type artificial fish shelter
CN105494192A (en) Mariculture device with net cage added to jacket fan base
CN203446370U (en) Stereo ecological stichopus japonicus aquaculture net cage
CN111003112A (en) Floating artificial island for water purification
CN205567471U (en) Concave type gulf mouth and fyord suspension block facility
CN105129999B (en) Riverway water environment treatment system based on oxygen content automatic control
CN202808485U (en) Multi-level ecological floating bed
CN204138428U (en) A kind of biological floating bed wave that disappears helps floating device
CN108124800A (en) Oyster floatable hangs raft cultural method
CN203457652U (en) Sea cucumber culture pond floating fry-protecting net cage
CN205973994U (en) Benthophyte plants net
CN209846002U (en) Micropore oxygenation system is bred in big water face hilly pond
CN2381125Y (en) Underwater floated flexible cage
CN104365511B (en) Floating type carbon sink shellfish and algae farm
JP2004305042A (en) Method for cultivating bottom layer fishes such as flounder or turbot on sea bottom and method for feeding the fishes
CN104310588A (en) Wave-absorbing floating assisting device for ecological floating bed
CN206078619U (en) Multi -functional shallow sea culture combination formula anchor
JP2021180630A (en) Establishment method of seaweed fishing ground
CN201365456Y (en) Underwater fixing device for shell/algae raft
CN106106301B (en) Suspension type automatic lifting pearl mussel hanging culture device and method

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120321

Termination date: 20140711

EXPY Termination of patent right or utility model