CN217136480U - Aquatic products seedling taming material and throwing storage bucket - Google Patents

Aquatic products seedling taming material and throwing storage bucket Download PDF

Info

Publication number
CN217136480U
CN217136480U CN202122054246.5U CN202122054246U CN217136480U CN 217136480 U CN217136480 U CN 217136480U CN 202122054246 U CN202122054246 U CN 202122054246U CN 217136480 U CN217136480 U CN 217136480U
Authority
CN
China
Prior art keywords
feeding barrel
water
feeding
water inlet
barrel body
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.)
Active
Application number
CN202122054246.5U
Other languages
Chinese (zh)
Inventor
李家克
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.)
Guangzhou Lanling Aquatic Products Technology Co ltd
Original Assignee
Guangzhou Lanling Aquatic Products Technology 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 Guangzhou Lanling Aquatic Products Technology Co ltd filed Critical Guangzhou Lanling Aquatic Products Technology Co ltd
Priority to CN202122054246.5U priority Critical patent/CN217136480U/en
Application granted granted Critical
Publication of CN217136480U publication Critical patent/CN217136480U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
    • Y02A40/81Aquaculture, e.g. of fish

Landscapes

  • Farming Of Fish And Shellfish (AREA)

Abstract

The utility model relates to the technical field of aquaculture, in particular to an aquatic seedling domestication feeding barrel, which comprises a feeding barrel body, an aeration device, a water inlet device and a discharging device, wherein the feeding barrel body is integrally formed by a feeding barrel main body and the bottom of the feeding barrel into a cavity structure for storing water and materials, and the bottom of the feeding barrel is arranged into a similar inverted cone structure; the aeration device comprises an aeration stone, an air pipe and an aerator, the aeration stone is arranged on the inner side of the bottom of the feeding barrel, the aerator is arranged on the outer side of the feeding barrel body, and the water inlet device is arranged at the top of the feeding barrel body; the discharging device is arranged at the position, close to the middle waist, of the feeding barrel body; the utility model discloses simple structure realizes feeding the work of eating comprehensively effectively, utilizes the aeration stone to promote static fodder for dynamic fodder, makes fish easily accept and feed, feeds in slowly carrying the fish pond with the fodder through the form of the overflow ejection of compact, and the feed volume is fed and the speed is eaten with feeding to easily control to guarantee the shoal of fish and feed proper amount in turn gradually and feed, improve the survival rate that fish raised better.

Description

Aquatic products seedling taming material and throwing storage bucket
Technical Field
The utility model relates to an aquaculture technical field indicates an aquatic products seedling disciplines material and throws storage bucket especially.
Background
In the process of cultivating aquatic seedlings, domesticating is an important process; in the wild state of the natural environment, part of carnivorous fishes only feed living organisms, such as mandarin fish, micropterus salmoides and the like, and only feed wild small trash fish, shrimps or other small aquatic animals; however, in artificial breeding, if only aquatic animals are fed, the difficulty of capturing is certain, and the economic pressure is certain, which affects the pursuit of efficiency, so that it is necessary to use artificial compound feed to reduce the cost and difficulty. The artificial mixed feed is low in production and manufacturing cost, storage-resistant, convenient to feed, high in nutritive value and adjustable, the total cost is far lower than that of feeding living baits such as small trash fish, the artificial mixed feed is static and can not attract attention of fish feeding like dynamic aquatic food, after the artificial mixed feed is put into water, the fish does not have appetite and does not want to eat, so that the fish can not eat and starve, and the survival rate is finally influenced. Therefore, there is an urgent need to domesticate these species of fish to improve the overall economic benefits of aquaculture.
Disclosure of Invention
In order to solve the above problems, the utility model discloses aim at disclosing an aquaculture technical field, indicate especially that an aquatic products seedling tames material and throws storage bucket.
In order to achieve the above object, the utility model adopts the following technical scheme: an aquatic seedling domesticating and feeding barrel is characterized by mainly comprising a feeding barrel body, an aeration device, a water inlet device and a discharging device, wherein the feeding barrel body is of a cavity structure which is integrally formed by a feeding barrel main body and the bottom of the feeding barrel and used for storing water and materials, the feeding barrel main body is of a cylindrical shape, and the bottom of the feeding barrel is connected to the bottom edge of the feeding barrel main body and is of an inverted cone-like structure; the aeration device comprises an aeration stone, an air pipe and an inflator, the aeration stone is arranged on the inner side of the bottom of the feeding barrel, the inflator is arranged on the outer side of the feeding barrel, one end of the air pipe is connected with the aeration stone, and the other end of the air pipe is connected with the inflator; the water inlet device is arranged at the top of the feeding barrel body; the discharging device is arranged at the position, close to the middle waist, of the feeding barrel body.
Preferably, the top of the feeding barrel body is connected with a hoisting structure, and the feeding barrel body is connected in a supporting manner from the upper part through the hoisting structure to form a suspended type fixed positioning.
Preferably, hoisting structure including hang rope and couple, hang the rope and connect at the staving top of throwing the material, the couple setting is on the top of hanging the rope, through couple fixed positioning.
Preferably, the feeding barrel body is positioned and installed above the fishpond through a hoisting structure.
Preferably, the water inlet device comprises a water inlet pipe, a water source and a water inlet switch, wherein the water inlet pipe is arranged at the top of the feeding barrel body to feed water from the top, and the water inlet switch is connected to a pipeline connecting the water inlet pipe and the water source to control water flow.
Preferably, an overflow water outlet is arranged above the feeding barrel body close to the middle waist.
Preferably, the discharging device is arranged at the overflow water outlet.
Preferably, the discharging device is a flexible discharging pipe, the initial end of the flexible discharging pipe is connected with the overflow water outlet in a sealing mode, and the tail end of the flexible discharging pipe is arranged above the water surface of the fishpond.
The beneficial effects of the utility model are embodied in: the utility model discloses simple structure makes production easily to realize feeding the work effectively comprehensively through simple and easy structure, the utility model discloses utilize the aeration stone to promote static fodder for dynamic fodder, make aquatic products seedling/fish easily accept and feed, then slowly carry the fodder to feed in the fish pond through the form of the overflow ejection of compact, easily control feeds the appetite and feeds and eat speed, thereby guarantees the shoal of fish and feeds in proper amount in batches gradually and eats, improves aquatic products seedling/fish rearing's survival rate better.
The bottom of the feeding barrel of the utility model is in the shape of an inverted cone, and the aeration stone is arranged at the bottom, because the bottom is small in volume, the upward extending volume is gradually increased, so that the upward spraying force of the bubbles is larger during aeration, under the action of aeration, the static artificial feed in water is pushed into an active state by the force of the bubbles, so that the artificial feed is similar to aquatic animal food, and the aquatic seedlings/fishes take the dynamic artificial feed as the aquatic animal food, thereby promoting the aquatic seedlings/fishes to eat; the utility model discloses set up discharging device into overflow ejection of compact form, can make the fodder go out along with the rivers overflow behind aquatic evenly distributed on the one hand, feed the edible volume and obtain controlling, on the other hand can slow down the falling speed of fodder, makes the shoal of fish feed in turn, avoids the shoal of fish feed that arrives at first excessive and the shoal of fish that arrives at last but ingests inadequately, and the speed of feeding and coverage rate all obtain controlling.
The bottom of the feeding barrel of the utility model is in the shape of an inverted cone, so that the dead angle is not easily formed when the live feed or the artificial feed is aerated and convected in the feeding barrel. Under the state that does not have the aeration, live body feed and artificial mixed feed can deposit the bottom of the barrel under the effect of gravity, and the back taper is thrown the storage bucket bottom and can be made the fodder all concentrate on the lower extreme of back taper bottom of the barrel, when carrying out the aeration, the impetus of accessible aeration back bubble is with fodder evenly distributed in throwing any corner of storage bucket water to effectively prolong the time that the fodder gets into the breed fish pond, can avoid some aquatic products seedling/fish to eat too much but the condition emergence of fodder can not be eaten to some aquatic products seedling/fish through the form of discharging gradually. The utility model discloses a discharging pipe setting is throwing the top of material staving department in being close to well waist, is located the position on the inclined to one side upper portion of throwing the material bucket, and the effect that can realize includes: 1. the higher water outlet realizes a higher water level line, even if the feeding barrel has more water, the time that all feed enters the fish culture pond along with water flow is effectively prolonged; 2. when the water in the feeding barrel is sufficient, the problem that the living feed dies due to over-high density and oxygen deficiency can be avoided; 3. the design of overflow discharging can make the rivers in throwing the material bucket keep balanced, and the inflow flow of throwing the material bucket top is big, then also increases along with it from the overflow delivery port through the flow of discharging pipe play water, and inflow flow is little, and the outflow flow of discharging pipe is also little.
Drawings
Fig. 1 is a perspective view of the present invention.
Reference is made to the accompanying drawings in which: 1-feeding barrel body, 2-aerating device, 3-water inlet device, 4-discharging device, 5-hoisting structure, 11-feeding barrel body, 12-feeding barrel bottom, 21-aerating stone, 22-air pipe and 23-aerating machine.
Detailed Description
The following detailed description of the embodiments of the present invention is provided with reference to the accompanying drawings:
an aquatic seedling domesticating and feeding barrel mainly comprises a feeding barrel body 1, an aeration device 2, a water inlet device 3 and a discharging device 4, wherein the feeding barrel body 1 is a cavity structure for storing water and materials, the feeding barrel body 11 is mainly formed by a feeding barrel main body 11 and a feeding barrel bottom 12 in an integrated mode, the feeding barrel main body 11 is arranged in a cylindrical barrel shape, and the feeding barrel bottom 12 is connected to the bottom edge of the feeding barrel main body 11 and is arranged in a similar inverted cone structure; the aeration device 2 comprises an aeration stone 21, an air pipe 22 and an inflator 23, wherein the aeration stone 21 is arranged on the inner side of the bottom 12 of the feeding barrel, the inflator 23 is arranged on the outer side of the feeding barrel body 1, one end of the air pipe 22 is connected with the aeration stone 21, and the other end of the air pipe 22 is connected with the inflator 23; the bottom 12 of the feeding barrel is in an inverted cone shape, the aeration stone 21 is arranged at the bottom, and the volume of the aeration stone is gradually increased due to the small volume of the bottom and the upward extension volume, so that the upward spraying force of the bubbles is larger during aeration, and under the action of aeration, the static artificial feed in water is pushed into an active state by the force of the bubbles, so that the artificial feed is compared with aquatic animal food, and aquatic seedlings/fishes take the dynamic artificial feed as the aquatic animal food, so that the feeding of the aquatic seedlings/fishes is promoted;
the water inlet device 3 is arranged at the top of the feeding barrel body 1; the discharging device 4 is arranged at the position, close to the middle waist, of the feeding barrel body 1; the water inlet device 3 comprises a water inlet pipe, a water source and a water inlet switch, wherein the water inlet pipe is arranged at the top of the feeding barrel body 1 to feed water from the top, and a pipeline connecting the water inlet pipe with the water source is connected with the water inlet switch to control water flow; an overflow water outlet is arranged above the feeding barrel body 1 near the middle waist; the discharging device 4 is arranged at the overflow water outlet; the discharging device 4 is a flexible discharging pipe, the initial end of the flexible discharging pipe is hermetically connected with the overflow water outlet, and the tail end of the flexible discharging pipe is arranged above the water surface of the fish pond; in the embodiment, the discharging device 4 is set to be in an overflow discharging mode, so that the feed can be uniformly distributed in water and then overflows along with water flow, the feeding amount is controlled, the falling speed of the feed can be slowed down, fish schools can eat in batches, the phenomenon that the fish schools which swim first eat too much and the fish schools which swim last eat too little is avoided, and the feeding speed and the coverage rate are controlled; the overflow discharging design of the embodiment can keep the water flow in the feeding barrel balanced, the water inlet flow above the feeding barrel is large, the water outlet flow from the overflow water outlet through the discharging pipe is increased, the water inlet flow is small, and the water outlet flow of the discharging pipe is small; if overflow outlet sets up the below at throwing the storage bucket, then two kinds of situations can appear: firstly, because the pipe diameter of the overflow water outlet is small, the water inflow is greater than the water yield, after the operation for a period of time, the water level in the feeding barrel can gradually rise, and when the water level is too high, a large amount of feed can flow through an opening above the feeding barrel along with the water flow and enter a fish pond for culture, so that the feeding amount in a short time is too large, and the feed intake of aquatic seedlings/fish is not uniform; the pipe diameter of the overflow water outlet is large, the water outlet flow is larger than the water inlet flow above the feeding barrel, and water added into the feeding barrel at first quickly flows out, so that the problems of overlarge feeding amount in a short time and uneven feeding of aquatic seedlings/fishes are caused;
furthermore, the top of the feeding barrel body 1 is connected with a hoisting structure 5, and the feeding barrel body 1 is in supporting connection from the upper part through the hoisting structure 5 to form a suspension type fixed positioning; the hoisting structure 5 comprises a hanging rope and a hook, the hanging rope is connected to the top of the feeding barrel body 1, and the hook is arranged at the top end of the hanging rope and is fixedly positioned through the hook; the feeding barrel body 1 is positioned and installed above the fish pond through the hoisting structure 5, and the hoisting structure 5 is adopted to facilitate moving and position adjusting.
In the embodiment, the domestication of the aquatic seedlings needs a slow process, the live baits are converted into the artificial mixed baits, a small amount of the artificial mixed baits are added at the initial stage, and then the proportion of the artificial mixed baits is gradually increased; feeding some palatable living baits when the aquatic seedlings are cultured at the beginning; these live baits include, but are not limited to, the following species: fairy shrimp, rotifer, cladocera, copepods, paramecium, etc.; the collected live baits are poured into a material domesticating and feeding barrel after cleaning and disinfection procedures; simultaneously opening a water inlet pipe with an opening positioned above the feeding barrel; so that the water inlet has small flow; after water enters the feeding barrel, the water level in the feeding barrel gradually rises; when the water rises to the position of the overflow water outlet, the water overflows into the culture pond through the overflow water outlet and the discharge pipe. When the aeration stone 21 is opened, the aeration stone has an oxygenation effect on the water body in the feeding barrel; meanwhile, the aeration enables water in the feeding barrel to roll and convect, the living body bait is driven by the rolling water flow in the feeding barrel and can be left in the feeding barrel for a long time, and the aeration oxygenation can not lead to the death of the living body bait. Under the rivers effect, a small part live body bait can be along with rivers entering discharging pipe, the drippage is in breeding the pond, first batch aquatic products seedling can snatch in the position that the drippage, it walks away after full, next batch aquatic products seedling continues to feed, simultaneously because the effect of food calling lamp, aquatic products seedling has phototaxis, can select to snatch in the bucket below of throwing, because the speed of drippage fodder obtains controlling, most aquatic products seedling all can eat food, the growth homogeneity of aquatic products seedling has been guaranteed, thereby avoid the big seedling cannibalism seedling, cause economic loss. In the material domesticating stage, a small amount of artificial compound feed is added into a feeding barrel except living body baits, the particle size of the artificial compound feed is similar to that of the living body baits, and then the proportion of the artificial compound feed is increased day by day; the aquatic product seedlings cannot be distinguished from live feed or artificial compound feed in the process of robbing food; finally, the artificial mixed feed can be smoothly adapted, the proportion of the artificial mixed feed and the length of the whole domesticating period are started to be added, and the artificial mixed feed is flexibly adjusted according to the variety and the size of the aquatic product seedling.
The above, it is only the preferred embodiment of the present invention, not right the technical scope of the present invention makes any restriction, the technical personnel of the industry, under this technical scheme's enlightenment, can do some deformation and modification, all the basis the utility model discloses a technical essence is to any modification, the equivalent change and the modification of the above embodiment do, all still belong to the technical scheme's scope of the present invention.

Claims (8)

1. An aquatic seedling domesticating and feeding barrel is characterized in that the feeding barrel mainly comprises a feeding barrel body, an aeration device, a water inlet device and a discharging device,
the feeding barrel body is mainly of a cavity structure which is integrally formed by a feeding barrel main body and the bottom of the feeding barrel and used for storing water and materials, the feeding barrel main body is arranged to be cylindrical, and the bottom of the feeding barrel is connected to the bottom edge of the feeding barrel main body and is arranged to be of an inverted cone-like structure;
the aeration device comprises an aeration stone, an air pipe and an inflator, the aeration stone is arranged on the inner side of the bottom of the feeding barrel, the inflator is arranged on the outer side of the feeding barrel, one end of the air pipe is connected with the aeration stone, and the other end of the air pipe is connected with the inflator;
the water inlet device is arranged at the top of the feeding barrel body; the discharging device is arranged at the position, close to the middle waist, of the feeding barrel body.
2. An aquatic seedling domesticating and feeding barrel as claimed in claim 1, wherein a hoisting structure is connected to the top of the feeding barrel body, and the feeding barrel body is supported and connected from above through the hoisting structure to form a suspended fixed positioning.
3. The aquatic seedling domesticating and feeding barrel of claim 2, wherein the hoisting structure comprises a hanging rope and a hook, the hanging rope is connected to the top of the feeding barrel body, and the hook is arranged at the top end of the hanging rope and is fixedly positioned through the hook.
4. The aquatic seedling domesticating and feeding barrel of claim 3, wherein the feeding barrel body is positioned and installed above a fishpond through a hoisting structure.
5. The aquatic seedling domesticating and feeding barrel of claim 1, wherein the water inlet device comprises a water inlet pipe, a water source and a water inlet switch, wherein the water inlet pipe is arranged at the top of the feeding barrel body to feed water from the top, and a pipeline connecting the water inlet pipe with the water source is connected with the water inlet switch to control water flow.
6. The aquatic seedling domesticating and feeding barrel of claim 1, wherein an overflow outlet is formed above the feeding barrel body near the middle waist.
7. The aquatic seedling domesticating and feeding barrel as claimed in claim 6, wherein the discharging device is installed at the overflow outlet.
8. The aquatic seedling domesticating and feeding barrel of claim 7, wherein the discharging device is a flexible discharging pipe, the flexible discharging pipe is connected with the overflow water outlet in a sealing manner at the initial end and is arranged above the water surface of the fish pond at the tail end.
CN202122054246.5U 2021-08-30 2021-08-30 Aquatic products seedling taming material and throwing storage bucket Active CN217136480U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122054246.5U CN217136480U (en) 2021-08-30 2021-08-30 Aquatic products seedling taming material and throwing storage bucket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122054246.5U CN217136480U (en) 2021-08-30 2021-08-30 Aquatic products seedling taming material and throwing storage bucket

Publications (1)

Publication Number Publication Date
CN217136480U true CN217136480U (en) 2022-08-09

Family

ID=82658731

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122054246.5U Active CN217136480U (en) 2021-08-30 2021-08-30 Aquatic products seedling taming material and throwing storage bucket

Country Status (1)

Country Link
CN (1) CN217136480U (en)

Similar Documents

Publication Publication Date Title
JP6209804B2 (en) Eel larvae rearing method, rearing device and rearing container
CN203860242U (en) Feeding device specially used in floating type crayfish aquaculture pond
CN209449453U (en) A kind of poultry feed automatic food feeder
CN107148928B (en) Method for cultivating hybrid variety of patinopecten yessoensis and wind vane scallop
CN110800654A (en) Method for domesticating micropterus salmoides fingerlings in specification
CN105075949B (en) A kind of spot trout artificial breeding method
CN217136480U (en) Aquatic products seedling taming material and throwing storage bucket
CN106508752B (en) A kind of crawl and fish-cultivating method
CN105706971A (en) Culture method of Australian dragon spot fish fry
CN110214735B (en) Sturgeon larva's fodder device of throwing something and feeding
CN217826387U (en) Automatic fairy shrimp feeding device and bait feeding device applied by same
CN215302382U (en) Automatic fairy shrimp feeding device
CN208370736U (en) One kind is novel to beat nest fishing box
CN110495411A (en) A kind of cultural method of mandarin fish
CN110786281A (en) Fish are fed and put in suggestion device with fodder
CN115968814A (en) Perch micropterus salmoides fry breeding method
CN113383733B (en) Artificial cultivation method for young spiny plum juvenile fish
CN206390044U (en) A kind of oxygenation for aquaculture, which is thrown, raises integrated device
CN211657196U (en) A artifical fodder feeds and eats device for raising juvenile toad
CN107926824A (en) It can prevent, mitigate the Micropterus salmonoides aquaculture pond and corresponding feed, cultural method of fatty liver
CN111149735B (en) Large-scale cultivation method of siganus oramin fry
CN210900954U (en) Feed feeding device for industrial fish culture
CN110338156B (en) Method for artificially feeding ladybug
CN206821704U (en) A kind of device with frost bait feeding Micropterus salmoides
CN208175787U (en) A kind of fresh-water fishes feeding equipment

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant