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Abalone culture feeding system with multiple lifting-mechanism feeders

A technology of feeding system and lifting mechanism, which is applied in the field of feeding system for feeding feed in the breeding box, can solve the problems of error in hand feeling measurement, death, affecting the growth of abalone, etc., and achieve the effect of protecting electricity

Inactive Publication Date: 2020-05-26
黄君妍
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The feed for abalones in the existing cultured abalones is algae, and now kelp is used, and the kelp is cut into fine pieces or shredded. The method is that workers first use a container to load feed from a workshop dedicated to storing feed, pull it to the edge of the breeding pond, then manually lift the breeding box group from the pond and place it on the edge of the pond, open the windows and doors, and grab a piece of feed from the container with their hands. Put the kelp fragments into the windows and doors, and then lock the windows and doors. The amount of feeding into each breeding box is about the same each time, and the amount of feeding each time is completely measured by the feel. Because the soaked kelp fragments are sticky and slippery, It is easy to slide, and the feed in your hands is easy to slip away, so it is inevitable that there will be errors in the measurement of the feel of the feed every time you grab the feed. It does not matter if there is a small error, but too much error will affect the growth of the abalone. Putting too much feed on the abalone can't finish it, the feed rot will affect the survival of the abalone, and in severe cases, it can lead to the death of the abalone, so if you find the rotten material, you must open the box and clean it up; feed it once a day or two, depending on the size and quantity of the abalone. Carry out again and again like this; Because there are a large amount of elongated large breeding ponds built in the large farm, there are hundreds or thousands of small breeding ponds, therefore, the whole farm has thousands of breeding boxes or tens of thousands of bundles. For the breeding box group, the workers have to take the breeding box group out of the breeding pond and put it on the side of the pool or on the partition wall of the pool every time. Feeding, closing, locking, and lowering all have to be done manually, manually grasping materials, and manually feeding. The feeding process has large errors and slow speed. When serious problems are found in the box, the rope 9963 must be opened to clean the abalones in the box, and then Then tie them up and put them in the breeding ponds. This kind of work is done every day. The workers work hard, the speed is slow and the efficiency is low. Over the years, many farmers have inspected large-scale farms in many coastal countries and regions at home and abroad, and have also consulted or hired engineers. Experts, I hope to help them solve problems: how to quickly open and close windows, how to quickly and accurately measure feed and quickly feed the breeding box, reduce feeding errors, reduce the generation of rot in the breeding box, and reduce The labor intensity of workers, these series of problems can be coordinated and solved or part of them can improve the breeding efficiency to a certain extent, and it is better to solve all the problems, then it can realize automatic or semi-automatic breeding production; however, currently in this field The fundamental problem of automatic feeding and metering in the researched prior art has not been solved, and the prior art still relies on the way of manually grasping the feed for feeding, and the feeding error is unavoidable, and the speed is slow, and there are many opportunities to produce rot; therefore, the research It is a topic with great market prospect to develop how to accurately and quickly quantitatively and directionally feed the breeding box, reduce the labor intensity of breeding workers, improve work efficiency, reduce labor force, and realize automated or semi-automated breeding production.

Method used

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  • Abalone culture feeding system with multiple lifting-mechanism feeders
  • Abalone culture feeding system with multiple lifting-mechanism feeders
  • Abalone culture feeding system with multiple lifting-mechanism feeders

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Embodiment Construction

[0045] The technical solution of the present application will be further described in detail through the following embodiments in conjunction with the accompanying drawings. Apparently, the described embodiments are only part of the embodiments of the present application.

[0046] Such as image 3 , Figure 4 As shown, it is a front view and a side view of an abalone culture feeding system with multiple lifting mechanism feeders described in the first embodiment of the application, and the feeding system includes a culture pond 97, a culture cabinet 6, Feeding machine 8, crane 1, each culture pond 97 is opened under the workshop floor, a plurality of culture ponds are arranged in parallel, a workshop walkway 976 is arranged between every two culture ponds, and a feeder track 977 is provided on the workshop walkway ; A pair of limit guide posts 971 are provided in the culture pond, and the limit guide posts are vertically erected on the culture pond, and one end is fixed on th...

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Abstract

The application discloses an abalone culture feeding system with multiple lifting-mechanism feeders. The abalone culture feeding system comprises culture ponds, culture cabinets, the feeders and a hoist, wherein wheel treads of cart running gears of the hoist press and run on workshop tracks on two track-bearing beams, and the two track-bearing beams are separately connected to workshop upright column brackets at two sides of the culture ponds; numerous culture tanks are arranged on both the front and back side faces of each culture cabinet and are provided with feeding ports, unidirectional burrs are arranged at peripheries of the feeding ports, the culture cabinets are placed in the culture ponds, and the feeding ports face to workshop walkways; the hoist comprises a plurality of bogie devices; the bogie devices are used for hoisting the culture cabinets to surfaces of the culture ponds; the feeders are separately arranged on the workshop walkways at two sides of the culture ponds and can rise, fall and walk and are provided with weighing systems, lifting mechanisms and water rinsing systems; and the feeders perform quantified feeding on the hoisted culture cabinets by taking high-pressure water generated by the water rinsing systems as power.

Description

technical field [0001] The application belongs to the field of artificial aquaculture, and in particular relates to a feeding system for quantitatively feeding feed into breeding boxes in aquaculture farms. Background technique [0002] Many fish towns along the coast of my country have built water farms for abalone artificial breeding. Many farmers directly build cage culture farms near the sea. Natural disasters are irresistible to human beings. Once the farmers encounter typhoons or red tides, the losses they suffer will be resigned to their fate. In severe cases, the farms will be completely destroyed and no crops will be harvested; On the shore, the seawater is pumped into the reservoir on the shore, and then diverted to the culture ponds of each workshop after filtration treatment. Oxygen supply is added regularly in the culture ponds to realize the water culture on the shore and avoid the impact of natural disasters such as typhoons or red tides. It realizes large-scale...

Claims

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Application Information

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IPC IPC(8): A01K61/80A01K61/53
CPCA01K61/53A01K61/80Y02A40/81
Inventor 黄君妍
Owner 黄君妍
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