Semi-dry rice field turtle breeding system

By setting up breeding cages and automated maggot production integrators under the rice ridges in rice fields, combined with solar panels to provide a simulated wild environment, the problems of natural habits and low yields in grass turtle farming have been solved, an efficient ecological breeding model has been achieved, and the quality and economic benefits of grass turtles have been improved.

CN223322776UActive Publication Date: 2025-09-12陈秀碧
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Patent Information

Application Number
CN202422806082.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-09-12
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

The existing breeding methods for medicinal black-bellied tortoises have problems such as the tortoises losing their natural habits, water quality deterioration, disease transmission, low yield and poor efficiency, which are difficult to meet market demand.

Method used

A semi-dry rice field turtle breeding system is adopted. By setting breeding cages under the rice ridges in the rice fields, combined with an automated fly maggot production integrator and solar panels, a simulated wild environment is provided to ensure the natural activities and growth needs of grass turtles, and realize the ecological breeding model of planting rice on the ridges and breeding turtles under the ridges.

Benefits of technology

The quality and efficacy of grass turtles grown in a close-to-natural environment are superior to those of traditional methods, which increases yield and economic benefits, improves the comprehensive utilization efficiency of rice fields, and promotes rural economic development and ecological protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a semi-dry type rice field turtle breeding system which is characterized in that the semi-dry type rice field turtle breeding system comprises a plurality of rice ridges, at least one breeding net cage is pre-buried below the rice ridges, grass turtle moving tables are arranged in the breeding net cage, small doors are formed in the tops of the breeding net cage, furrows are formed between the adjacent rice ridges, and the small doors are arranged in the furrows. A food catching platform capable of leading to the culture net cage is arranged in the furrow. The utility model has the beneficial effects that the utility model can provide a kind of imitated wild environment for the breeding of medicinal black-belly grass tortoises, make grass tortoises grow in the environment close to the nature, guarantee its efficacy and quality, set up the breeding net cage under the rice ridge of semi-dry paddy field, realize the novel ecological breeding mode of planting rice on the ridge and breeding turtoises under the ridge, improve the breeding efficiency, and improve the breeding quality of medicinal black-belly grass tortoises. The comprehensive utilization efficiency of the rice field is improved, equipment such as a fly maggot automatic production integrator and a solar panel is utilized, self-sufficiency ecological circulation is achieved, the breeding cost is reduced, and economic benefits are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of planting and breeding, and in particular to a semi-dry type rice field turtle breeding system. Background Art

[0002] Existing methods for breeding medicinal black-bellied tortoises typically involve fully artificial breeding or fully enclosed breeding ponds, but these methods have numerous drawbacks. Fully artificial breeding often causes the tortoises to lose their natural habits, affecting their medicinal value; while fully enclosed breeding ponds can easily lead to deteriorating water quality and the spread of disease, which is also detrimental to the tortoises' healthy growth. Furthermore, these traditional breeding methods suffer from low yields and poor efficiency, making it difficult to meet market demand. Therefore, there is an urgent need to develop a new breeding device that can maintain the natural habits of medicinal black-bellied tortoises while increasing yield and efficiency. Utility Model Content

[0003] In order to solve the above technical problems, the utility model provides a semi-dry rice field turtle breeding system, which can realize simulated wild breeding and achieve wild effects.

[0004] The technical solution is as follows: a semi-dry type rice field turtle breeding system, the key points of which are that it includes several rice ridges, under which at least one breeding cage is pre-buried, and inside all the breeding cages there is a tortoise movable platform, a small door is opened on the top of the breeding cage, a ridge ditch is opened between adjacent rice ridges, and a food capture platform that can lead to the breeding cage is set in the ridge ditch. With the above structure, it is possible to raise turtles under the ridges and plant rice on the ridges, thereby improving the comprehensive utilization efficiency of the rice fields. The medicinal black-bellied tortoise can rest or bask in the sun on the tortoise movable platform, and the medicinal black-bellied tortoise can eat the food produced on the food capture platform. At the same time, small fish can be fed in the ridge ditch for the tortoise to eat, ensuring a good environment suitable for the growth of the medicinal black-bellied tortoise that simulates the wild, thereby ensuring the normal growth of the tortoise and improving the efficacy of the medicine.

[0005] Preferably, an automated maggot production hub is mounted on the food capture platform, connected to the interior of the aquaculture cage via pipes and related equipment. Using this structure, food scraps are placed on the food capture platform to generate maggots, which are then collected by the automated maggot production hub and delivered via pipes to the interior of the aquaculture cage for consumption by the tortoises.

[0006] Preferably, a solar panel is installed within the ridge, positioned above the automated maggot production integrator, with the output end of the solar panel connected to the circuit system of the aquaculture cage. This structure can convert energy collected by the solar panel into electrical energy to power the aquaculture cage.

[0007] As a preferred embodiment, the cage body is densely covered with mesh holes in all directions. The above structure facilitates ventilation and allows water from the paddy field to enter the cage, thereby ensuring the growth of the medicinal black-bellied tortoise.

[0008] Preferably, a small electric light is provided on the inner top of the breeding cage. With the above structure, the small electric light is waterproof and moisture-proof, which can extend the service life of the small light. At the same time, the small light can be used to provide a light and temperature environment suitable for the growth of medicinal black-bellied tortoises.

[0009] As a preferred embodiment, the left and right sides of the movable platform inside the breeding cage are both provided with slopes leading to the movable platform. With the above structure, it is convenient for the medicinal black-bellied tortoise to climb onto the movable platform for rest and sunbathing.

[0010] Preferably, the small door of the breeding cage is provided with ventilation holes, and the rice ridges are provided with through holes corresponding to the ventilation holes. With the above structure, sufficient oxygen can be provided for the growth of the medicinal black-bellied tortoise in the breeding cage.

[0011] As a preferred embodiment, the height of the movable platform is higher than the height of the paddy field water in the ridge ditch. With the above structure, the medicinal black-bellied tortoise can have room for choice, and can choose to be in the water or on the movable platform according to its own situation.

[0012] Compared with the existing technology, the beneficial effects of the utility model are: it can provide a breeding plan for medicinal black-bellied grass turtles in a simulated wild environment, so that the grass turtles can grow in an environment close to nature, ensuring their medicinal efficacy and quality, and setting breeding cages under the rice ridges in semi-dry rice fields, realizing a new ecological breeding model of planting rice on the ridges and raising turtles under the ridges, improving the comprehensive utilization efficiency of rice fields, and using equipment such as fly larvae automated production integrators and solar panels to achieve a self-sufficient ecological cycle, reducing breeding costs and improving economic benefits. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a structural diagram of the utility model;

[0014] Figure 2 It is a structural diagram of the breeding cage 2;

[0015] Figure 3 for Figure 2 Cross-sectional view of AA;

[0016] Figure 4 for Figure 1 Cross-sectional view of the BB. DETAILED DESCRIPTION

[0017] The present invention will be further described below with reference to the embodiments and accompanying drawings.

[0018] like Figures 1 to 4 As shown, a semi-dry type rice field turtle breeding system comprises a plurality of rice ridges 1. A groove suitable for placing aquaculture cages 2 is dug under the rice ridges 1 of the semi-dry type rice field. The prepared aquaculture cages 2 are placed into the grooves one by one and backfilled with soil to fix them. There is a distance of 3-4 cm between the top of the aquaculture cage 2 and the top of the rice ridge 1. A tortoise movable platform 3 is provided inside the aquaculture cage 2. A small door 4 that can be opened and closed is provided on the top of the aquaculture cage 2. A ditch is provided between adjacent rice ridges 1. A food capture platform 5 that can lead to the aquaculture cage 2 is provided in the ditch. On the food capture platform 5 Kitchen waste organic matter and bean dregs after making tofu are placed, and fly maggots are grown using the kitchen waste organic matter and bean dregs after making tofu; an automatic fly maggot production integrator 6 is installed on the food capture platform 5, and the automatic fly maggot production integrator 6 is connected to the interior of the breeding cage 2 through pipelines and related equipment, so as to facilitate the consumption of medicinal black belly grass, wherein the automatic fly maggot production integrator 6 refers to the structure of the automatic fly maggot production integrator in paragraph 0054 of the specification of the Chinese patent application with publication number 105210969A, which discloses a "semi-dry rice field simulated wild eel breeding system and breeding method thereof".

[0019] The body of the breeding cage 2 is densely covered with mesh holes in all directions. A small waterproof and moisture-proof electric light 7 is provided on the inner top of the breeding cage 2, which can extend the life of the small electric light 7 and provide suitable light and temperature for the medicinal black-bellied tortoise in the breeding cage 2. A solar panel 8 is provided in the ridge ditch. The solar panel 8 is provided above the fly larvae automatic production integrator 6. The output end of the solar panel 8 is connected to the circuit system of the breeding cage 2 and can be connected to the small electric light 7 of the breeding cage 2 through a pipeline to provide heat and sunlight for the medicinal black-bellied tortoise. An air vent 401 is provided on the small door 4 of the breeding cage 2, and a through hole 101 is provided on the rice ridge 1 corresponding to the air vent 401 to facilitate the breathing of the medicinal black-bellied tortoise inside the breeding cage 2.

[0020] The left and right sides of the movable platform 3 inside the breeding cage 2 are both provided with slopes 301 leading to the movable platform 3, which makes it convenient for the medicinal black-bellied grass tortoise to climb onto the movable platform 3 to rest or sunbathe. The height of the movable platform 3 is higher than the height of the rice field water in the ridge ditch, which allows the medicinal black-bellied grass tortoise to have room for choice and choose to be in the water or on the movable platform according to its own situation.

[0021] Within the rice paddy, a suitable number and specifications of aquaculture cages 2 are designed and manufactured based on the paddy's topography and area. Then, grooves are dug under the rice ridges 1, into which the cages 2 are placed one by one, backfilled with soil to secure them. An automated maggot production hub 6 is placed on a platform 5 within the ridge, connected to related equipment and piping. Finally, a solar panel 8 is installed above the hub 6, and its power output is connected to the circuitry within the aquaculture cages 2.

[0022] After the entire system was set up, the cultivation of medicinal black-bellied tortoises began. Two medicinal black-bellied tortoises, one male and one female, were placed in the cultivation cage 2. The environment inside the cultivation cage 1 and the growth of the tortoises were regularly checked to clean up leftover bait and excrement in a timely manner to keep the interior of the cultivation cage 2 clean and hygienic. At the same time, the growth and number of maggots were observed and the amount and frequency of feed were adjusted according to actual conditions. Solar panels 8 were used to provide a stable power supply for the cultivation cage 2 to ensure that the medicinal black-bellied tortoises received sufficient light and temperature. Appropriate emergency measures were taken to ensure power supply under special weather conditions. When the medicinal black-bellied tortoises reached the market standard, they were removed from the cultivation cage 2 by opening the tortoise-taking door 4 and then graded, packaged, and sold according to market demand. The cultivated medicinal black-bellied tortoises are grown in an environment close to nature. Their quality and efficacy are superior to those obtained by traditional cultivation, so they have high market value and competitiveness. Using this type of cultivation not only improves the comprehensive utilization efficiency of rice fields, but also promotes the development of the local rural economy and achieves remarkable results in ecological protection.

[0023] Finally, it should be noted that the above description is only a preferred embodiment of the present invention. Under the guidance of the present invention, ordinary technicians in this field can make various similar expressions without violating the purpose and claims of the present invention. Such changes fall within the scope of protection of the present invention.

Claims

1. A semi-dry rice field turtle breeding system, characterized by: The invention comprises a plurality of rice ridges (1), at least one breeding cage (2) is pre-buried under the rice ridges (1), a tortoise movable platform (3) is provided inside all the breeding cages (2), a small door (4) is provided on the top of the breeding cage (2), a ditch is provided between adjacent rice ridges (1), and a food catching platform (5) that can lead to the breeding cages (2) is provided in the ditch.

2. A semi-dry rice field turtle breeding system according to claim 1, characterized in that: An automated fly maggot production integrator (6) is installed on the food capture platform (5), and the automated fly maggot production integrator (6) is connected to the interior of the breeding cage (2) through pipelines and related equipment.

3. A semi-dry rice field turtle breeding system according to claim 2, characterized in that: A solar panel (8) is provided in the ditch, and the solar panel (8) is provided above the fly maggot automated production integrator (6). The output end of the solar panel (8) is connected to the circuit system of the breeding cage (2).

4. The semi-dry rice field turtle breeding system according to claim 1, characterized in that: The aquaculture cage (2) is densely covered with mesh holes in all directions of the cage body.

5. The semi-dry rice field turtle breeding system according to claim 4, characterized in that: A small electric lamp (7) is provided on the inner top of the breeding cage (2).

6. The semi-dry rice field turtle breeding system according to claim 5, characterized in that: Slopes (301) leading to the movable platform (3) are provided on both the left and right sides of the movable platform (3) inside the breeding cage (2).

7. The semi-dry rice field turtle breeding system according to claim 6, characterized in that: The small door (4) of the breeding cage (2) is provided with an air vent (401), and the rice ridge (1) is provided with a through hole (101) corresponding to the air vent (401).

8. The semi-dry rice field turtle breeding system according to claim 6, characterized in that: The height of the movable platform (3) is higher than the height of the paddy field water in the ridge ditch.

Citation Information

Patent Citations

  • Semi-dry rice field for imitating eel cultivating system and cultivating method thereof

    CN105210969A