A regenerated turtle rice ecological breeding system
Patent Information
- Application Number
- CN202521949488.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-11
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-09-11
AI Technical Summary
[0002]在传统农业种养模式中,水产养殖与水稻种植大多处于相互独立的状态,这种分离式模式存在诸多局限性,一方面,水产养殖(如养鳖)过程中,水体易积累残饵、粪便等污染物,若不及时处理,不仅会导致水质恶化,增加鳖类病害发生风险,还需额外投入大量水资源进行换水,造成水资源的严重浪费;另一方面,水稻种植过程中,为保证产量往往需要施用较多化肥和农药,多余的化肥农药易随雨水或灌溉水流失,既污染周边水体环境,又降低稻米的品质安全性,不符合绿色农业发展需求
[0012] 1. Optimize spatial layout and achieve integrated farming: The system uses a combination of two vertical panels and two filter screens to precisely separate two turtle farming areas and one rice planting area. The rice planting area is located between the two turtle farming areas. This symmetrical layout provides turtles with independent activity and growth space, avoiding physical damage to the rice. It also allows turtle excrement and uneaten feed to naturally seep into the rice planting area through the gaps in the filter screen, providing sufficient natural organic fertilizer for rice growth, reducing the use of chemical fertilizers, realizing an ecological cycle of "turtles feeding rice and rice fattening turtles", and improving the benefits of integrated farming.
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Figure CN224747298U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of ecological farming, and in particular to a regenerated turtle-rice ecological farming system. Background Technology
[0002] In traditional agricultural farming models, aquaculture and rice cultivation are mostly independent of each other. This separate model has many limitations. On the one hand, in aquaculture (such as turtle farming), pollutants such as uneaten feed and feces easily accumulate in the water. If not treated in time, it will not only lead to water quality deterioration and increase the risk of turtle diseases, but also require a large amount of additional water resources for water exchange, resulting in serious waste of water resources. On the other hand, in rice cultivation, in order to ensure yield, a lot of chemical fertilizers and pesticides are often used. Excess chemical fertilizers and pesticides are easily washed away with rainwater or irrigation water, which not only pollutes the surrounding water environment, but also reduces the quality and safety of rice, which does not meet the needs of green agricultural development.
[0003] Regarding the aforementioned technologies, the inventors believe that although some integrated rice-fish farming models have emerged in recent years, most models lack scientific and rational spatial division and effective separation structures. This leads to uncontrolled turtle activity, which easily tramples and damages rice roots, affecting rice growth. Simultaneously, turtle excrement is difficult to accurately concentrate in the rice planting area, failing to fully utilize its role as natural fertilizer, resulting in low resource utilization efficiency. Furthermore, some existing separation devices are cumbersome to install, requiring numerous tools for fixation, and have poor stability in the muddy environment of rice paddies, easily shifting or tipping over. This increases the operational difficulty and management costs for farmers, hindering large-scale application. Therefore, to solve these problems, this application provides a regenerated turtle-rice ecological farming system. Utility Model Content
[0004] To address the problems mentioned in the background art, this application provides a regenerated turtle-rice ecological farming system.
[0005] The regenerated turtle-rice ecological farming system provided in this application adopts the following technical solution:
[0006] A regenerated turtle-rice ecological farming system includes two vertical plates, four fixing blocks, and two filter screens. Each of the two vertical plates has two slots on one side for the two filter screens to be inserted. The two filter screens divide the two vertical plates into two turtle farming areas and one rice planting area. Each vertical plate has fixing slots at both ends for the fixing blocks to be inserted.
[0007] Preferably, the rice-growing area is located between two turtle-raising areas.
[0008] Preferably, a triangular insertion strip for inserting into the paddy field is fixedly installed at the bottom of the vertical plate.
[0009] Preferably, a triangular positioning block for insertion into the paddy field is fixedly installed at the bottom of the fixing block.
[0010] Preferably, the top of the filter screen is equipped with a lifting handle.
[0011] In summary, this application includes the following beneficial technical effects:
[0012] 1. Optimize spatial layout and achieve integrated farming: The system uses a combination of two vertical panels and two filter screens to precisely separate two turtle farming areas and one rice planting area. The rice planting area is located between the two turtle farming areas. This symmetrical layout provides turtles with independent activity and growth space, avoiding physical damage to the rice. It also allows turtle excrement and uneaten feed to naturally seep into the rice planting area through the gaps in the filter screen, providing sufficient natural organic fertilizer for rice growth, reducing the use of chemical fertilizers, realizing an ecological cycle of "turtles feeding rice and rice fattening turtles", and improving the benefits of integrated farming.
[0013] 2. Convenient and stable installation, reducing management costs: The triangular insertion strip at the bottom of the vertical plate and the triangular positioning block at the bottom of the fixing block utilize the stability advantage of the triangular structure, allowing for direct and quick insertion into the paddy field soil without the need for additional complex tools, greatly simplifying the installation process. At the same time, the fixing block and the fixing grooves at both ends of the vertical plate engage with each other, further enhancing the overall structural stability and effectively preventing the device from shifting or tipping over in the paddy field, reducing the number of subsequent maintenance operations, lowering farmers' management costs and operational difficulties, and making it more suitable for large-scale promotion and use in paddy fields.
[0014] 3. Improve resource utilization and save energy and protect the environment: The filter screen not only separates the water but also performs preliminary filtration, reducing the spread of pollutants from the turtle farming area to the outside water, improving the aquatic environment, reducing the incidence of turtle diseases, and reducing the use of aquaculture drugs. At the same time, the rice-growing area makes full use of the waste from the turtle farming area as fertilizer, realizing the recycling of resources, reducing agricultural non-point source pollution, which is in line with the concept of green ecological agriculture development and has economic, social and environmental benefits. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the first overall structure of a regenerated turtle-rice ecological farming system according to an embodiment of this application;
[0016] Figure 2 This is a schematic diagram of the second overall structure of a regenerated turtle-rice ecological farming system according to an embodiment of this application;
[0017] Figure 3 This is a schematic diagram of the third overall structure of a regenerated turtle-rice ecological farming system according to an embodiment of this application;
[0018] Figure 4 yes Figure 2 Enlarged schematic diagram of the structure at point A in the middle.
[0019] Explanation of the attached diagram labels: 1. Vertical plate; 2. Fixing block; 3. Filter screen; 4. Slot; 5. Turtle farming area; 6. Rice planting area; 7. Fixing groove; 8. Triangular insert strip; 9. Triangular positioning block; 10. Lifting handle. Detailed Implementation
[0020] The following is in conjunction with the appendix Figure 1 - Figure 4 This application will be described in further detail.
[0021] Example 1:
[0022] A regenerated turtle-rice ecological farming system, referring to Figure 1 - Figure 4 It includes two vertical plates 1, four fixing blocks 2 and two filter screens 3. Each of the two vertical plates 1 has two slots 4 on one side for the two filter screens 3 to be inserted. The two filter screens 3 divide the two vertical plates 1 into two turtle farming areas 5 and a rice planting area 6. The rice planting area 6 is located between the two turtle farming areas 5. Each vertical plate 1 has fixing slots 7 at both ends for the fixing blocks 2 to be inserted.
[0023] Specifically, during assembly, the two filter screens 3 are first aligned with the two slots 4 on one side of the two vertical plates 1. The filter screens 3 are then tightly connected to the vertical plates 1 by snapping them together. The size of the slots 4 matches the edge size of the filter screens 3, which restricts the lateral and longitudinal displacement of the filter screens 3 and ensures a stable connection. After both filter screens 3 are snapped into place with the two vertical plates 1, a clear spatial division is formed between the two vertical plates 1: since the two filter screens 3 are parallel and symmetrically distributed, the middle area is divided into a rice-growing area 6, while the area between the outer sides of the two vertical plates 1 and the corresponding filter screens 3 becomes two independent turtle-raising areas 5. The rice-growing area 6 is located precisely between the two turtle-raising areas 5. The working principle of this structural design is that the rigid vertical plates 1 provide a supporting frame, while the flexible filter screens 3 achieve regional isolation, ensuring the independence of each area while reserving a channel for subsequent material circulation, such as turtle excrement, to permeate into the rice-growing area 6. Meanwhile, each vertical plate 1 has a fixing groove 7 at both ends. After the overall frame is initially formed, the four fixing blocks 2 are respectively snapped into the corresponding fixing groove 7. The groove structure of the fixing groove 7 can form a wrapping limit for the fixing block 2, preventing the fixing block 2 from falling off the vertical plate 1 during use, further enhancing the stability of the overall structure and providing support for the long-term use of the system in the paddy field environment.
[0024] Reference Figure 1 and Figure 4 The bottom of the vertical plate 1 is fixedly equipped with a triangular insertion strip 8 for inserting into the paddy field, and the bottom of the fixing block 2 is fixedly equipped with a triangular positioning block 9 for inserting into the paddy field.
[0025] Specifically, a triangular insert strip 8 is fixedly installed at the bottom of the vertical plate 1. Its working principle is based on the mechanical properties of a triangular structure and the physical properties of paddy field soil. The pointed end of the triangular insert strip 8 reduces the contact area when inserted into the paddy field soil, lowering soil resistance. This allows farmers to quickly insert the triangular insert strip 8 into the soil simply by pressing the top of the vertical plate 1 manually, without the need for complex tools. After insertion, it ensures that the vertical plate 1 remains upright and stable in the muddy paddy field environment, providing reliable vertical support for the entire system. Similarly, a triangular positioning block 9 is fixedly installed at the bottom of the fixing block 2. Its working principle is the same as that of the triangular insert strip 8: the pointed end of the triangular positioning block 9 facilitates quick insertion into the soil. After insertion, the interaction between the triangular structure and the soil provides a stable positioning effect for the fixing block 2. Simultaneously, since the fixing block 2 is engaged with the vertical plate 1 through the fixing groove 7, the fixing effect of the triangular positioning block 9 on the fixing block 2 is transferred to the vertical plate 1, forming a "vertical plate 1 - fixing block 2 - soil" configuration. The multi-point fixing system further disperses the external forces on the system, such as water flow impact and collisions from turtle activities, to prevent the overall structure from tilting or falling over, and to ensure that the spatial division between turtle farming area 5 and rice planting area 6 is not disrupted.
[0026] Reference Figure 3 The top of the filter screen 3 is equipped with a lifting handle 10.
[0027] Specifically, as the core functional component of the system, the filter screen 3 works by combining the dual functions of regional barrier and material transfer: on the one hand, the mesh size of the filter screen 3 is precisely designed to both prevent turtles in the turtle farming area 5 from passing through and avoid them from entering the rice planting area 6 to trample on the rice roots or damage the paddy field structure, and to allow small molecules such as water, turtle feces, and uneaten feed to permeate through the mesh into the rice planting area 6, providing natural organic fertilizer for rice growth and realizing the resource cycle of "turtle farming waste - rice nutrients". On the other hand, the top of the filter screen 3 is equipped with a lifting handle 10, which works based on the design requirement of convenient operation: during long-term use of the system, the mesh of the filter screen 3 may be blocked by the accumulation of silt, weeds and other debris, affecting the efficiency of water flow and material transfer; at this time, farmers can easily pull the filter screen 3 out of the slot 4 by holding the lifting handle 10 and using the force point provided by the handle, then clean or replace it and reattach it to the slot 4. The whole process does not require disassembling other parts, which greatly reduces the difficulty and time of maintenance operations, ensuring that the filter screen 3 always maintains a good functional state, and ensuring the material cycle and environmental stability between the turtle farming area 5 and the rice planting area 6.
[0028] The implementation principle of the regenerated turtle-rice ecological farming system in this application embodiment is as follows: During assembly, two filter screens 3 are first aligned with the two slots 4 on one side of the two vertical plates 1 and snapped together. The slots 4 match the edge size of the filter screens 3, limiting their horizontal and vertical displacement to ensure a stable connection. After the two filter screens 3 are snapped together in parallel and symmetrically, a spatial division is formed between the two vertical plates 1. The middle is the rice planting area 6, and the outer side of the vertical plate 1 and the corresponding filter screen 3 are the two turtle farming areas 5. This structure can be spliced in multiple sections to form a spliced structure. The rigid vertical plate 1 provides a supporting frame, and the flexible filter screen 3 achieves regional isolation, which not only ensures the independence of each area, but also reserves a channel for turtle excrement to penetrate into the rice planting area 6. After the overall frame is initially formed, four fixing blocks 2 are respectively inserted into the fixing grooves 7 at both ends of the vertical plate 1. The groove structure of the fixing groove 7 forms a wrapping limit for the fixing blocks 2, preventing them from falling off and enhancing structural stability. The triangular insertion strip 8 at the bottom of the vertical plate 1, with the mechanical properties of triangles and the physical properties of paddy soil, reduces insertion resistance at the tip and can be inserted by manual pressing. After insertion, it makes multiple contacts with the soil to prevent the vertical plate 1 from shifting and provides vertical support. The triangular positioning block 9 at the bottom of the fixing block 2 works on the same principle. Its fixing effect is transmitted to the vertical plate 1 through the fixing groove 7, forming a multi-point fixing system of "vertical plate 1 - fixing block 2 - soil". This disperses external forces such as water flow impact and turtle collisions, preventing structural tilting. The filter screen 3 has a precise mesh size, which can prevent turtles from entering the rice planting area and damaging the rice, while allowing water and turtle excrement to seep in and fertilize the rice, realizing resource recycling. The top lifting handle 10 makes it convenient for farmers to pull out the clogged filter screen 3 for cleaning or replacement without disassembling other parts, ensuring long-term stable operation of the system.
[0029] The foregoing description of a preferred embodiment of the present disclosure provides an exemplary implementation of a regenerated turtle-rice ecological farming system. However, those skilled in the art will understand that various modifications and alterations can be made to the above specific embodiments without departing from the spirit of the present disclosure, and various combinations can be made to the various technical features and structures proposed in the present disclosure without exceeding the protection scope of the present disclosure, which is determined by the appended claims.
Claims
1. A regenerated turtle rice ecological breeding system, comprising two vertical plates (1), four fixed blocks (2) and two filter screens (3), characterized in that: Two slots (4) are provided on one side of each of the two vertical plates (1) for the two filter screens (3) to be inserted. The two filter screens (3) divide the two vertical plates (1) into two turtle farming areas (5) and one rice planting area (6). Each vertical plate (1) has a fixing slot (7) at both ends for the fixing block (2) to be inserted.
2. The system according to claim 1, wherein the system is characterized by: The rice-growing area (6) is located between the two turtle-raising areas (5).
3. The system according to claim 1, wherein the system is characterized by: The bottom of the vertical plate (1) is fixedly equipped with a triangular insertion strip (8) for inserting into the paddy field.
4. The system of claim 1, wherein the system is characterized by: The bottom of the fixing block (2) is fixedly installed with a triangular positioning block (9) for insertion into the paddy field.
5. The system of claim 1, wherein the system is characterized by: The top of the filter screen (3) is equipped with a lifting handle (10).