Agricultural three-dimensional poultry breeding shed
Patent Information
- Application Number
- CN202610817228.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-08
- Publication Date
- 2026-08-21
AI Technical Summary
[0003]现有农业立体禽类养殖棚在使用时,一般是将禽类放入鸡笼之中进行养殖,并在养殖过程中,喂食喂水,清理污垢,然而现有技术中,长时间使用,会使得鸡笼的笼体底端附着很多禽类粪便,较长时间后容易对于禽类产生较大的健康危害,也易于导致用户很大程度的损失,为此,我们提出一种农业立体禽类养殖棚解决上述问题
[0016]该发明装置主要是利用气动伸缩块与气动锁定条输出运行后以使得鸡笼喂食构造进行解锁,解锁后使得电动绞盘、定位滑轮、钢缆进行输出运行后以达到使得鸡笼框体进行下降到适合的高度位置,并使得丝杆组、往复基座、横向液压臂、竖向液压臂与底围架的输出运行到适合的清洁位置,通过输出运行后以使得横向清理辊刷与槽口清理辊刷对于笼体进行有效的清洁,并进行复位,从而可以长时间保持设备的清洁,保证了禽类养殖过程中的禽类健康。
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Figure CN122603785A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of poultry farming technology, and in particular to a three-dimensional agricultural poultry farming shed. Background Technology
[0002] Three-dimensional farming is a modern farming model that achieves efficient resource utilization through layered layout or ecological cycle. Three-dimensional farming technology integrates precise nutrition formulas and biosecurity control, adopts an all-in, all-out process, and is equipped with a digital management system to monitor environmental parameters in real time. The oxygen concentration is controlled above 19.5%, and environmental protection standards require daily production and disposal of manure. Through resource utilization, it achieves a cycle of planting and breeding.
[0003] In existing agricultural vertical poultry sheds, poultry are typically raised in cages, and during the raising process, they are fed, watered, and cleaned. However, with current technology, prolonged use results in a lot of poultry droppings accumulating at the bottom of the cages, which can easily cause significant health hazards to the poultry and lead to substantial losses for the user. Therefore, we propose an agricultural vertical poultry shed to solve the above problems. Summary of the Invention
[0004] To address the aforementioned problems, this invention proposes an agricultural three-dimensional poultry shed. This shed primarily utilizes pneumatic telescopic blocks and pneumatic locking strips to unlock the feeding structure of the chicken cages. After unlocking, the electric winch, positioning pulleys, and steel cables are activated, lowering the chicken cage frame to a suitable height. This allows the screw assembly, reciprocating base, horizontal hydraulic arm, vertical hydraulic arm, and bottom frame to be positioned for cleaning. The horizontal cleaning rollers and grooved cleaning rollers effectively clean the cages and then reset, maintaining the equipment's cleanliness for extended periods and ensuring the health of the poultry during the breeding process.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] An agricultural three-dimensional poultry shed includes a shed structure, a water guiding assembly, a lifting and positioning mechanism, a chicken cage feeding structure, and a dirt cleaning mechanism. The bottom corridor frame of the shed structure is bolted to the upper side of the water guiding assembly, and the enclosed frame seat of the water guiding assembly is bolted to the upper side of the lifting and positioning mechanism, and the lifting block of the chicken cage feeding structure is fixedly connected to the lower part of the binding base of the lifting and positioning mechanism. The inner side of the bottom corridor frame is bolted to the corner bracket base of the dirt cleaning mechanism.
[0007] As a further technical solution, the aquaculture shed structure also includes vertical reinforced concrete piles, bolted brackets, inclined reinforced concrete piles, a main shed frame, and a top beam. The vertical reinforced concrete piles are set inside the bottom soil of the water area. The top of the vertical reinforced concrete piles is bolted to the bottom corridor frame through bolted brackets. Inclined reinforced concrete piles are set at both ends of the bottom corridor frame. The main shed frame is set above the side of the bottom corridor frame, and a bolted top beam is set at the top of the main shed frame.
[0008] As a further technical solution, the breeding shed structure also includes a tenon base, waterproof tiles, a hanging frame, and a lighting lamp. The top of the top beam is provided with a tenon base, and the sides of the tenon base are provided with waterproof tiles that are snapped on. The bottom inner side of the top beam is provided with a hanging frame, and the bottom end of the hanging frame is provided with a lighting lamp.
[0009] As a further technical solution, the assembled water guiding assembly also includes a lifting frame, a water tank, a bolt sleeve, a water inlet valve block, and a water nozzle. The lifting frame is provided above the middle part of the enclosure frame, and a water tank is provided at the top of the lifting frame. A bolt sleeve is provided on the outer side of the middle part of the enclosure frame, and the bottom end of the bolt sleeve is provided with the output end of the water inlet valve block. The top end of the bolt sleeve is provided with the water nozzle.
[0010] As a further technical solution, the lifting and positioning mechanism also includes a pneumatic telescopic block, a lifting column, a side frame, and a locking hole column. The output end of the bottom sleeve block is provided with a pneumatic telescopic block, the top of the bottom sleeve block is provided with a bolt-assembled lifting column, and the upper outer side of the lifting column is bolted to the side frame. The lower inner end of the side frame is provided with a locking hole column.
[0011] As a further technical solution, the lifting and positioning mechanism also includes an electric winch, a positioning pulley, and a steel cable. An electric winch is provided on the inner side above the lifting column, and a steel cable is wound around the electric winch. A positioning pulley is mounted on one side of the steel cable.
[0012] As a further technical solution, the chicken cage feeding structure also includes a chicken cage frame, a slot base, a pneumatic locking strip, a bolt connecting plate, a hinge base, a connecting bar, a hydraulic rod, and a feeding trough. The inner end of the lifting block is provided with the chicken cage frame, and the lower outer side of the chicken cage frame is provided with the slot base. The upper outer end of the slot base is provided with a pneumatic locking strip. The middle side of the chicken cage frame is bolted to a bolt connecting plate for mounting the hinge base. The outer end of the hinge base is provided with a connecting bar for connecting the output end of the hydraulic rod. The inner end of the hinge base is provided with a feeding trough.
[0013] As a further technical solution, the dirt cleaning mechanism also includes a lead screw assembly, a reciprocating base, a bolt hanger, a horizontal hydraulic arm, a sleeve block, a vertical hydraulic arm, and a base frame. The lead screw assembly is provided at the inner end of the corner bracket base, and the output end of the lead screw assembly is threadedly connected to the reciprocating base. The bottom end of the reciprocating base is bolted to the bolt hanger, and the bottom end of the bolt hanger is provided with a horizontal hydraulic arm. The output end of the horizontal hydraulic arm is provided with a sleeve block, and the inner side of the sleeve block is provided with a vertical hydraulic arm. The bottom end of the vertical hydraulic arm is bolted to the base frame.
[0014] As a further technical solution, the dirt cleaning mechanism also includes a gearbox, a splined coupling, a rotary motor, a transverse cleaning roller brush, a hydraulic transverse frame, an adjusting base, an electric rotating disk, and a slotted cleaning roller brush. The gearbox is located on the inner side of the middle of the bottom frame, and a splined coupling connected to the output end of the rotary motor is located at the top of the gearbox. The output end of the gearbox is equipped with a transverse cleaning roller brush. A hydraulic transverse frame is located above the side of the bottom frame, and an adjusting base is located at the output end of the hydraulic transverse frame. An electric rotating disk is located on one side of the adjusting base, and a slotted cleaning roller brush is located at the output end of the electric rotating disk.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] This invention mainly utilizes a pneumatic telescopic block and a pneumatic locking bar to unlock the feeding structure of the chicken cage. After unlocking, the electric winch, positioning pulley, and steel cable are activated to lower the chicken cage frame to a suitable height. This allows the screw assembly, reciprocating base, horizontal hydraulic arm, vertical hydraulic arm, and bottom frame to be positioned for cleaning. The horizontal cleaning roller and groove cleaning roller effectively clean the cage and then reset, thus maintaining the cleanliness of the equipment for a long time and ensuring the health of poultry during the poultry farming process. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of a three-dimensional poultry shed for agriculture;
[0018] Figure 2 This is a schematic diagram of the structure viewed from below in this invention;
[0019] Figure 3 This is a schematic diagram of the structure of the breeding shed in this invention;
[0020] Figure 4 This is a schematic diagram of the structure of the water guiding component in this invention;
[0021] Figure 5 This is a schematic diagram of the lifting and positioning mechanism in this invention;
[0022] Figure 6 This is a schematic diagram of the chicken cage feeding structure in this invention;
[0023] Figure 7 This is a schematic diagram of the dirt cleaning mechanism in this invention.
[0024] In the diagram: 1. Breeding shed structure; 101. Vertical reinforced concrete piles; 102. Bolt brackets; 103. Bottom corridor frame; 104. Inclined reinforced concrete piles; 105. Main shed frame; 106. Top beam; 107. Tenon base; 108. Waterproof tiles; 109. Hanger; 1010. Lighting; 2. Assembled water guiding components; 201. Bolt bracket; 202. Enclosed frame; 203. Elevating frame; 204. Water trough; 205. Bolt sleeve; 206. Inlet valve block; 207. Water inlet nozzle; 3. Lifting and positioning mechanism; 301. Bottom sleeve block; 302. Pneumatic telescopic block; 303. Elevating column; 304. Side frame; 305. Hanging column with locking hole; 306. Electric winch; 307. Positioning pulley; 308. Steel cable; 309. Binding base; 4. 1. Chicken cage feeding structure; 401. Lifting block; 402. Chicken cage frame; 403. Slot base; 404. Pneumatic locking strip; 405. Bolt connecting plate; 406. Hinge base; 407. Connecting bar; 408. Hydraulic rod; 409. Feeding trough; 5. Dirt cleaning mechanism; 501. Angle bracket base; 502. Screw assembly; 503. Reciprocating base; 504. Bolt hanger; 505. Horizontal hydraulic arm; 506. Set block; 507. Vertical hydraulic arm; 508. Bottom frame; 509. Gearbox; 5010. Splined shaft; 5011. Rotary motor; 5012. Horizontal cleaning roller brush; 5013. Hydraulic horizontal frame; 5014. Adjusting base; 5015. Electric rotating disc; 5016. Slot cleaning roller brush. Detailed Implementation
[0025] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships, are based on the orientation or positional relationships shown in the accompanying drawings and are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this invention, unless otherwise stated, "a plurality of" means two or more.
[0026] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art will understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0027] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0028] Please see Figure 1-7 In this embodiment of the invention, an agricultural three-dimensional poultry shed includes a shed structure 1, a water-guiding assembly 2, a lifting and positioning mechanism 3, a chicken cage feeding structure 4, and a dirt cleaning mechanism 5. The bottom corridor frame 103 on the shed structure 1 is bolted to the upper side of the water-guiding assembly 2, and the enclosed frame seat 202 on the water-guiding assembly 2 is bolted to the upper side of the lifting and positioning mechanism 3, and the binding base 309 on the lifting and positioning mechanism 3 is fixedly connected to the lower part of the lifting block 401 on the chicken cage feeding structure 4. The inner side of the bottom corridor frame 103 is bolted to the corner bracket base 501 on the dirt cleaning mechanism 5.
[0029] The aquaculture shed structure 1 also includes vertical steel-concrete piles 101, bolt brackets 102, inclined steel-concrete piles 104, shed main frame 105, and top beam 106. The vertical steel-concrete piles 101 are set inside the bottom soil of the water area. The top of the vertical steel-concrete piles 101 is bolted to the bottom corridor frame 103 through bolt brackets 102. Inclined steel-concrete piles 104 are set at both ends of the bottom corridor frame 103. The shed main frame 105 is set above the side of the bottom corridor frame 103, and the top of the shed main frame 105 is set with bolted top beam 106.
[0030] In an embodiment of the present invention, the vertical steel-concrete piles 101 of the aquaculture shed structure 1 are implanted into the bottom soil of the water area, and the bottom corridor frame 103 is fixed by bolt brackets 102. The inclined steel-concrete piles 104 reinforce both sides to form a stable three-dimensional aquaculture foundation. The shed main frame 105 and the top beam 106 build the shed frame, which facilitates the subsequent installation of various components.
[0031] The breeding shed structure 1 also includes a tenon base 107, waterproof tiles 108, a hanger 109, and a lighting lamp 1010. The top of the top beam 106 is provided with a tenon base 107, and the side of the tenon base 107 is provided with a waterproof tile 108 for snap-fit installation. The bottom of the top beam 106 is provided with a hanger 109, and the bottom of the hanger 109 is provided with a lighting lamp 1010.
[0032] In embodiments of the present invention, the waterproof tile 108 is installed by the snap-fit base 107 to achieve rain and water protection, and the lighting lamp 1010 is suspended by the hanger 109 so that the lighting lamp 1010 provides light to the breeding area to facilitate work at night and in poor lighting conditions.
[0033] The water guiding assembly 2 also includes a lifting frame 203, a water tank 204, a bolt sleeve 205, a water inlet valve block 206, and a water nozzle 207. The lifting frame 203 is provided above the middle part of the enclosure frame 202, and the water tank 204 is provided at the top of the lifting frame 203. The bolt sleeve 205 is provided on the outer side of the middle part of the enclosure frame 202, and the output end of the water inlet valve block 206 is provided at the bottom end of the bolt sleeve 205. The water nozzle 207 is provided at the top end of the bolt sleeve 205.
[0034] In an embodiment of the present invention, a certain number of poultry are placed in the chicken cage frame 402 as needed. When water needs to be fed, the water inlet valve block 206 is opened, and water is output through the water inlet nozzle 207 at the output end of the bolt sleeve 205 to the water tank 204 to achieve the effect of water feeding. When feeding needs to be done, a sufficient amount of food is put into the feeding trough 409 to achieve the effect of feeding.
[0035] The lifting and positioning mechanism 3 also includes a pneumatic telescopic block 302, a lifting column 303, a side frame 304, and a locking column 305. The output end of the bottom sleeve block 301 is provided with a pneumatic telescopic block 302. The top of the bottom sleeve block 301 is provided with a bolt-assembled lifting column 303, and the upper outer side of the lifting column 303 is bolted to the side frame 304. The lower inner end of the side frame 304 is provided with a locking column 305.
[0036] In an embodiment of the present invention, after a long period of time, the chicken cage feeding structure 4 will generate a lot of dirt. Then, the pneumatic telescopic block 302 is used to output the operation so that the pneumatic telescopic block 302 unlocks the slot base 403. After unlocking, the pneumatic locking bar 404 unlocks the hole of the card hole hanging column 305.
[0037] The lifting and positioning mechanism 3 also includes an electric winch 306, a positioning pulley 307, and a steel cable 308. The electric winch 306 is installed on the inner side above the lifting column 303, and the electric winch 306 is wound with a steel cable 308. The positioning pulley 307 is installed on one side of the steel cable 308.
[0038] In an embodiment of the present invention, after the unlocking is completed, the electric winch 306 outputs power to drive the output end to run, causing the electric winch 306 to rotate to a certain extent, so that the steel cable 308, in conjunction with the positioning pulley 307, is extended, allowing the lower end of the chicken coop frame 402 to be submerged in a certain amount of water.
[0039] The chicken cage feeding structure 4 also includes a chicken cage frame 402, a slot base 403, a pneumatic locking bar 404, a bolt connecting plate 405, a hinge base 406, a connecting bar 407, a hydraulic rod 408, and a feeding trough 409. The chicken cage frame 402 is located at the inner end of the lifting block 401, and the slot base 403 is located on the lower outer side of the chicken cage frame 402. The pneumatic locking bar 404 is located above the outer end of the slot base 403. The bolt connecting plate 405 for mounting the hinge base 406 is bolted to the middle side of the chicken cage frame 402. The connecting bar 407 for connecting the output end of the hydraulic rod 408 is located at the outer end of the hinge base 406. The feeding trough 409 is located at the inner end of the hinge base 406.
[0040] In an embodiment of the present invention, when the lower end of the chicken cage frame 402 is submerged in water of a certain depth, the hydraulic rod 408 is used to output power to drive the output end to run, so that after the hydraulic rod 408 outputs extension, the connecting bar 407 is input to the hinge base 406 to achieve a swinging effect. After swinging, the feeding trough 409 swings to a suitable cleaning angle.
[0041] The dirt cleaning mechanism 5 also includes a screw assembly 502, a reciprocating base 503, a bolt hanger 504, a horizontal hydraulic arm 505, a sleeve block 506, a vertical hydraulic arm 507, and a base frame 508. The screw assembly 502 is provided at the inner end of the corner bracket base 501, and the output end of the screw assembly 502 is threadedly connected to the reciprocating base 503. The bottom end of the reciprocating base 503 is bolted to the bolt hanger 504, and the bottom end of the bolt hanger 504 is provided with a horizontal hydraulic arm 505. The output end of the horizontal hydraulic arm 505 is provided with a sleeve block 506, and the inner side of the sleeve block 506 is provided with a vertical hydraulic arm 507. The bottom end of the vertical hydraulic arm 507 is bolted to the base frame 508.
[0042] In an embodiment of the present invention, when cleaning is required, the output of the horizontal hydraulic arm 505 and the vertical hydraulic arm 507 is used to move the bottom frame 508 to a suitable cleaning height. When the bottom frame 508 moves to the suitable cleaning height, the screw assembly 502 on the corner bracket base 501 outputs power to drive the output end to run, thereby causing the reciprocating base 503 to reciprocate.
[0043] The dirt cleaning mechanism 5 also includes a gearbox 509, a splined coupling 5010, a rotary motor 5011, a transverse cleaning roller brush 5012, a hydraulic transverse frame 5013, an adjusting base 5014, an electric rotary disk 5015, and a groove cleaning roller brush 5016. The gearbox 509 is located on the inner side of the middle of the bottom frame 508, and the top of the gearbox 509 is equipped with a splined coupling 5010 connected to the output end of the rotary motor 5011. The output end of the gearbox 509 is equipped with the transverse cleaning roller brush 5012. The hydraulic transverse frame 5013 is located on the upper side of the bottom frame 508, and the output end of the hydraulic transverse frame 5013 is equipped with an adjusting base 5014. The side of the adjusting base 5014 is equipped with an electric rotary disk 5015, and the output end of the electric rotary disk 5015 is equipped with the groove cleaning roller brush 5016.
[0044] In an embodiment of the present invention, after the reciprocating base 503 reciprocates, the rotary motor 5011 outputs power to run, and the hydraulic transverse frame 5013 outputs power to adjust the base 5014 to a suitable position. The splined coupling 5010 outputs power to drive the gearbox 509 to run. This allows the efficient rotation of the transverse cleaning roller brush 5012 to clean the bottom of the chicken cage frame 402, and the electric rotating disc 5015 outputs power to clean the trough cleaning roller brush 5016 to clean the feeding trough 409.
[0045] The working principle of this invention is as follows: Vertical steel-concrete piles 101 of the breeding shed structure 1 are implanted into the bottom soil of the water area, and the bottom corridor frame 103 is fixed by bolt brackets 102. Inclined steel-concrete piles 104 reinforce both sides to form a stable three-dimensional breeding foundation. The main frame 105 and the top beam 106 build the shed frame, which facilitates the subsequent installation of various components. Waterproof tiles 108 are installed by tenon bases 107 to achieve rain and waterproof protection. Lighting lamps 1010 are suspended by hangers 109 to provide illumination to the breeding area, so as to facilitate work at night and in poor lighting conditions. A certain number of poultry can be placed in the chicken cage frame 402 as needed. When watering is required... This causes the inlet valve block 206 to open, allowing water to be output through the water inlet nozzle 207 at the output end of the bolt sleeve 205 into the water tank 204 for feeding. When feeding is needed, sufficient food is placed in the feeding trough 409. Over time, the chicken coop feeding structure 4 will accumulate a lot of dirt. Then, the pneumatic telescopic block 302 is activated, unlocking the slot base 403. After unlocking, the pneumatic locking bar 404 unlocks the gap in the locking column 305. After unlocking, the electric winch 306 outputs power to drive the output end, causing the electric winch 306 to operate. 6. A certain degree of rotation is performed, causing the steel cable 308 to extend in conjunction with the positioning pulley 307, allowing the lower end of the chicken coop frame 402 to be submerged in a certain depth of water. When the lower end of the chicken coop frame 402 is submerged in a certain depth of water, the hydraulic rod 408 outputs power to drive the output end, causing the hydraulic rod 408 to extend and the connecting bar 407 to be input into the hinge base 406 to achieve a swinging effect. After swinging, the feeding trough 409 swings to a suitable cleaning angle. When cleaning is required, the horizontal hydraulic arm 505 and the vertical hydraulic arm 507 are used to move the bottom frame 508 to a suitable cleaning height. When the bottom frame 508 reaches the suitable cleaning height... Then, the screw assembly 502 on the corner bracket base 501 outputs power to drive the output end to run, which in turn causes the reciprocating base 503 to reciprocate. After the reciprocating base 503 runs, the rotary motor 5011 outputs power to run, and the hydraulic transverse frame 5013 outputs power to run, so that the adjusting base 5014 is adjusted to a suitable position. Then, the spline coupling 5010 outputs power to drive the gearbox 509 to run. This makes the efficient rotation of the transverse cleaning roller brush 5012 achieve a cleaning effect on the bottom of the chicken cage frame 402, and the electric rotating disk 5015 outputs power to run, so that the trough cleaning roller brush 5016 achieves a cleaning effect on the feeding trough 409.
[0046] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0047] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An agricultural three-dimensional poultry breeding shed, comprising a breeding shed structure (1), a water guiding assembly (2), a lifting and positioning mechanism (3), a chicken cage feeding structure (4), and a dirt cleaning mechanism (5), characterized in that: The bottom corridor frame (103) on the breeding shed structure (1) is bolted to the upper side of the water guide assembly (2) and the bottom sleeve block (301) on the lifting and positioning mechanism (3) is bolted to the upper side of the enclosed frame seat (202) on the water guide assembly (2). The lifting block (401) on the chicken cage feeding structure (4) is fixedly connected to the lower side of the binding base (309) on the lifting and positioning mechanism (3). The corner bracket base (501) on the dirt cleaning mechanism (5) is bolted to the inner side of the bottom corridor frame (103).
2. The agricultural three-dimensional poultry breeding shed according to claim 1, characterized in that: The aquaculture shed structure (1) also includes vertical steel-concrete piles (101), bolt brackets (102), inclined steel-concrete piles (104), shed main frame (105) and top beam (106). The vertical steel-concrete piles (101) are set inside the bottom soil of the water area. The top of the vertical steel-concrete piles (101) is bolted to the bottom corridor frame (103) through bolt brackets (102). Inclined steel-concrete piles (104) are set at both ends of the bottom corridor frame (103). The shed main frame (105) is set above the side of the bottom corridor frame (103), and the top of the shed main frame (105) is set with a bolted top beam (106).
3. The agricultural three-dimensional poultry breeding shed according to claim 2, characterized in that: The breeding shed structure (1) also includes a tenon base (107), waterproof tiles (108), a hanger (109) and a lighting lamp (1010). The top of the top beam (106) is provided with a tenon base (107), and the side of the tenon base (107) is provided with a snap-fit waterproof tile (108). The bottom of the top beam (106) is provided with a hanger (109), and the bottom of the hanger (109) is provided with a lighting lamp (1010).
4. The agricultural three-dimensional poultry breeding shed according to claim 1, characterized in that: The assembled water guiding assembly (2) also includes a lifting frame (203), a water tank (204), a bolt sleeve (205), a water inlet valve block (206), and a water nozzle (207). The lifting frame (203) is provided above the middle part of the enclosure frame (202), and the water tank (204) is provided at the top of the lifting frame (203). The bolt sleeve (205) is provided on the outer side of the middle part of the enclosure frame (202), and the output end of the water inlet valve block (206) is provided at the bottom end of the bolt sleeve (205). The water nozzle (207) is provided at the top end of the bolt sleeve (205).
5. The agricultural three-dimensional poultry breeding shed according to claim 1, characterized in that: The lifting and positioning mechanism (3) also includes a pneumatic telescopic block (302), a lifting column (303), a side frame (304), and a locking column (305). The output end of the bottom sleeve block (301) is provided with a pneumatic telescopic block (302). The top of the bottom sleeve block (301) is provided with a bolt-assembled lifting column (303), and the upper outer side of the lifting column (303) is bolted to the side frame (304). The lower inner end of the side frame (304) is provided with a locking column (305).
6. The agricultural three-dimensional poultry breeding shed according to claim 5, characterized in that: The lifting and positioning mechanism (3) also includes an electric winch (306), a positioning pulley (307) and a steel cable (308). An electric winch (306) is provided on the inner side above the lifting column (303), and the electric winch (306) is wound with a steel cable (308). A positioning pulley (307) is mounted on one side of the steel cable (308).
7. The agricultural three-dimensional poultry breeding shed according to claim 1, characterized in that: The chicken cage feeding structure (4) also includes a chicken cage frame (402), a slot base (403), a pneumatic locking strip (404), a bolt connecting plate (405), a hinge base (406), a connecting bar (407), a hydraulic rod (408), and a feeding trough (409). The inner end of the lifting block (401) is provided with the chicken cage frame (402), and the lower outer side of the chicken cage frame (402) is provided with the slot base (403), and the upper part of the outer end of the slot base (403) is provided with the pneumatic locking strip (404). The middle side of the chicken cage frame (402) is bolted to the bolt connecting plate (405) for installing the hinge base (406). The outer end of the hinge base (406) is provided with a connecting bar (407) for connecting the output end of the hydraulic rod (408), and the inner end of the hinge base (406) is provided with the feeding trough (409).
8. The agricultural three-dimensional poultry breeding shed according to claim 1, characterized in that: The dirt cleaning mechanism (5) also includes a screw assembly (502), a reciprocating base (503), a bolt hanger (504), a horizontal hydraulic arm (505), a sleeve block (506), a vertical hydraulic arm (507), and a bottom frame (508). The screw assembly (502) is provided at the inner end of the corner base (501), and the output end of the screw assembly (502) is threadedly connected to the reciprocating base (503). The bottom end of the reciprocating base (503) is bolted to the bolt hanger (504), and the bottom end of the bolt hanger (504) is provided with a horizontal hydraulic arm (505). The output end of the horizontal hydraulic arm (505) is provided with a sleeve block (506). The inner side of the sleeve block (506) is provided with a vertical hydraulic arm (507), and the bottom end of the vertical hydraulic arm (507) is bolted to the bottom frame (508).
9. The agricultural three-dimensional poultry breeding shed according to claim 8, characterized in that: The dirt cleaning mechanism (5) also includes a gearbox (509), a splined coupling (5010), a rotary motor (5011), a transverse cleaning roller brush (5012), a hydraulic transverse frame (5013), an adjusting base (5014), an electric rotary disk (5015), and a slot cleaning roller brush (5016). The gearbox (509) is located on the inner side of the middle of the bottom frame (508), and the top of the gearbox (509) is provided with a connection to the output end of the rotary motor (5011). The splined coupling (5010) is provided with a transverse cleaning roller brush (5012) at the output end of the gearbox (509). A hydraulic transverse frame (5013) is provided above the side of the bottom frame (508), and an adjustment base (5014) is provided at the output end of the hydraulic transverse frame (5013). An electric rotating disk (5015) is provided on one side of the adjustment base (5014), and a groove cleaning roller brush (5016) is provided at the output end of the electric rotating disk (5015).