CN114081014A - Bullfrog of big-arch shelter formula is bred and breeds equipment - Google Patents

Bullfrog of big-arch shelter formula is bred and breeds equipment Download PDF

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Publication number
CN114081014A
CN114081014A CN202111426392.4A CN202111426392A CN114081014A CN 114081014 A CN114081014 A CN 114081014A CN 202111426392 A CN202111426392 A CN 202111426392A CN 114081014 A CN114081014 A CN 114081014A
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frame
greenhouse
fixedly connected
bullfrog
big
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CN114081014B (en
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肖晓军
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Hunan Kaihui Agricultural Technology Development Co ltd
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Hunan Kaihui Agricultural Technology Development Co ltd
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K67/00Rearing or breeding animals, not otherwise provided for; New or modified breeds of animals
    • A01K67/02Breeding vertebrates
    • 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
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/25Greenhouse technology, e.g. cooling systems therefor

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Zoology (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Greenhouses (AREA)

Abstract

The utility model relates to the field of bullfrog cultivation, in particular to a greenhouse type bullfrog cultivation and breeding device. The technical problem to be solved by the technical scheme is as follows: traditional bullfrog is bred and breeds and be unfavorable for centralized big-arch shelter to be bred. It includes big-arch shelter structure and ditch body structure, the bottom fixedly connected with ditch body structure of big-arch shelter structure, the big-arch shelter structure includes first canopy body and the second canopy body, the inside one side at the big-arch shelter structure is established to the first canopy body, the lateral part fixedly connected with second canopy body of the first canopy body, the first canopy body includes the ceiling frame, the protection frame, the support frame, ventilative layer, the piece that connects, intercommunication slot board and adaptation frame piece, the lateral part fixedly connected with adaptation frame piece of ceiling frame, the lower part fixedly connected with protection frame of ceiling frame. The beneficial effects of this technical scheme do: through the connection combination of structure, conveniently carry out the work of setting up of big-arch shelter, do benefit to centralized big-arch shelter and breed, conveniently carry out the inside guard work of big-arch shelter, help holistic breed production work.

Description

Bullfrog of big-arch shelter formula is bred and breeds equipment
Technical Field
The utility model relates to the field of bullfrog cultivation, in particular to a greenhouse type bullfrog cultivation and breeding device.
Background
Bullfrog is of the genus Arthropoda of the order Anemoles, the family Ranidae, the genus Rana. The bullfrog is bred to be a new special economy aquaculture at home and abroad at present, through concentrated breed, can breed the work, conveniently carry out the growth of bullfrog, help the establishment of breed trade, but current bullfrog is bred and breeds equipment and exists and be unfavorable for fountain environment and provide work, inconvenient growth that carries out the bullfrog, exists the function of building that is unfavorable for big-arch shelter formula integration simultaneously, needs to improve.
Through patent search, there are the following known prior art solutions:
patent 1: application No.: CN202021494881.4, the utility model discloses a bullfrog cultivating device, which comprises a support frame, a first bullfrog cultivating box, a second bullfrog cultivating box, a third bullfrog cultivating box, a first water inlet pipe, a first water outlet pipe, a first settling tank, a second water inlet pipe, a third water inlet pipe, a first separation net, a second water outlet pipe, a second settling tank, a fourth water inlet pipe, a fifth water inlet pipe, a second separation net and a third water outlet pipe. The utility model has the following advantages: the water drained from the bullfrog breeding box is utilized for multiple times, and then the water is supplemented from a pure water source, so that the water can be obviously saved; by arranging the settling tank, the cleanness degree of the secondary water can be ensured as much as possible; through setting up and separating the net, can breed the residue in the incasement exhaust water with the bullfrog and keep apart in the gunbarrel, but this patent exists and is unfavorable for the fountain environment to provide work, the inconvenient growth that carries out the bullfrog.
Patent 2: application No.: the utility model discloses a water circulation bullfrog breeding system which comprises an underground water source, a plurality of bullfrog breeding ponds, a settling channel, a drainage channel, a water pump, a water inlet pipe, a first drainage pipe, a separation net and a second drainage pipe, wherein the water pump is placed in the underground water source, one end of the water inlet pipe is connected with the water pump, the other end of the water inlet pipe is arranged at one end of the bullfrog breeding pond, the other end of the bullfrog breeding pond is communicated with the settling channel through the first drainage pipe, the settling channel is communicated with the drainage channel through the second drainage pipe, and the separation net is arranged at a water inlet of the second drainage pipe. The utility model has the following advantages: the bullfrog is cultivated by utilizing the underground water source, so that the cost is low, the water quality is good, and the health of the bullfrog is facilitated; by arranging the sedimentation channel, residue, excrement and the like in the bullfrog culture pond can be collected and used as fertilizer for planting crops; through the displacement of control first drain pipe, can adjust the hydrologic cycle efficiency in the pond is bred to the bullfrog, realizes the water conservation, but this patent exists the function of building that is unfavorable for big-arch shelter formula integration, influences the use setting.
The search finds that the technical scheme cannot influence the novelty of the utility model; and the mutual combination of the above patent documents does not destroy the inventive step of the present invention.
Disclosure of Invention
The technical problem to be solved by the technical scheme is as follows: traditional bullfrog is bred and breeds and be unfavorable for centralized big-arch shelter to be bred.
In order to realize the purpose, the utility model adopts the technical scheme that: a greenhouse type bullfrog breeding device comprises a greenhouse structure and a ditch structure, wherein the bottom of the greenhouse structure is fixedly connected with the ditch structure;
the greenhouse structure comprises a first greenhouse body and a second greenhouse body, wherein the first greenhouse body is arranged on one side in the greenhouse structure, and the second greenhouse body is fixedly connected to the side part of the first greenhouse body;
the first shed body comprises a roof rack, a protective frame, a support frame, a breathable layer, an inserting block, a communicating groove plate and an adapting frame block, the lateral part of the roof rack is fixedly connected with the adapting frame block, the lower part of the roof rack is fixedly connected with the protective frame, the front part of the protective frame is provided with the support frame, the bottom position of the support frame is fixedly connected with the inserting block, the front part of the support frame is provided with the breathable layer, the lower part of the roof rack is fixedly connected with the breathable layer, and the bottom of the adapting frame block is fixedly connected with the communicating groove plate.
The beneficial effects of this technical scheme do: through the connection combination of roof frame, protection frame, support frame, ventilative layer, grafting piece, intercommunication fluted plate and adaptation frame piece, conveniently carry out the work of setting up of big-arch shelter, do benefit to centralized big-arch shelter and breed, conveniently carry out the inside guard work of big-arch shelter, help holistic breed production work.
The technical problem to be solved by the improvement of the technical scheme is as follows: traditional bullfrog is bred and breeds and is unfavorable for the construction of humidifying environment.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the ditch body structure includes conduction connecting pipe, first branch pipe, second branch pipe, spray component, sloping plate frame and guiding gutter, the lateral part and the first branch pipe of conduction connecting pipe are linked together, the lower part and the second branch pipe of first branch pipe are linked together, the bottom and the spray component of second branch pipe are linked together, spray component's lateral part and sloping plate frame are spacing connection mutually, the bottom position fixedly connected with guiding gutter of sloping plate frame.
The beneficial effect after this technical scheme improves does: through the built-up connection of conduction connecting pipe, first branch pipe, second branch pipe, spray component, sloping plate frame and guiding gutter, realize the construction of humidifying environment, help the bullfrog to breed and breed the work, provide necessary growing environment, help the formation of gutter, conveniently carry out the breed work of centralization.
The technical problem to be solved by the improvement of the technical scheme is as follows: the traditional bullfrog breeding is not beneficial to the communicated water body transmission and drainage task.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the spraying component comprises a valve port frame, a matching pipe, a first spraying disc and a second spraying disc, the side end of the valve port frame is communicated with the matching pipe, and the side portion of the matching pipe is communicated with the first spraying disc and the second spraying disc.
The beneficial effect after this technical scheme improves does: through the built-up connection of valve mouth frame, cooperation pipe, first spray dish and second spray dish, conveniently carry out the even work of leading of water, through the intercommunication of valve mouth frame, cooperation pipe, with water transmission to first spray dish, second spray dish position department, spray through first spray dish, second and coil the work that realizes leading row.
The technical problem to be solved by the improvement of the technical scheme is as follows: traditional bullfrog breeds and is unfavorable for centralized water guide work that sprays.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: and the first spray tray and the second spray tray are symmetrically provided with spray openings.
The beneficial effect after this technical scheme improves does: the spraying ports are symmetrically formed in the first spraying disc and the second spraying disc, centralized guide and exhaust work is achieved, water body communication is facilitated, construction of a humid environment is facilitated, integral combined production work is facilitated, growth of bullfrogs is facilitated, and the first spraying disc and the second spraying disc help to provide necessary link support.
The technical problem to be solved by the improvement of the technical scheme is as follows: traditional bullfrog is bred and breeds and is unfavorable for the fast assembly of big-arch shelter and builds work.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the first shed body and the second shed body are arranged in an inserted mode through adaptive frame blocks.
The beneficial effect after this technical scheme improves does: through the connection setting of the first canopy body, the second canopy body, adaptation frame piece, realize quick built-up connection, conveniently carry out the construction work of big-arch shelter, help improving holistic production efficiency, reduce the cost of construction, conveniently save the expense that the big-arch shelter was built, improve holistic work efficiency.
The technical problem to be solved by the improvement of the technical scheme is as follows: traditional bullfrog breeds and is unfavorable for the quick support connection work of big-arch shelter.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the plug-in block is fixedly connected with the external soil body.
The beneficial effect after this technical scheme improves does: through the grafting piece and external soil body looks fixed connection, realize quick assembly connection, conveniently carry out quick location installation work, and conveniently carry out inseparable connection, provide supplementary location connection work, conveniently carry out the reinforcement in later stage and connect, improve holistic stability ability.
The technical problem to be solved by the improvement of the technical scheme is as follows: traditional bullfrog breeds and is unfavorable for the ventilative work of big-arch shelter.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the breathable layer is provided with a groove body which is communicated with the outside through the groove body.
The beneficial effect after this technical scheme improves does: through having seted up the cell body on the ventilative layer, be linked together through cell body and external, conveniently carry out the ventilative work of first canopy internal portion, and can set up stratum reticulare structure on the cell body, prevent that the bullfrog from fleeing, cause economic loss, conveniently carry out the breed production work of bullfrog.
The technical problem to be solved by the improvement of the technical scheme is as follows: traditional bullfrog breeds and is unfavorable for the integral water supply work of big-arch shelter.
In order to realize the purposes, the utility model creates the technical scheme adopted after improvement: the conduction connecting pipe, the first branch pipe and the second branch pipe are communicated, and the conduction connecting pipe is communicated with an external water source.
The beneficial effect after this technical scheme improves does: be linked together the setting through conduction connecting pipe, first branch pipe, second branch pipe, and the conduction connecting pipe is linked together with external water source, realizes the integral water supply work of big-arch shelter, conveniently carries out the work of putting up of the whole of ditch body structure, realizes the production and processing work of industrialization, conveniently carries out the equipment of putting up fast.
Drawings
Fig. 1 is a schematic structural diagram of the product.
Fig. 2 is a side view of the product.
Fig. 3 is a schematic structural view of a greenhouse structure.
Fig. 4 is a schematic structural diagram of the first canopy.
FIG. 5 is a schematic view of the structure of the trench body.
Fig. 6 is a schematic structural view of the shower part.
The text labels in the figure are as follows: 1. a greenhouse structure; 2. a trench body structure; 3. a first housing; 4. a second housing; 5. a ceiling frame; 6. a protective frame; 7. a support frame; 8. a breathable layer; 9. an insertion block; 10. communicating the groove plates; 11. adapting the frame block; 12. a conductive connecting pipe; 13. a first branch pipe; 14. a second branch pipe; 15. a spray component; 16. a ramp frame; 17. a water guiding ditch; 18. a valve orifice housing; 19. a mating tube; 20. a first spray pan; 21. and a second spray disk.
Detailed Description
The following detailed description of the present invention is given for the purpose of better understanding technical solutions of the present invention by those skilled in the art, and the present description is only exemplary and explanatory and should not be construed as limiting the scope of the present invention in any way.
Example 1:
as shown in fig. 1-4, a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a trench body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the trench body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first greenhouse body 3 comprises a roof frame 5, a protective frame 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting frame block 11, the side part of the roof frame 5 is fixedly connected with the adapting frame block 11, the lower part of the roof frame 5 is fixedly connected with the protective frame 6, the front part of the protective frame 6 is provided with the support frame 7, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the front part of the support frame 7 is provided with the breathable layer 8, the lower part of the roof frame 5 is fixedly connected with the breathable layer 8, the bottom of the adapting frame block 11 is fixedly connected with the communicating groove plate 10, the greenhouse is conveniently erected and protected by the roof frame 5, the protective frame 6, the support frame 7, the breathable layer 8, the inserting block 9, the communicating groove plate 10 and the adapting frame block 11, the operation of erecting the greenhouse is facilitated, the centralized greenhouse cultivation is facilitated, and the protection operation inside the greenhouse is conveniently carried out, the cultivation device is beneficial to the whole cultivation production work, and the whole combination of the greenhouse is realized through the matching connection of the ditch body structure 2, so that the humidification cultivation work is conveniently carried out.
Example 2:
as a further optimization of the above embodiment, as shown in fig. 1-5: a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a ditch body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the ditch body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first shed body 3 comprises a roof rack 5, a protection rack 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting rack block 11, the lateral part of the roof rack 5 is fixedly connected with the adapting rack block 11, the lower part of the roof rack 5 is fixedly connected with the protection rack 6, the support frame 7 is arranged at the front part of the protection rack 6, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the breathable layer 8 is arranged at the front part of the support frame 7, the lower part of the roof rack 5 is fixedly connected with the breathable layer 8, and the bottom of the adapting rack block 11 is fixedly connected with the communicating groove plate 10. The ditch body structure 2 includes conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray set 15, swash plate frame 16 and guiding gutter 17, the lateral part of conduction connecting pipe 12 is linked together with first branch pipe 13, the lower part and the second branch pipe 14 of first branch pipe 13 are linked together, the bottom and the spray set 15 of second branch pipe 14 are linked together, spray set 15's lateral part and the limited position of swash plate frame 16 are connected, the bottom position fixedly connected with guiding gutter 17 of swash plate frame 16, through the built-up connection of conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray set 15, swash plate frame 16 and guiding gutter 17, realize the construction of humidifying environment, help the bullfrog to breed and breed the work, provide necessary growing environment, help the formation of ditch, conveniently carry out the breed work of centralization, through the structure combination of ditch body structure 2, conveniently carry out the work of putting into of the water, the purpose of humidifying is conveniently carried out.
Example 3:
as a further optimization of the above embodiment, as shown in fig. 1-6: a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a ditch body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the ditch body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first shed body 3 comprises a roof rack 5, a protection rack 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting rack block 11, the lateral part of the roof rack 5 is fixedly connected with the adapting rack block 11, the lower part of the roof rack 5 is fixedly connected with the protection rack 6, the support frame 7 is arranged at the front part of the protection rack 6, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the breathable layer 8 is arranged at the front part of the support frame 7, the lower part of the roof rack 5 is fixedly connected with the breathable layer 8, and the bottom of the adapting rack block 11 is fixedly connected with the communicating groove plate 10. Ditch body structure 2 includes conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray component 15, swash plate frame 16 and guiding gutter 17, the lateral part of conduction connecting pipe 12 is linked together with first branch pipe 13, the lower part and the second branch pipe 14 of first branch pipe 13 are linked together, the bottom and the spray component 15 of second branch pipe 14 are linked together, spray component 15's lateral part and the limited connection of swash plate frame 16 mutually, the bottom position fixedly connected with guiding gutter 17 of swash plate frame 16. The spray component 15 comprises a valve port frame 18, a matching pipe 19, a first spray disc 20 and a second spray disc 21, the side end of the valve port frame 18 is communicated with the matching pipe 19, the side portion of the matching pipe 19 is communicated with the first spray disc 20 and the second spray disc 21, the water body is conveniently conveyed to the positions of the first spray disc 20 and the second spray disc 21 through the combined connection of the valve port frame 18, the matching pipe 19, the first spray disc 20 and the second spray disc 21, the water body is conveniently conveyed to the positions of the first spray disc 20 and the second spray disc 21 through the communication of the valve port frame 18 and the matching pipe 19, and the guide and discharge work is realized through the first spray disc 20 and the second spray disc 21.
Example 4:
as a further optimization of the above embodiment, as shown in fig. 1-6: a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a ditch body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the ditch body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first shed body 3 comprises a roof rack 5, a protection rack 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting rack block 11, the lateral part of the roof rack 5 is fixedly connected with the adapting rack block 11, the lower part of the roof rack 5 is fixedly connected with the protection rack 6, the support frame 7 is arranged at the front part of the protection rack 6, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the breathable layer 8 is arranged at the front part of the support frame 7, the lower part of the roof rack 5 is fixedly connected with the breathable layer 8, and the bottom of the adapting rack block 11 is fixedly connected with the communicating groove plate 10. Ditch body structure 2 includes conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray component 15, swash plate frame 16 and guiding gutter 17, the lateral part of conduction connecting pipe 12 is linked together with first branch pipe 13, the lower part and the second branch pipe 14 of first branch pipe 13 are linked together, the bottom and the spray component 15 of second branch pipe 14 are linked together, spray component 15's lateral part and the limited connection of swash plate frame 16 mutually, the bottom position fixedly connected with guiding gutter 17 of swash plate frame 16. The spraying component 15 comprises a valve port frame 18, a matching pipe 19, a first spraying disc 20 and a second spraying disc 21, the side end of the valve port frame 18 is communicated with the matching pipe 19, and the side part of the matching pipe 19 is communicated with the first spraying disc 20 and the second spraying disc 21. The symmetry has been seted up on first spray dish 20, the second spray dish 21 and has been sprayed the mouth, has seted up through symmetry on first spray dish 20, the second spray dish 21 and has sprayed the mouth, realizes concentrated leading row work, conveniently carries out the intercommunication of water, helps the construction of humid environment, conveniently carries out holistic combination production work, is favorable to the growth of bullfrog, and first spray dish 20, the help of second spray dish 21 provide necessary link support.
Example 5:
as a further optimization of the above embodiment, as shown in fig. 1-6: a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a ditch body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the ditch body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first shed body 3 comprises a roof rack 5, a protection rack 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting rack block 11, the lateral part of the roof rack 5 is fixedly connected with the adapting rack block 11, the lower part of the roof rack 5 is fixedly connected with the protection rack 6, the support frame 7 is arranged at the front part of the protection rack 6, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the breathable layer 8 is arranged at the front part of the support frame 7, the lower part of the roof rack 5 is fixedly connected with the breathable layer 8, and the bottom of the adapting rack block 11 is fixedly connected with the communicating groove plate 10. Ditch body structure 2 includes conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray component 15, swash plate frame 16 and guiding gutter 17, the lateral part of conduction connecting pipe 12 is linked together with first branch pipe 13, the lower part and the second branch pipe 14 of first branch pipe 13 are linked together, the bottom and the spray component 15 of second branch pipe 14 are linked together, spray component 15's lateral part and the limited connection of swash plate frame 16 mutually, the bottom position fixedly connected with guiding gutter 17 of swash plate frame 16. The spraying component 15 comprises a valve port frame 18, a matching pipe 19, a first spraying disc 20 and a second spraying disc 21, the side end of the valve port frame 18 is communicated with the matching pipe 19, and the side part of the matching pipe 19 is communicated with the first spraying disc 20 and the second spraying disc 21. The first spray tray 20 and the second spray tray 21 are symmetrically provided with spray openings. First canopy body 3, the second canopy body 4 sets up through the mutual grafting of adaptation frame piece 11, through the connection setting of first canopy body 3, the second canopy body 4, adaptation frame piece 11, conveniently carries out the equipment connection of the first canopy body 3, the second canopy body 4, realizes efficient cooperation production work, realizes quick big-arch shelter structure 1's the task of buildding.
Example 6:
as a further optimization of the above embodiment, as shown in fig. 1-6: a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a ditch body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the ditch body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first shed body 3 comprises a roof rack 5, a protection rack 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting rack block 11, the lateral part of the roof rack 5 is fixedly connected with the adapting rack block 11, the lower part of the roof rack 5 is fixedly connected with the protection rack 6, the support frame 7 is arranged at the front part of the protection rack 6, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the breathable layer 8 is arranged at the front part of the support frame 7, the lower part of the roof rack 5 is fixedly connected with the breathable layer 8, and the bottom of the adapting rack block 11 is fixedly connected with the communicating groove plate 10. Ditch body structure 2 includes conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray component 15, swash plate frame 16 and guiding gutter 17, the lateral part of conduction connecting pipe 12 is linked together with first branch pipe 13, the lower part and the second branch pipe 14 of first branch pipe 13 are linked together, the bottom and the spray component 15 of second branch pipe 14 are linked together, spray component 15's lateral part and the limited connection of swash plate frame 16 mutually, the bottom position fixedly connected with guiding gutter 17 of swash plate frame 16. The spraying component 15 comprises a valve port frame 18, a matching pipe 19, a first spraying disc 20 and a second spraying disc 21, the side end of the valve port frame 18 is communicated with the matching pipe 19, and the side part of the matching pipe 19 is communicated with the first spraying disc 20 and the second spraying disc 21. The first spray tray 20 and the second spray tray 21 are symmetrically provided with spray openings. The first shed body 3 and the second shed body 4 are arranged in an inserted manner through the adaptive frame blocks 11. The plug block 9 is connected with external soil body looks fixed connection through plug block 9 and external soil body looks fixed connection, realizes quick assembly joint, conveniently carries out quick location installation work, and conveniently carries out inseparable connection, provides supplementary location connection work, conveniently carries out the reinforcement in later stage and connects, improves holistic stability ability.
Example 7:
as a further optimization of the above embodiment, as shown in fig. 1-6: a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a ditch body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the ditch body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first shed body 3 comprises a roof rack 5, a protection rack 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting rack block 11, the lateral part of the roof rack 5 is fixedly connected with the adapting rack block 11, the lower part of the roof rack 5 is fixedly connected with the protection rack 6, the support frame 7 is arranged at the front part of the protection rack 6, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the breathable layer 8 is arranged at the front part of the support frame 7, the lower part of the roof rack 5 is fixedly connected with the breathable layer 8, and the bottom of the adapting rack block 11 is fixedly connected with the communicating groove plate 10. Ditch body structure 2 includes conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray component 15, swash plate frame 16 and guiding gutter 17, the lateral part of conduction connecting pipe 12 is linked together with first branch pipe 13, the lower part and the second branch pipe 14 of first branch pipe 13 are linked together, the bottom and the spray component 15 of second branch pipe 14 are linked together, spray component 15's lateral part and the limited connection of swash plate frame 16 mutually, the bottom position fixedly connected with guiding gutter 17 of swash plate frame 16. The spraying component 15 comprises a valve port frame 18, a matching pipe 19, a first spraying disc 20 and a second spraying disc 21, the side end of the valve port frame 18 is communicated with the matching pipe 19, and the side part of the matching pipe 19 is communicated with the first spraying disc 20 and the second spraying disc 21. The first spray tray 20 and the second spray tray 21 are symmetrically provided with spray openings. The first shed body 3 and the second shed body 4 are arranged in an inserted manner through the adaptive frame blocks 11. The plug-in block 9 is fixedly connected with the external soil body. The cell body has been seted up on ventilative layer 8, is linked together through cell body and external world, has seted up the cell body on through ventilative layer 8, is linked together through cell body and external world, conveniently carries out the ventilative work of first canopy 3 inside, and can set up the stratum reticulare structure on the cell body, prevents that the bullfrog from escaping, causes economic loss, conveniently carries out the breed production work of bullfrog.
Example 8:
as a further optimization of the above embodiment, as shown in fig. 1-6: a greenhouse type bullfrog breeding device comprises a greenhouse structure 1 and a ditch body structure 2, wherein the bottom of the greenhouse structure 1 is fixedly connected with the ditch body structure 2;
the greenhouse structure 1 comprises a first greenhouse body 3 and a second greenhouse body 4, the first greenhouse body 3 is arranged on one side inside the greenhouse structure 1, and the second greenhouse body 4 is fixedly connected to the side part of the first greenhouse body 3;
the first shed body 3 comprises a roof rack 5, a protection rack 6, a support frame 7, a breathable layer 8, an inserting block 9, a communicating groove plate 10 and an adapting rack block 11, the lateral part of the roof rack 5 is fixedly connected with the adapting rack block 11, the lower part of the roof rack 5 is fixedly connected with the protection rack 6, the support frame 7 is arranged at the front part of the protection rack 6, the bottom position of the support frame 7 is fixedly connected with the inserting block 9, the breathable layer 8 is arranged at the front part of the support frame 7, the lower part of the roof rack 5 is fixedly connected with the breathable layer 8, and the bottom of the adapting rack block 11 is fixedly connected with the communicating groove plate 10. Ditch body structure 2 includes conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, spray component 15, swash plate frame 16 and guiding gutter 17, the lateral part of conduction connecting pipe 12 is linked together with first branch pipe 13, the lower part and the second branch pipe 14 of first branch pipe 13 are linked together, the bottom and the spray component 15 of second branch pipe 14 are linked together, spray component 15's lateral part and the limited connection of swash plate frame 16 mutually, the bottom position fixedly connected with guiding gutter 17 of swash plate frame 16. The spraying component 15 comprises a valve port frame 18, a matching pipe 19, a first spraying disc 20 and a second spraying disc 21, the side end of the valve port frame 18 is communicated with the matching pipe 19, and the side part of the matching pipe 19 is communicated with the first spraying disc 20 and the second spraying disc 21. The first spray tray 20 and the second spray tray 21 are symmetrically provided with spray openings. The first shed body 3 and the second shed body 4 are arranged in an inserted manner through the adaptive frame blocks 11. The plug-in block 9 is fixedly connected with the external soil body. The breathable layer 8 is provided with a groove body which is communicated with the outside through the groove body. Conduction connecting pipe 12, first branch pipe 13, second branch pipe 14 are linked together the setting, and conduction connecting pipe 12 is linked together with external water source, are linked together the setting through conduction connecting pipe 12, first branch pipe 13, second branch pipe 14, and conduction connecting pipe 12 is linked together with external water source, realizes the integral water supply work of big-arch shelter, conveniently carries out the work of buildding of ditch body structure 2, realizes the production and processing work of industrialization, conveniently carries out quick the equipment of buildding.
The working principle of the technical scheme is as follows: the user carries out the built-up connection with big-arch shelter structure 1, ditch body structure 2, realize holistic construction connection, big-arch shelter structure 1 is by first canopy body 3, second canopy body 4 built-up connection, pair through adaptation frame piece 11 between the first canopy body 3, the second canopy body 4, realize quick combination, first canopy body 3 passes through support frame 7, it carries out the fixed of bottom to insert piece 9, intercommunication fluted plate 10 can carry out the connection combination with ditch body structure 2, the setting of ventilative layer 8, conveniently carry out ventilative work, and protection frame 6 helps carrying out the separation and connects, the ceiling frame 5 at top is used for guard work, conduction connecting pipe 12 in the ditch body structure 2 is linked together with the external world, realize the purpose of supplying water, the water passes through conduction connecting pipe 12, first branch pipe 13, second branch pipe 14 and transmits to spray component 15 position department, reach the inner of valve mouth frame 18, transmit to first spray tray 20 through cooperation pipe 19, On the second spray dish 21, realize the work that sprays, the water passes through the sloping grillage 16 can reach on the guiding gutter 17, realizes concentrated collection, forms rivers, conveniently carries out the breed growth of bullfrog.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. The principles and embodiments of the present invention are explained herein using specific examples, which are presented only to assist in understanding the method and its core concepts of the present invention. The foregoing is only a preferred embodiment of the present invention, and it should be noted that there are objectively infinite specific structures due to the limited character expressions, and it will be apparent to those skilled in the art that a plurality of modifications, decorations or changes may be made without departing from the principle of the present invention, and the above technical features may be combined in a suitable manner; such modifications, variations, combinations, or adaptations of the utility model using its spirit and scope, as defined by the claims, may be directed to other uses and embodiments.

Claims (8)

1. The utility model provides a bullfrog of big-arch shelter formula is bred and breeds equipment which characterized in that: the greenhouse comprises a greenhouse structure (1) and a ditch structure (2), wherein the bottom of the greenhouse structure (1) is fixedly connected with the ditch structure (2);
the greenhouse structure (1) comprises a first greenhouse body (3) and a second greenhouse body (4), the first greenhouse body (3) is arranged on one side of the interior of the greenhouse structure (1), and the second greenhouse body (4) is fixedly connected to the side portion of the first greenhouse body (3);
the first shed body (3) comprises a roof frame (5), a protection frame (6), a support frame (7), a breathable layer (8), inserting blocks (9), a communicating groove plate (10) and adapting frame blocks (11), wherein the lateral part of the roof frame (5) is fixedly connected with the adapting frame blocks (11), the lower part of the roof frame (5) is fixedly connected with the protection frame (6), the front part of the protection frame (6) is provided with the support frame (7), the bottom position of the support frame (7) is fixedly connected with the inserting blocks (9), the front part of the support frame (7) is provided with the breathable layer (8), the lower part of the roof frame (5) is fixedly connected with the breathable layer (8), and the bottom of the adapting frame blocks (11) is fixedly connected with the communicating groove plate (10).
2. The greenhouse-type bullfrog breeding device as claimed in claim 1, wherein: ditch body structure (2) are including conduction connecting pipe (12), first branch pipe (13), second branch pipe (14), spray component (15), swash plate frame (16) and guiding gutter (17), the lateral part and first branch pipe (13) of conduction connecting pipe (12) are linked together, the lower part and second branch pipe (14) of first branch pipe (13) are linked together, the bottom and the spray component (15) of second branch pipe (14) are linked together, the lateral part and the swash plate frame (16) of spray component (15) are spacing connection mutually, the bottom position fixedly connected with guiding gutter (17) of swash plate frame (16).
3. The greenhouse-type bullfrog breeding device as claimed in claim 2, wherein: the spraying component (15) comprises a valve port frame (18), a matching pipe (19), a first spraying disc (20) and a second spraying disc (21), the side end of the valve port frame (18) is communicated with the matching pipe (19), and the side part of the matching pipe (19) is communicated with the first spraying disc (20) and the second spraying disc (21).
4. The big-shed bullfrog breeding device according to claim 3, characterized in that: the first spray disc (20) and the second spray disc (21) are symmetrically provided with spray openings.
5. The big-shed bullfrog breeding device according to claim 4, characterized in that: the first shed body (3) and the second shed body (4) are arranged in an inserted mode through the adaptive frame blocks (11).
6. The greenhouse-type bullfrog breeding device as claimed in claim 5, wherein: the plug-in block (9) is fixedly connected with the external soil body.
7. The greenhouse-type bullfrog breeding device as claimed in claim 6, wherein: the breathable layer (8) is provided with a groove body which is communicated with the outside through the groove body.
8. The greenhouse-type bullfrog breeding device as claimed in claim 7, wherein: the conduction connecting pipe (12), the first branch pipe (13) and the second branch pipe (14) are communicated, and the conduction connecting pipe (12) is communicated with an external water source.
CN202111426392.4A 2021-11-27 2021-11-27 Bullfrog breeding equipment is bred to big-arch shelter formula Active CN114081014B (en)

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CN111908681A (en) * 2020-08-07 2020-11-10 湖南富高农业科技开发有限公司 Bullfrog culture pond with hydrologic cycle

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