CN218889048U - Wisdom agricultural control by temperature change big-arch shelter - Google Patents

Wisdom agricultural control by temperature change big-arch shelter Download PDF

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Publication number
CN218889048U
CN218889048U CN202223391877.7U CN202223391877U CN218889048U CN 218889048 U CN218889048 U CN 218889048U CN 202223391877 U CN202223391877 U CN 202223391877U CN 218889048 U CN218889048 U CN 218889048U
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China
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heat preservation
greenhouse
arch shelter
big
temperature
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CN202223391877.7U
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Chinese (zh)
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刘海
赵庆
孙超
郑华
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    • 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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Abstract

The utility model provides an intelligent agricultural temperature control greenhouse which comprises a greenhouse body, wherein the top end of the greenhouse body is connected with a top plate, the bottom surface of the top plate is connected with a connecting column, the lower end of the movable column is provided with a skylight plate, the top surface of the greenhouse body is provided with a greenhouse heat preservation component, and the side surface of the greenhouse body is provided with a limiting clamp. This wisdom agricultural control by temperature change big-arch shelter, through the setting of sky-light board, dwang and heat preservation, in the use, receive external environment to influence, the indoor temperature change automatically regulated of big-arch shelter internal system response, when the temperature is too high, the movable column descends downwards, drive the sky-light board and open, the different height of moving the sky-light board, the nature ventilation cooling, when indoor temperature state is normal, close the sky-light board for inside temperature can not run off, when indoor temperature descends, open heat preservation device, the dwang rotates, fall the heat preservation, the heat preservation covers on the big-arch shelter surface, still can maintain indoor temperature when outdoor temperature descends, provide required growing environment for the plant.

Description

Wisdom agricultural control by temperature change big-arch shelter
Technical Field
The utility model relates to the technical field of agricultural equipment, in particular to an intelligent agricultural temperature control greenhouse.
Background
The plastic film of the greenhouse has heat preservation property, so the greenhouse is also called a greenhouse, can transmit light and preserve heat, is used for cultivating plants, can provide a growing period and increase yield in seasons unsuitable for plant growth, and is mostly used for cultivating or raising seedlings of plants like vegetables, flowers, trees and the like in low-temperature seasons. The existing agricultural greenhouse is covered with a film, turbidity in the greenhouse is increased along with the increase of the outside air temperature, a good ventilation system is absent in hot summer, the inside of the greenhouse is reduced along with the decrease of the outside air temperature, obvious seasonal variation and larger day-and-night temperature difference exist, the temperature in the greenhouse cannot be stably controlled, the plant growth is influenced, the modern intelligent agriculture aims to combine the use of scientific technology with the agricultural planting, and therefore automatic and intelligent management is achieved, and therefore the intelligent agricultural temperature control greenhouse is particularly needed.
But present green house, after covering the film, turbidity in the green house will rise along with the rising of outside temperature, lack good ventilation system in hot summer, the inside also can fall along with outside temperature decline of green house simultaneously, and there is obvious seasonal variation and great difference in temperature round clock, the unable stable control of temperature in the canopy influences vegetation, present work requirement changes, need provide the wisdom green house that can control the temperature in the canopy, use scientific and technological and farming to combine together, thereby realize automation, intelligent management, receive external environment influence, when the temperature is too high, cool down in the canopy through opening ventilation skylight size, when the temperature reduces, close the heat preservation outside the green house, keep the internal temperature, provide required growing environment for the plant.
Disclosure of Invention
The utility model aims to provide a smart agricultural temperature control greenhouse, which aims to solve the problems that the existing agricultural greenhouse provided in the background art is covered with a film, turbidity in the greenhouse is increased along with the increase of the outside air temperature, a good ventilation system is absent in hot summer, the interior of the greenhouse is reduced along with the decrease of the outside air temperature, obvious seasonal variation and larger day-and-night temperature difference exist in the greenhouse, the temperature in the greenhouse cannot be stably controlled, the plant growth is influenced, the current working requirement is changed, the temperature in the greenhouse needs to be controlled, the smart agricultural greenhouse is influenced by the external environment, when the temperature is too high, the temperature in the greenhouse is reduced by opening the size of a ventilation skylight, and when the temperature is reduced, the heat preservation layer outside the greenhouse is closed, so that the internal temperature is kept, and the required growth environment is provided for plants.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a wisdom agricultural control by temperature change big-arch shelter, includes big-arch shelter and big-arch shelter heat preservation subassembly, and big-arch shelter heat preservation subassembly includes bracing piece, motor connecting piece, connecting axle, dwang, heat preservation and edge fixing piece, the top of big-arch shelter is connected with the roof, the bottom surface of roof is connected with the spliced pole, the lower extreme of spliced pole is provided with the movable column, the lower extreme of movable column is provided with the skylight plate, the top surface of big-arch shelter is provided with big-arch shelter heat preservation subassembly, the side of big-arch shelter is provided with spacing clamp.
Preferably, the connecting column penetrates through the movable column, the movable column is in welded connection with the skylight plate, and the skylight plate and the top plate form a lifting structure through the movable column.
Preferably, the size of the skylight plate is identical with that of the top plate, and the skylight plate is tightly attached to the top plate.
Preferably, the greenhouse heat preservation assembly comprises a supporting rod, a motor connecting piece, a connecting shaft, a rotating rod, a heat preservation layer and an edge fixing piece, wherein the supporting rod is arranged on the side face of the greenhouse, the motor connecting piece is arranged on the top end of the supporting rod, the connecting shaft is connected to the side face of the motor connecting piece, the rotating rod is arranged at one end of the connecting shaft, the heat preservation layer is arranged on the side face of the rotating rod, and the edge fixing piece is connected to one end of the heat preservation layer.
Preferably, the rotating rod forms a rotating structure with the supporting rod through the connecting shaft, one end of the heat preservation layer is connected with the rotating rod in an adhesion manner, and the rotating rod and the heat preservation layer are arranged in a bilateral symmetry manner in the greenhouse.
Preferably, the heat preservation and the greenhouse side face size are matched, and the heat preservation is closely attached to the greenhouse.
Preferably, one end of the heat preservation layer is connected with the edge fixing piece through a clamping groove, the limiting clamps are distributed on the side face of the greenhouse at equal intervals, and the inner diameter of each limiting clamp is identical to the outer diameter of the edge fixing piece.
Compared with the prior art, the utility model has the beneficial effects that: this wisdom agricultural control by temperature change big-arch shelter, through the setting of sky-light board, dwang and heat preservation, in the use, receive external environment to influence, the indoor temperature change automatically regulated of big-arch shelter internal system response, when the temperature is too high, the movable column descends downwards, drive the sky-light board and open, according to the temperature condition that indoor needs to be adjusted, the different height of moving the sky-light board, advance nature aeration-cooling, when indoor temperature state is normal, close the sky-light board, the sky-light board that the tight silk joint makes inside temperature can not run off, when indoor temperature descends, open heat preservation, the dwang rotates, fall the heat preservation, the heat preservation covers at the big-arch shelter surface, still can maintain indoor temperature when outdoor temperature descends, provide required growing environment for the plant, use science and farming combine together, thereby realize automatic, intelligent management's control by temperature big-arch shelter, promote the development of national wisdom agricultural.
Drawings
FIG. 1 is a schematic side view of the external structure of a smart agriculture temperature control greenhouse;
FIG. 2 is a schematic diagram of a greenhouse heat preservation assembly according to the present utility model;
FIG. 3 is a schematic view of the structure of the skylight plate of the present utility model;
FIG. 4 is a schematic view of a thermal insulation layer fixing structure according to the present utility model;
in the figure: 1. a greenhouse; 2. a top plate; 3. a connecting column; 4. a movable column; 5. a skylight plate; 6. a greenhouse heat preservation assembly; 601. a support rod; 602. a motor connector; 603. a connecting shaft; 604. a rotating lever; 605. a heat preservation layer; 606. an edge fixing member; 7. and a limiting clamp.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, the present utility model provides a technical solution: the utility model provides an wisdom agricultural control by temperature change big-arch shelter, includes big-arch shelter 1 and big-arch shelter heat preservation subassembly 6, and big-arch shelter heat preservation subassembly 6 includes bracing piece 601, motor connecting piece 602, connecting axle 603, dwang 604, heat preservation 605 and edge fixing piece 606, and the top of big-arch shelter 1 is connected with roof 2, and the bottom surface of roof 2 is connected with spliced pole 3, and the lower extreme of spliced pole 3 is provided with movable column 4, and the lower extreme of movable column 4 is provided with skylight plate 5, and the top surface of big-arch shelter 1 is provided with big-arch shelter heat preservation subassembly 6, and the side of big-arch shelter 1 is provided with spacing clamp 7.
Further, the connecting column 3 penetrates through the movable column 4, the movable column 4 is in welded connection with the skylight plate 5, the skylight plate 5 forms a lifting structure with the top plate 2 through the movable column 4, the movable column 4 descends to drive the skylight plate 5 to open in the using process through the arrangement of the movable column 4, and the actual height of the skylight plate 5 is moved according to the indoor temperature condition to be regulated.
Further, the size of the skylight plate 5 is identical with that of the top plate 2, the skylight plate 5 is tightly attached to the top plate 2, and through the arrangement of the skylight plate 5, in the use process, when the indoor temperature state is normal, the skylight plate 5 is closed, and the skylight plate 5 tightly sealed is used for preventing the internal temperature from losing.
Further, greenhouse heat preservation subassembly 6 includes bracing piece 601, motor connecting piece 602, connecting axle 603, dwang 604, heat preservation 605 and edge fixing piece 606, the side of greenhouse 1 is provided with bracing piece 601, the top of bracing piece 601 is provided with motor connecting piece 602, the side of motor connecting piece 602 is connected with connecting axle 603, the one end of connecting axle 603 is provided with dwang 604, the side of dwang 604 is provided with heat preservation 605, the one end of heat preservation 605 is connected with edge fixing piece 606, through the setting of greenhouse heat preservation subassembly 6, in the use, greenhouse internal induction can open heat preservation device automatically when indoor temperature reduces, keep inside temperature, provide required growing environment for the plant.
Further, the rotating rod 604 forms a rotating structure with the supporting rod 601 through the connecting shaft 603, one end of the heat preservation 605 is connected with the rotating rod 604 in an adhesion manner, the rotating rod 604 and the heat preservation 605 are symmetrically arranged on the left side and the right side of the greenhouse 1, the indoor temperature is lowered in the using process through the arrangement of the rotating rod 604 and the heat preservation 605, the heat preservation device is opened, the rotating rod 604 rotates, and the heat preservation 605 is dropped.
Further, the heat preservation 605 is matched with the side surface of the greenhouse 1 in size, the heat preservation 605 is tightly attached to the greenhouse 1, and through the arrangement of the heat preservation 605, in the use process, the heat preservation 605 covers the surface of the greenhouse 1, and when the outdoor temperature is reduced, the indoor temperature is maintained.
Further, be the draw-in groove and be connected between the one end of heat preservation 605 and the edge fixing piece 606, spacing clamp 7 is equidistant to be distributed in greenhouse 1 side, and spacing clamp 7 internal diameter and edge fixing piece 606's external diameter size are identical, through setting up of spacing clamp 7, in the use, spacing clamp 7 can fix heat preservation 605, also can not blow off under the abominable state of weather, influences the heat preservation effect.
Working principle: the indoor temperature of the indoor system response of big-arch shelter changes, can automatically regulated, when the temperature is too high, movable column 4 descends, drive the sky-window board 5 and open, according to the temperature condition that indoor needs to be adjusted, remove the different height of sky-window board 5, progressive aeration cooling, when indoor temperature state is normal, close sky-window board 5, the sky-window board 5 of tight silk joint makes inside temperature can not run off, when indoor temperature descends, open heat preservation device, dwang 604 rotates, fall down heat preservation 605, heat preservation 605 covers at big-arch shelter 1 surface, still can maintain indoor temperature when outdoor temperature descends, provide required growing environment for the plant, spacing clamp 7 can be fixed heat preservation 605, also can not blow off under the abominable state of weather, and influence the heat preservation effect, use science and technology to combine together with the farming, thereby realize automatic, intelligent management's control by temperature big-arch shelter, promote the development of intelligent agriculture of china, the use process of an intelligent agriculture control by temperature big-arch shelter has just been accomplished like this.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides an wisdom agricultural control by temperature change big-arch shelter, includes big-arch shelter (1) and big-arch shelter heat preservation subassembly (6), and big-arch shelter heat preservation subassembly (6) include bracing piece (601), motor connecting piece (602), connecting axle (603), dwang (604), heat preservation (605) and edge fixing piece (606), its characterized in that: the greenhouse is characterized in that the top end of the greenhouse (1) is connected with a top plate (2), the bottom surface of the top plate (2) is connected with a connecting column (3), the lower end of the connecting column (3) is provided with a movable column (4), the lower end of the movable column (4) is provided with a skylight plate (5), the top surface of the greenhouse (1) is provided with a greenhouse heat insulation component (6), and the side surface of the greenhouse (1) is provided with a limiting clamp (7).
2. The intelligent agriculture temperature control greenhouse according to claim 1, wherein the connecting column (3) penetrates through the movable column (4), the movable column (4) is in welded connection with the skylight plate (5), and the skylight plate (5) and the top plate (2) form a lifting structure through the movable column (4).
3. The intelligent agriculture temperature control greenhouse according to claim 1, wherein the skylight plate (5) is matched with the top plate (2) in size, and the skylight plate (5) is tightly attached to the top plate (2).
4. The intelligent agriculture control by temperature change big-arch shelter according to claim 1, characterized in that, big-arch shelter heat preservation subassembly (6) include bracing piece (601), motor connecting piece (602), connecting axle (603), dwang (604), heat preservation (605) and edge fixing piece (606), the side of big-arch shelter (1) is provided with bracing piece (601), the top of bracing piece (601) is provided with motor connecting piece (602), the side of motor connecting piece (602) is connected with connecting axle (603), the one end of connecting axle (603) is provided with dwang (604), the side of dwang (604) is provided with heat preservation (605), the one end of heat preservation (605) is connected with edge fixing piece (606).
5. The intelligent agriculture control by temperature change greenhouse of claim 4, wherein the rotating rod (604) forms a rotating structure with the supporting rod (601) through the connecting shaft (603), one end of the heat preservation layer (605) is connected with the rotating rod (604) in an adhesion manner, and the rotating rod (604) and the heat preservation layer (605) are arranged in bilateral symmetry in the greenhouse (1).
6. The intelligent agricultural temperature control greenhouse according to claim 4, wherein the heat preservation layer (605) is matched with the side surface of the greenhouse (1), and the heat preservation layer (605) is tightly attached to the greenhouse (1).
7. The intelligent agriculture temperature control greenhouse according to claim 5, wherein one end of the heat preservation layer (605) is connected with the edge fixing piece (606) through a clamping groove, the limiting clamps (7) are distributed on the side face of the greenhouse (1) at equal intervals, and the inner diameter of the limiting clamps (7) is identical to the outer diameter of the edge fixing piece (606).
CN202223391877.7U 2022-12-16 2022-12-16 Wisdom agricultural control by temperature change big-arch shelter Active CN218889048U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223391877.7U CN218889048U (en) 2022-12-16 2022-12-16 Wisdom agricultural control by temperature change big-arch shelter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223391877.7U CN218889048U (en) 2022-12-16 2022-12-16 Wisdom agricultural control by temperature change big-arch shelter

Publications (1)

Publication Number Publication Date
CN218889048U true CN218889048U (en) 2023-04-21

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ID=85998455

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223391877.7U Active CN218889048U (en) 2022-12-16 2022-12-16 Wisdom agricultural control by temperature change big-arch shelter

Country Status (1)

Country Link
CN (1) CN218889048U (en)

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