CN203597166U - Plant seed and seedling earth energy cultivation room - Google Patents

Plant seed and seedling earth energy cultivation room Download PDF

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Publication number
CN203597166U
CN203597166U CN201320777176.9U CN201320777176U CN203597166U CN 203597166 U CN203597166 U CN 203597166U CN 201320777176 U CN201320777176 U CN 201320777176U CN 203597166 U CN203597166 U CN 203597166U
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CN
China
Prior art keywords
diversion pipe
pipe network
wall
airduct
network heat
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201320777176.9U
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Chinese (zh)
Inventor
杨晓峰
杨敬东
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SHANDONG TIANJU CONSTRUCTION ENGINEERING Co Ltd
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SHANDONG TIANJU CONSTRUCTION ENGINEERING Co Ltd
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Priority to CN201320777176.9U priority Critical patent/CN203597166U/en
Application granted granted Critical
Publication of CN203597166U publication Critical patent/CN203597166U/en
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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
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/14Measures for saving energy, e.g. in green houses

Abstract

A plant seed and seedling earth energy cultivation room comprises a wall and a roof. The wall and the roof constitute a cultivation room body. A cultivation rack is arranged inside the wall, and the cultivation rack is provided with artificial light sources. Diversion pipe network heat exchange fins are mounted on the inner wall of the wall, and all the diversion pipe network heat exchange fins are sequentially connected. Pipeline cavities are formed in the diversion pipe network heat exchange fins. A plurality of diversion pipes are arranged in the pipeline cavities, one end of each diversion pipe is connected with a liquid inlet pipe, and the other end of each diversion pipe is connected with a liquid outlet pipe. Each liquid inlet pipe is connected with the liquid outlet pipe of the corresponding adjacent diversion pipe network heat exchange fin. The end portion diversion pipe network heat exchange fin and the tail portion diversion pipe network heat exchange fin are connected with a ground source heat pump. According to the plant seed and seedling earth energy cultivation room, earth energy is used as energy, reproducible energy is effectively utilized, temperature regulation and control of the large-area seedling cultivation room can be achieved, through a diversion pipe network, heat exchange can be conducted between the air outside and the air in the seedling cultivation room, an appropriate temperature can be rapidly achieved and maintained, seedling growth is promoted, and the percent of pass is improved.

Description

Plant species, Miao Dineng raising chamber
Technical field
The utility model relates to a kind of plant species, Miao Dineng raising chamber.
Background technology
Very strict to temperature control in the cultivating process of plant species, seedling.At present, temperature control adopts air-conditioning to carry out temperature adjusting, and air-conditioning regulates temperature need to input fast hot-air, and hot-air rapid flow easily causes the evaporation of seedling surface moisture, affects the normal growth of seedling, and the qualification rate that causes growing seedlings reduces.Air-conditioning temperature adjustment accuracy is higher, but energy consumption is larger, and the temperature that is not suitable for large area raising chamber regulates.
Utility model content
For addressing the above problem, the purpose of this utility model is to provide a kind of plant species, Miao Dineng raising chamber.
The utility model for achieving the above object, be achieved through the following technical solutions: plant species, Miao Dineng raising chamber, comprise body of wall and roof, body of wall and roof composition raising chamber main body, body of wall inside arranges culturing frame, artificial light source is installed on culturing frame, water conservancy diversion pipe network heat exchanger fin is installed on the inwall of body of wall, each water conservancy diversion pipe network heat exchanger fin is connected successively, in water conservancy diversion pipe network heat exchanger fin, offer duct chamber, several mozzles are set in duct chamber, one end of mozzle connects feed tube, the other end of mozzle connects drain pipe, feed tube is connected with the drain pipe of adjacent water conservancy diversion pipe network heat exchanger fin, the water conservancy diversion pipe network heat exchanger fin of end and the water conservancy diversion pipe network heat exchanger fin of afterbody are connected earth source heat pump or other Cooling and Heat Source.
In order further to realize the purpose of this utility model, can also be by the following technical solutions: described under-roof arranges airduct, and the outside of body of wall is stretched out in one end of airduct, the other end of airduct is installed air outlet, airduct stretch out body of wall part blower fan is installed.Described air outlet is hollow disc dress, and the periphery of air outlet evenly arranges through hole, and air outlet top is connected with airduct.The end that described airduct stretches out body of wall arranges inlet scoop, and inlet scoop is bell mouth shape, and the airduct between inlet scoop and blower fan arranges arm, and arm connects carbon dioxide cylinder.Intermittently air supply plant is set between described carbon dioxide cylinder and airduct, intermittently air supply plant is made up of cylinder, inflator the first tube connector, the second tube connector, the two ends of the first tube connector connect respectively airduct and inflator, the two ends of the second tube connector connect respectively carbon dioxide cylinder and inflator, the first check valve is set on the first tube connector, the second check valve is set on the second tube connector, piston is set in inflator, piston connects the piston rod of cylinder.
The utility model has the advantage of: the utility model adopts ground can serve as the energy, effectively utilizes the reproducible energy, realizes the temperature regulation and control of large area seedling rearing room; By water conservancy diversion pipe network, can realize with seedling rearing room in air carry out heat exchange, reach rapidly and keep suitable temperature, be conducive to the growth of seedling, increase qualification rate.Also there is compactness simple for structure, cheap for manufacturing cost and easy to use with the utility model.
Accompanying drawing explanation
Fig. 1 is the structural representation of utility model; Fig. 2 is the structural representation of water conservancy diversion pipe network heat exchanger fin; Fig. 3 is the local structure for amplifying schematic diagram of the I of Fig. 1.
Reference numeral: intermittently air supply plant 18 cylinder 19 piston 20 first check valve 21 first tube connector 22 inflator 23 second check valve 24 second tube connectors of 1 water conservancy diversion pipe network heat exchanger fin 2 inlet scoop 3 airduct 4 roof 5 blower fan 6 culturing frame 7 body of wall 8 artificial light source 9 feed tube 10 duct chamber 11 mozzle 12 drain pipe 13 earth source heat pump 14 air outlet 15 through hole 16 carbon dioxide cylinders 17.
Embodiment
Plant species, Miao Dineng raising chamber, as shown in Figure 1, comprise body of wall 7 and roof 4, body of wall 7 and roof 4 form raising chamber's main body, body of wall 7 inside arrange culturing frame 6, artificial light source 8 is installed on culturing frame 6, water conservancy diversion pipe network heat exchanger fin 1 is installed on the inwall of body of wall 7, water conservancy diversion pipe network heat exchanger fin 1 can be the composite modified polyethylene water conservancy diversion of nano aluminum pipe network heat exchanger fin, each water conservancy diversion pipe network heat exchanger fin 1 is connected successively, as shown in Figure 2, in water conservancy diversion pipe network heat exchanger fin 1, offer duct chamber 10, duct chamber 10 is interior arranges several mozzles 11, one end of mozzle 11 connects feed tube 9, the other end of mozzle 11 connects drain pipe 12, feed tube 9 is connected with the drain pipe 12 of adjacent water conservancy diversion pipe network heat exchanger fin 1, the water conservancy diversion pipe network heat exchanger fin 1 of end and the water conservancy diversion pipe network heat exchanger fin 1 of afterbody are connected earth source heat pump 13 or other Cooling and Heat Source.Earth source heat pump 13 carries out thermal energy exchange, and the refrigerating fluid after heat exchange is entered to water conservancy diversion pipe network heat exchanger fin 1, and water conservancy diversion pipe network heat exchanger fin 1 carries out heat exchange with room air, makes indoor temperature reach the required temperature of fungus grown.Water conservancy diversion pipe network heat exchanger fin 1 is modularization, when installation, adjacent water conservancy diversion pipe network heat exchanger fin 1 is spliced, and installs simple and convenient.The utility model adopts ground can serve as the energy, effectively utilizes the reproducible energy, realizes the temperature regulation and control of large area seedling rearing room; By capillary network, can realize with seedling rearing room in air carry out heat exchange, reach rapidly and keep suitable temperature, be conducive to the growth of seedling, increase qualification rate.
In order to increase indoor ventilation, described 4 bottoms, roof arrange airduct 3, and the outside of body of wall 7 is stretched out in one end of airduct 3, and the other end of airduct 3 is installed air outlet 14, airduct 3 stretch out body of wall part blower fan 5 is installed.Blower fan 8 air amounts, ventilate to indoor, keep air fresh, promote seedling to grow up.
For fear of the wind entering, plant is directly blown, described air outlet 14 is hollow disc dress, and the periphery of air outlet 14 evenly arranges through hole 15, and air outlet 14 tops are connected with airduct 3.Wind is laterally blown out by through hole 15, can directly not blow the surface of seedling, reduces the evaporation causing because of wind.
In order to increase photosynthesis, improve the content of indoor carbon dioxide, the end that described airduct 3 stretches out body of wall arranges inlet scoop 2, and inlet scoop 2 is bell mouth shape, and the airduct 3 between inlet scoop 2 and blower fan 5 arranges arm, and arm connects carbon dioxide cylinder 16.In air-supply process, carbonic acid gas is sent in the lump indoorly, improved indoor gas concentration lwevel, increase the photosynthesis of seedling, promote growth.
In order to keep the uniformity coefficient of transport of carbon dioxide in time, intermittently air supply plant 17 is set between described carbon dioxide cylinder 16 and airduct 3, intermittently air supply plant is by cylinder 18, inflator 22 first tube connectors 21, the second tube connector 24 forms, the two ends of the first tube connector 21 connect respectively airduct 3 and inflator 22, the two ends of the second tube connector 24 connect respectively carbon dioxide cylinder 16 and inflator 22, the first check valve 20 is set on the first tube connector 21, the first check valve 20 allows gas to be flowed to airduct 3 by inflator 22, the second tube connector 24 allows gas to be flowed to inflator 22 by carbon dioxide cylinder 16, the second check valve 23 is set on the second tube connector 24, the interior piston 19 that arranges of inflator 22, piston 19 connects the piston rod of cylinder 18.The carbonic acid gas that piston period of motion of cylinder 18 can be realized carbon dioxide cylinder 16 enters inflator 22, and the gas in inflator 22 enters in airduct 3 again, realizes intermittent other and sends into, and keeps the concentration of indoor carbon dioxide, improves the success rate that seedling is cultivated.
The technical solution of the utility model is not restricted in the scope of embodiment described in the utility model.The utility model not technology contents of detailed description is known technology.

Claims (5)

1. plant species, Miao Dineng raising chamber, it is characterized in that: comprise body of wall (7) and roof (4), body of wall (7) and roof (4) composition raising chamber main body, body of wall (7) inside arranges culturing frame (6), the upper artificial light source (8) of installing of culturing frame (6), water conservancy diversion pipe network heat exchanger fin (1) is installed on the inwall of body of wall (7), each water conservancy diversion pipe network heat exchanger fin (1) is connected successively, in water conservancy diversion pipe network heat exchanger fin (1), offer duct chamber (10), several mozzles (11) are set in duct chamber (10), one end of mozzle (11) connects feed tube (9), the other end of mozzle (11) connects drain pipe (12), feed tube (9) is connected with the drain pipe (12) of adjacent water conservancy diversion pipe network heat exchanger fin (1), the water conservancy diversion pipe network heat exchanger fin (1) of end and the water conservancy diversion pipe network heat exchanger fin (1) of afterbody are connected earth source heat pump (13) or other Cooling and Heat Source.
2. plant species according to claim 1, Miao Dineng raising chamber, it is characterized in that: described bottom, roof (4) arranges airduct (3), the outside of body of wall (7) is stretched out in one end of airduct (3), the other end of airduct (3) is installed air outlet (14), airduct (3) stretch out body of wall part blower fan (5) is installed.
3. plant species according to claim 2, Miao Dineng raising chamber, is characterized in that: described air outlet (14) is hollow disc dress, and the periphery of air outlet (14) evenly arranges through hole (15), and air outlet (14) top is connected with airduct (3).
4. plant species according to claim 2, Miao Dineng raising chamber, it is characterized in that: the end that described airduct (3) stretches out body of wall arranges inlet scoop (2), inlet scoop (2) is bell mouth shape, airduct (3) between inlet scoop (2) and blower fan (5) arranges arm, and arm connects carbon dioxide cylinder (16).
5. plant species according to claim 4, Miao Dineng raising chamber, it is characterized in that: intermittently air supply plant (17) is set between described carbon dioxide cylinder (16) and airduct (3), intermittently air supply plant is by cylinder (18), inflator (22) first tube connectors (21), the second tube connector (24) composition, the two ends of the first tube connector (21) connect respectively airduct (3) and inflator (22), the two ends of the second tube connector (24) connect respectively carbon dioxide cylinder (16) and inflator (22), the first check valve (20) is set on the first tube connector (21), the second check valve (23) is set on the second tube connector (24), piston (19) is set in inflator (22), piston (19) connects the piston rod of cylinder (18).
CN201320777176.9U 2013-12-02 2013-12-02 Plant seed and seedling earth energy cultivation room Expired - Fee Related CN203597166U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320777176.9U CN203597166U (en) 2013-12-02 2013-12-02 Plant seed and seedling earth energy cultivation room

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320777176.9U CN203597166U (en) 2013-12-02 2013-12-02 Plant seed and seedling earth energy cultivation room

Publications (1)

Publication Number Publication Date
CN203597166U true CN203597166U (en) 2014-05-21

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Family Applications (1)

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CN201320777176.9U Expired - Fee Related CN203597166U (en) 2013-12-02 2013-12-02 Plant seed and seedling earth energy cultivation room

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106416819A (en) * 2016-09-26 2017-02-22 中南林业科技大学 Breeding detection system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106416819A (en) * 2016-09-26 2017-02-22 中南林业科技大学 Breeding detection system

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140521

Termination date: 20171202

CF01 Termination of patent right due to non-payment of annual fee