CN207427984U - Hot-water heating heats glasshouse - Google Patents
Hot-water heating heats glasshouse Download PDFInfo
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- CN207427984U CN207427984U CN201721592700.XU CN201721592700U CN207427984U CN 207427984 U CN207427984 U CN 207427984U CN 201721592700 U CN201721592700 U CN 201721592700U CN 207427984 U CN207427984 U CN 207427984U
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- water
- pipe
- heat dissipation
- hot
- glasshouse
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/10—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
- Y02A40/25—Greenhouse technology, e.g. cooling systems therefor
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Abstract
The utility model discloses a kind of hot-water heatings to heat glasshouse, including greenhouse body, heating boiler, first water pump, second water pump, water-storing device, hot water outlet pipe, heat dissipation pipe and return pipe, the water outlet of the heating boiler is connected through hot water outlet pipe with the water inlet end of the first water pump, the water outlet of first water pump is connected with one end of the first connecting tube, the other end of first connecting tube is connected with the first end positioned at the intrinsic heat dissipation pipe in greenhouse, the second end of the heat dissipation pipe is connected through the second connecting tube with the first end of return pipe, the second end of the return pipe is connected with the water inlet of water-storing device, the water outlet of the water-storing device is connected through the first water injection pipe with the water inlet end of the second water pump, the second water injection pipe of water outlet of second water pump is connected with the water filling port of heating boiler.It is heated in the utility model using hot water through heat dissipation pipe for the indoor air of temperature, while by water circulation use, reduces heating cost.
Description
Technical field
The utility model is related to greenhouse technology fields, and glasshouse is heated more particularly to a kind of hot-water heating.
Background technology
China is vast in territory, and different regions weather conditions difference is big, the plantation of the crops such as many vegetables of some areas
Multi-cycle finite;In order to which the agricultural product such as fresh vegetables can be provided to people in each season, vegetable is carried out extensively using greenhouse
The plantation of the crops such as dish provides vegetables in improper season for people.Existing greenhouse species is various, such as vinyl house, glasshouse
Deng, but basic principle is all identical, is all to be used as all or part of space enclosing structure material by daylighting covering material.Although greenhouse
The influence of cool ambient air can be reduced, but can still cause when ambient temperature is too low greenhouse less than crops normal growth
Temperature range;At this time, it may be necessary to it is heated for the indoor air of temperature, to ensure the normal growth of crops, it is therefore desirable to be
Greenhouse sets heating system.
Utility model content
The purpose of the utility model is to overcome the deficiencies in the prior art, provide a kind of hot-water heating heating glasshouse, are equipped with
Heating boiler and heat dissipation pipe are heated using hot water through heat dissipation pipe for the indoor air of temperature.
The purpose of this utility model is achieved through the following technical solutions:Hot-water heating heats glasshouse, including greenhouse
Body, heating boiler, the first water pump, the second water pump, water-storing device, hot water outlet pipe, heat dissipation pipe, return pipe, the first connection
Pipe and the second connecting tube, the greenhouse body are externally provided with heating boiler, the water outlet of the heating boiler through hot water outlet pipe with
The water inlet end connection of first water pump, the water outlet of first water pump are connected with one end of the first connecting tube, first connection
The other end of pipe is connected with the first end positioned at the intrinsic heat dissipation pipe in greenhouse, and the heat dissipation pipe is obliquely installed, described to dissipate
The height of the first end of hot-water line is higher than the height of the second end of heat dissipation pipe, and the second end of the heat dissipation pipe is through the second connection
Pipe is connected with the first end of return pipe located underground, and the return pipe is obliquely installed, the height of the first end of the return pipe
Higher than the height of the second end of return pipe, the second end of the return pipe is connected with the water inlet of water-storing device located underground,
The water outlet of the water-storing device is connected through the first water injection pipe with the water inlet end of the second water pump, the water outlet warp of second water pump
Second water injection pipe is connected with the water filling port of heating boiler.
Preferably, the hot-water heating heating glasshouse further includes lift sunpender, and the heat dissipation pipe passes through more liftings
Formula sunpender is suspended on the inner wall of greenhouse body.
Preferably, the lift sunpender includes hydraulic cylinder and connecting rod, and the hydraulic cylinder is mounted on the interior of greenhouse body
On wall, the connecting rod is arranged on the lower section of hydraulic cylinder, and the piston rod of one end of the connecting rod and hydraulic cylinder connects, described
The other end of connecting rod is connected with heat dissipation pipe.
Preferably, the greenhouse body includes side wall skeleton and ceiling skeleton, and the heat dissipation pipe passes through lift sunpender
It is suspended on the inside of ceiling skeleton.
Preferably, the section of the heat dissipation pipe is star-like.
Preferably, the outer wall of the heat dissipation pipe is equipped with multiple radiating fins.
Preferably, the heat dissipation pipe is in fold-line-shaped or waveform.
Preferably, the heat dissipation pipe is metal tube.
Preferably, the heating boiler is methane boiler.
The beneficial effects of the utility model are:
(1)Heating boiler carries out cold water to be heated into hot water, and hot water is carried out through the intrinsic air of hot channel and greenhouse
Heat exchange is heated for it, and then hot water cools down, and the hot water after cooling is back to water-storing device through return pipe and is stored, so as to real
Show the heating of glasshouse, while by water circulation use, reduce cost;
(2)Heat dissipation pipe and return pipe are obliquely installed, and water conservancy self gravitation acts on heat dissipation pipe and return pipe
Interior flowing reduces in heating process to the demand of power, reduces energy consumption;
(3)Water-storing device is arranged on underground, and since the water being back in water-storing device also has certain temperature, and underground cools down
Slowly, energy consumption during heating again can be reduced;
(4)Heat dissipation pipe is suspended on by lift sunpender on the inner wall of greenhouse body, can adjust heat dissipation according to demand
The height of water pipe;
(5)The section of heat dissipation pipe can be increased scattered using multiple radiating fins are set on star-like, heat dissipation pipe outer wall
The contact area of hot-water line and air improves the efficiency of heating surface;Heat dissipation pipe is in fold-line-shaped or waveform, extends hot water in greenhouse
Intrinsic flowing time improves heating effect when each hot water is flowed through in greenhouse body;In addition, heat dissipation pipe is using gold
Belong to pipe, further improve the efficiency of heating surface.
Description of the drawings
Fig. 1 is the structure diagram of the utility model medium temperature chamber main body;
Fig. 2 is the structure diagram of the utility model;
In figure, 1-side wall skeleton, 2-ceiling skeleton, 3-heating boiler, the 4-the first water pump, the 5-the second water pump, 6-
Water-storing device, 7-hot water outlet pipe, 8-heat dissipation pipe, 9-return pipe, the 10-the first connecting tube, the 11-the second connecting tube,
12-the first water injection pipe, the 13-the second water injection pipe, 14-lift sunpender.
Specific embodiment
Below in conjunction with embodiment, the technical solution of the utility model is clearly and completely described, it is clear that retouched
The embodiment stated is only the utility model part of the embodiment, instead of all the embodiments.Based in the utility model
Embodiment, those skilled in the art's all other embodiments obtained on the premise of not making the creative labor, all belongs to
In the scope of the utility model protection.
Refering to Fig. 1-2, a kind of hot-water heating heating glasshouse is present embodiments provided:Hot-water heating heating glasshouse includes greenhouse
Body, heating boiler 3, the first water pump 4, the second water pump 5, water-storing device 6, hot water outlet pipe 7, heat dissipation pipe 8, return pipe 9,
One connecting tube 10, the second connecting tube 11, the first water injection pipe 12 and the second water injection pipe 13, the greenhouse body include side wall skeleton 1
With ceiling skeleton 2, the outside of the side wall skeleton 1 and ceiling skeleton 2 is equipped with transparent glass;In some embodiments, side wall
Skeleton 1 is made of two top slat irons and two side skeletons;The ceiling skeleton 2 can be diversified forms, such as planar structure, the V that falls
Type structure etc..It is additionally provided on the greenhouse body for the gate of disengaging and the window for being aerated, the window is preferred
Using sliding window, occupied space during windowing can be reduced, and is less likely to be damaged.
The greenhouse body is externally provided with heating boiler 3, and the heating boiler 3 can be methane boiler, coal-burning boiler, electric heating
Stove etc., it is preferred to use methane boiler;In some embodiments, greenhouse is originally additionally provided with methane-generating pit in vitro, and methane-generating pit is methane boiler
Fuel is provided.The water outlet of the heating boiler 3 is connected through hot water outlet pipe 7 with the water inlet end of the first water pump 4, first water
The water outlet of pump 4 is connected with the first end of the first connecting tube 10, and the second end of first connecting tube 10 is stretched through greenhouse body
Enter in greenhouse body.7 and first connecting tube 10 of hot water outlet pipe is managed using ppr, and other heat resistances can also be used good
Good water pipe.
The heat dissipation pipe 8 is located in greenhouse body, the first end of the heat dissipation pipe 8 and the second of the first connecting tube 10
End connection, the second end of the heat dissipation pipe 8 are connected with the first end of the second connecting tube 11.It is described state heat dissipation pipe 8 tilt set
Put, the height of the first end of the heat dissipation pipe 8 higher than the second end of heat dissipation pipe 8 height, i.e., the height of heat dissipation pipe 8 from
Its first end to second end continuously decreases.In some embodiments, the section of the heat dissipation pipe 8 is star-like to add heat dissipation
The contact area of water pipe 8 and hot water and air is improved to air is heated in greenhouse body firing rate.In some realities
It applies in example, the outer wall of the heat dissipation pipe 8 is equipped with multiple radiating fins, adds the contact area of heat dissipation pipe 8 and air,
It improves to air is heated in greenhouse body firing rate;In some embodiments, the heat dissipation pipe 8 is in fold-line-shaped
Or waveform, hot water is extended in the intrinsic flow distance in greenhouse, and then extends hot water in the intrinsic stop in greenhouse
Between, improve the efficiency of heating surface heated for the intrinsic air in greenhouse;In some embodiments, the heat dissipation pipe 8 is
Metal tube, the efficiency heated to the indoor air of temperature is improved using the characteristics of metal tube good heat conductivity, and metal tube is excellent
Choosing is using good water pipes of heat conductivilitys such as copper pipes.
Second connecting tube 11 is connected with the first end of return pipe 9, second end and the water-storing device 6 of the return pipe 9
Water inlet connection.The return pipe 9 is arranged on underground, and the return pipe 9 is obliquely installed, the first end of the return pipe 9
Highly it is higher than the height of the second end of return pipe 9, i.e. the height of return pipe 9 is continuously decreased from its first end to second end.It is described
The corrosion resistant water tank such as stainless steel water tank may be employed in water-storing device 6, and the water-storing device 6 is arranged on underground.Return pipe 9 and storage
Water installations 6 are arranged at underground, change the characteristics of slower using subsurface temperature so that the waste heat of current is not easy to shed, and reduces
Heating time when water recycles, reduce the energy consumption that entire glasshouse is heated.The water outlet of the water-storing device 6
Mouthful connected through the first water injection pipe 12 with the water inlet end of the second water pump 5, the second water injection pipe of water outlet 13 of second water pump 5 and
The water filling port connection of heating boiler 3.The hot water outlet pipe 7, the first connecting tube 10, the first water injection pipe 12 and the second water injection pipe 13
Ppr pipes or stainless steel tube may be employed, other corrosion resistant water pipes can also be used.In some embodiments, water-storing device 6 is gone back
Equipped with water filling port, which is connected with the 3rd water injection pipe, and the other end of the 3rd water injection pipe is rest on the ground, and can pass through the 3rd
Water injection pipe carries out moisturizing for water-storing device 6.
In some embodiments, the hot-water heating heating glasshouse further includes lift sunpender 14, control lift sunpender
14 control buttons risen or fallen, the heat dissipation pipe 8 are suspended on the inner wall of greenhouse body by more lift sunpenders 14
On;The lift sunpender 14 includes hydraulic cylinder and connecting rod, and the hydraulic cylinder is mounted on the inner wall of greenhouse body, the company
Extension bar is arranged on the lower section of hydraulic cylinder, and the piston rod of one end of the connecting rod and hydraulic cylinder connects, the connecting rod it is another
One end is connected with heat dissipation pipe 8;It can be directly connected to, can also led to by modes such as welding between connecting rod and heat dissipation pipe 8
Attachment device is crossed to be attached.
In the present embodiment, the water in water-storing device 6 is evacuated in heating boiler 3 by the second water pump 5, heating boiler 3 to water into
Row heating, the first water pump 4 send the hot water after heating into heat dissipation pipe 8, due to heat dissipation pipe 8, the second connecting tube 11 and return
The height of water pipe 9 continuously decreases, and hot water is flow to from the first end of heat dissipation pipe 8 in water-storing device 6 automatically, realizes the cycling profit of water
With, wherein, hot water outwards radiates when flowing through heat dissipation pipe 8 through heat dissipation pipe 8, is heated for the intrinsic air in greenhouse.
The above is only the preferred embodiment of the utility model, it should be understood that the utility model is not limited to herein
Disclosed form is not to be taken as the exclusion to other embodiment, and available for various other combinations, modification and environment, and
It can be modified in contemplated scope described herein by the technology or knowledge of above-mentioned introduction or association area.And this field
The modifications and changes that personnel are carried out do not depart from the spirit and scope of the utility model, then all should be in right appended by the utility model
It is required that protection domain in.
Claims (9)
1. hot-water heating heats glasshouse, which is characterized in that including greenhouse body, heating boiler(3), the first water pump(4), the second water
Pump(5), water-storing device(6), hot water outlet pipe(7), heat dissipation pipe(8), return pipe(9), the first connecting tube(10)Connect with second
It takes over(11), the greenhouse body is externally provided with heating boiler(3), the heating boiler(3)Water outlet through hot water outlet pipe(7)
With the first water pump(4)Water inlet end connection, first water pump(4)Water outlet and the first connecting tube(10)One end connection,
First connecting tube(10)The other end with positioned at the intrinsic heat dissipation pipe in greenhouse(8)First end connection, the heat dissipation
Water pipe(8)It is obliquely installed, the heat dissipation pipe(8)First end height be higher than heat dissipation pipe(8)Second end height, institute
State heat dissipation pipe(8)Second end through the second connecting tube(11)With return pipe located underground(9)First end connection, described time
Water pipe(9)It is obliquely installed, the return pipe(9)First end height be higher than return pipe(9)Second end height, described time
Water pipe(9)Second end and water-storing device located underground(6)Water inlet connection, the water-storing device(6)Water outlet warp
First water injection pipe(12)With the second water pump(5)Water inlet end connection, second water pump(5)The second water injection pipe of water outlet
(13)With heating boiler(3)Water filling port connection.
2. hot-water heating according to claim 1 heats glasshouse, which is characterized in that the hot-water heating heating glasshouse also wraps
Include lift sunpender(14), the heat dissipation pipe(8)Pass through more lift sunpenders(14)It is suspended on the inner wall of greenhouse body.
3. hot-water heating according to claim 2 heats glasshouse, which is characterized in that the lift sunpender(14)Including liquid
Cylinder pressure and connecting rod, the hydraulic cylinder are mounted on the inner wall of greenhouse body, and the connecting rod is arranged on the lower section of hydraulic cylinder, and
One end of the connecting rod and the piston rod of hydraulic cylinder connect, the other end of the connecting rod and heat dissipation pipe(8)Connection.
4. hot-water heating according to claim 2 heats glasshouse, which is characterized in that the greenhouse body includes side wall skeleton
(1)With ceiling skeleton(2), the heat dissipation pipe(8)Pass through lift sunpender(14)It is suspended on ceiling skeleton(2)Inside.
5. hot-water heating according to claim 1 heats glasshouse, which is characterized in that the heat dissipation pipe(8)Section be
It is star-like.
6. hot-water heating according to claim 1 heats glasshouse, which is characterized in that the heat dissipation pipe(8)Outer wall on
Equipped with multiple radiating fins.
7. hot-water heating according to claim 1 heats glasshouse, which is characterized in that the heat dissipation pipe(8)In fold-line-shaped
Or waveform.
8. hot-water heating according to claim 1 heats glasshouse, which is characterized in that the heat dissipation pipe(8)For metal tube.
9. hot-water heating according to claim 1 heats glasshouse, which is characterized in that the heating boiler(3)For biogas pot
Stove.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721592700.XU CN207427984U (en) | 2017-11-24 | 2017-11-24 | Hot-water heating heats glasshouse |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721592700.XU CN207427984U (en) | 2017-11-24 | 2017-11-24 | Hot-water heating heats glasshouse |
Publications (1)
Publication Number | Publication Date |
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CN207427984U true CN207427984U (en) | 2018-06-01 |
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ID=62287639
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201721592700.XU Active CN207427984U (en) | 2017-11-24 | 2017-11-24 | Hot-water heating heats glasshouse |
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CN (1) | CN207427984U (en) |
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2017
- 2017-11-24 CN CN201721592700.XU patent/CN207427984U/en active Active
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