CN104833016B - Suitable for the wind light mutual complementing power generation drive-type cooling system of bus stop - Google Patents

Suitable for the wind light mutual complementing power generation drive-type cooling system of bus stop Download PDF

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Publication number
CN104833016B
CN104833016B CN201510109061.6A CN201510109061A CN104833016B CN 104833016 B CN104833016 B CN 104833016B CN 201510109061 A CN201510109061 A CN 201510109061A CN 104833016 B CN104833016 B CN 104833016B
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wind
pipe
cooling system
power generation
water
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Expired - Fee Related
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CN201510109061.6A
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CN104833016A (en
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黄翔
申长军
苏晓青
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Xian Polytechnic University
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Xian Polytechnic University
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0046Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground
    • F24F5/005Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground using energy from the ground by air circulation, e.g. "Canadian well"
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0046Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground
    • F24F2005/0057Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground receiving heat-exchange fluid from a closed circuit in the ground
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0046Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground
    • F24F2005/0064Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground using solar energy
    • F24F2005/0067Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground using solar energy with photovoltaic panels
    • 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
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/40Geothermal heat-pumps

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Energy (AREA)
  • Sustainable Development (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Photovoltaic Devices (AREA)
  • Wind Motors (AREA)

Abstract

Wind light mutual complementing power generation drive-type cooling system disclosed by the invention suitable for bus stop, include the evaporative cooling system being arranged in bus stop, low temperature soil source water system and wind and solar hybrid generating system, wind and solar hybrid generating system is connected with evaporative cooling system, low temperature soil source water system respectively;Evaporative cooling system is connected with low temperature soil source water system.The present invention is applied to the wind light mutual complementing power generation drive-type cooling system of bus stop, and wind light mutual complementing power generation, low temperature soil source and evaporation cooling are combined, the temperature in bus stop can be effectively reduced, so as to the generation for the accident that prevents from blowing out in station.

Description

Suitable for the wind light mutual complementing power generation drive-type cooling system of bus stop
Technical field
The invention belongs to outdoor cooling system technical field, and in particular to a kind of wind light mutual complementing suitable for bus stop Generating drive-type cooling system.
Background technology
For convenience of the trip of people, almost each city has put into substantial amounts of bus;And in recent years, summer high temperature Anomalous weather takes place frequently, and surface temperature can be up to more than 40 DEG C sometimes during the broiling summer, and this just makes to stop for a long time at the bus stop Interior bus suffer from the test of high temperature, and phenomenon of blowing out easily occurs in especially tire, and the safety traffic to automobile is buried Hidden danger.
Because environment and surface temperature height are the main hidden danger of initiation automotive tire burst, then just need for bus stop It is interior to be equipped with a set of suitable cooling system, in order to effectively reduce the temperature in bus stop, prevent the generation of bad accident.Mesh It is preceding mostly using conventional energy resource drive tradition machinery refrigeration air-conditioner by the way of, although so can to bus stop ground cool or The station environment temperature reduction that person stops to bus, but great energy waste can be caused, also have an impact to environment.
In consideration of it, by wind light mutual complementing power generation technology, generated electricity and supplied using the solar energy and wind energy resources that are enriched in nature It is not only with excellent characteristics of energy saving but also almost pollution-free to environment to cooling system;It is in addition, low using what is stored in soil Warm geothermal energy carries out precooling to the ground in station, then the space in station is cooled by evaporation cooling technique, with regard to energy Temperature in effective temperature-reducing bus stop, it effectively prevent the generation for the accident of blowing out.
The content of the invention
, will it is an object of the invention to provide a kind of wind light mutual complementing power generation drive-type cooling system suitable for bus stop Wind light mutual complementing power generation, low temperature soil source and evaporation cooling combine, and the temperature in bus stop can be effectively reduced, so as to prevent station The generation for accident of inside blowing out.
The technical solution adopted in the present invention is, suitable for the wind light mutual complementing power generation drive-type cooling system of bus stop, Include the evaporative cooling system being arranged in bus stop, low temperature soil source water system and wind and solar hybrid generating system, scene Complementary power generation system is connected with evaporative cooling system, low temperature soil source water system respectively;Evaporative cooling system and low temperature soil source Water system connects.
The features of the present invention also resides in:
Low temperature soil source water system, include vertical underground pipe group and coil pipe;Vertical underground pipe group is by more vertical layings Underground pipe composition in soil, one end of more underground pipes are connected on first circulation water pipe, the other end of more underground pipes It is connected on second circulation water pipe;First circulation water pipe is connected to the water inlet end of horizontal coil pipe, and second circulation water pipe is connected to water The water side of square position pipe;Coil pipe level is layed on thermal insulation board, and the water inlet end of coil pipe is provided with water pump, and water pump passes through wire and wind Light complementary power generation system connects;Coil pipe is connected by feed pipe with evaporative cooling system;Coil pipe is embedded in soil together with thermal insulation board In, the surrounding of thermal insulation board is surrounded with warming plate;Feed pipe elevates above the soil with warming plate.
Wind and solar hybrid generating system, includes wind generator system and photovoltaic solar hull cell, and photovoltaic solar is thin Film battery is layed on the outside of the shade of bus stop;Wind generator system and photovoltaic solar hull cell respectively by wire with Electric power cabinet connects;Electric power cabinet is connected by wire with evaporative cooling system, water pump respectively.
Wind generator system is provided with multiple;Wind generator system relies on upright supports, and wind generator system passes through wire It is connected with electric power cabinet, electric power cabinet is arranged on the outer wall of column.
Wind generator system, includes multiple wind power generation units, and each wind power generation unit is sent out by multiple miniature windmills Electrical component forms;Multiple miniature windmill generating components are connected on a support by support bar respectively;Multiple wind-power electricity generation lists Member is connected to form tree by support with column respectively;Miniature windmill generating component is micro- by being linked together by wire Type windmill and miniature power generating device composition.
Electric power cabinet, includes wind/light complementation controller, wind/light complementation controller by wire respectively with batteries, inversion Device connects;Batteries by multiple batteries being sequentially connected in series into.
Evaporative cooling system is made up of multiple evaporation cooling units;Evaporation cooling unit is evaporation cooling spray blower fan, filled out Material formula evaporation cooling unit or high temperature cold water unit.
Cooling spray blower fan is evaporated, includes Blower Housing, Blower Housing is respectively arranged with air intake on relative two side Mouth, air grille;Be disposed with axial flow blower and annular water pipe by air-flow direction in Blower Housing, axial flow blower and Annular water pipe is supported by support;On the tube wall of annular water pipe, multiple high pressure nozzles are evenly arranged with along inner periphery, Annular conduit is connected by water supply branch pipe with feed pipe.
Valve is provided with water supply branch pipe.
The water inlet end of coil pipe is connected with filling pipe;Coil pipe is wrapped with heat-insulation layer.
The beneficial effects of the present invention are:
(1) wind light mutual complementing power generation drive-type cooling system of the invention, evaporation cooling spray is driven using wind light mutual complementing power generation The operation of nebelwind machine, solar energy in nature and wind energy these regenerative resources are taken full advantage of, it is clean pollution-free, it is more conducive to Environmental protection.
(2) wind light mutual complementing power generation drive-type cooling system of the invention, its unique design are wind-power electricity generation system therein System imitates tree-shaped setting, and multiple branches are provided with wind generator system, and multiple miniature windmill hairs are both provided with each branch Electrical component, the wind of more low speed is not only easily caught, effectively raises wind-power electricity generation amount, its moulding uniqueness can also play beautification ring The effect in border.
(3) generated electricity in wind light mutual complementing power generation drive-type cooling system of the invention using photovoltaic solar hull cell, profit In its flexural property, make its preferably with building structure perfect adaptation;In addition, by the laying of photovoltaic solar hull cell AT STATION Ceiling can also play effect of sheltering from heat or light to the bus stopped in station, avoid the direct irradiation of sunlight.
(4) wind light mutual complementing power generation drive-type cooling system of the invention, by extracting the cryogenic energy in soil, to station Ground carries out precooling, while the hot-air in station is driven away by evaporating cooling spray blower fan, not only saves, also effective Prevent summer automobile flat tire.
Brief description of the drawings
Fig. 1 is the structural representation of wind light mutual complementing power generation drive-type cooling system of the present invention;
Fig. 2 is low temperature soil source water system and evaporation cooling spray in wind light mutual complementing power generation drive-type cooling system of the present invention The structural representation of blower fan connected mode;
Fig. 3 is the structural representation of wind and solar hybrid generating system in the wind light mutual complementing power generation drive-type cooling system of the present invention Figure;
Fig. 4 is the structure of the evaporation cooling spray blower fan used in the wind light mutual complementing power generation drive-type cooling system of the present invention Schematic diagram.
In figure, 1. photovoltaic solar hull cells, 2. miniature windmills, 3. miniature power generating devices, 4. electric power cabinets, 5. columns, 6. evaporate cooling unit, 7. air grilles, 8. warming plates, 9. thermal insulation boards, 10. cold airflows, 11. bus, 12. wind light mutual complementings Controller, 13. batteries, 14. inverters, 15. axial flow blowers, 16. annular water pipes, 17. high pressure nozzles, 18. underground pipes, 19. feed pipe, 20. valves, 21. coil pipes, 22. water pumps, 23. filling pipes, 24. first circulation water pipes, 25. second circulation water pipes, 26. water supply branch pipe, 27. supports.
Embodiment
The present invention is described in detail with reference to the accompanying drawings and detailed description.
The present invention is applied to the wind light mutual complementing power generation drive-type cooling system of bus stop, its structure such as Fig. 1 and Fig. 2 institutes Show, include the evaporative cooling system being arranged in bus stop, low temperature soil source water system and wind and solar hybrid generating system, wind Light complementary power generation system is connected with evaporative cooling system, low temperature soil source water system respectively;Evaporative cooling system and low temperature soil Source water system connection.
Low temperature soil source water system, as shown in Fig. 2 including vertical underground pipe group and coil pipe 21;Vertical underground pipe group by Underground pipe 18 of the more vertical layings in soil is formed, and one end of more underground pipes 18 is connected on first circulation water pipe 24, The other end of more underground pipes 18 is connected on second circulation water pipe 25;First circulation water pipe 24 is connected to entering for horizontal coil pipe 21 Water end (W.E.), second circulation water pipe 25 are connected to the water side of horizontal coil pipe 21;The level of coil pipe 21 is layed on thermal insulation board 9, coil pipe 21 Water inlet end be connected with filling pipe 23, be additionally provided with water pump 22 in the water inlet end of coil pipe 21, water pump 22 is mutual with scene by wire Reissue electric system connection;Coil pipe 21 is connected by feed pipe 19 with evaporative cooling system;Coil pipe 21 is embedded in soil together with thermal insulation board 9 In earth, the surrounding of thermal insulation board 9 is surrounded with warming plate 8;Feed pipe 19 elevates above the soil with warming plate 8.
Coil pipe 21 is wrapped with heat-insulation layer, and heat-insulation layer is made of the preferable material of thermal conductivity.
It is slightly higher compared with other ground of bus stop to establish the ground elevation of low temperature soil source water system, can be effective Prevent the sleet water of sleet sky from converging herein.The laying of the setting quantity of underground pipe 18 and coil pipe 21 in the water system of low temperature soil source Area is mainly what is flexibly set according to bus stop area.
Wind and solar hybrid generating system, as shown in figure 3, including wind generator system and photovoltaic solar hull cell 1, wind Force generating system and photovoltaic solar hull cell 1 are connected by wire with electric power cabinet 4 respectively, and electric power cabinet 4 passes through wire respectively It is connected with evaporative cooling system, water pump 22.
Wind generator system can be arranged as required to multiple;Wind generator system supports by column 5, wind-power electricity generation System is connected by wire with electric power cabinet 4, and electric power cabinet 4 is arranged on the outer wall of column 5.
Wind generator system, its structure is as shown in figure 1, include multiple wind power generation units, each wind power generation unit It is made up of multiple miniature windmill generating components;Multiple miniature windmill generating components are connected to a support 27 by support bar respectively On, multiple wind power generation units are connected to form tree by support 27 with column 5 respectively;Wherein miniature windmill generating component It is made up of the miniature windmill 2 and miniature power generating device 3 that are linked together by wire.
It is additionally provided with multiple illuminators on support 27, illuminator directly can be with miniature power generating device 3 by wire Open at night, used for illumination.
Photovoltaic solar hull cell 1 is layed in the outside of bus stop shade;Bus stop shade is using slim and graceful Material is made, such as:Aluminum material, avoid using glass structure, can effectively save expenditure of construction.
Electric power cabinet 4, includes wind/light complementation controller 12, wind/light complementation controller 12 by wire respectively with battery Group, inverter 14 connect;Batteries are made up of multiple batteries 13 being sequentially connected in series by wire.
Evaporative cooling system is made up of multiple evaporation cooling units 6, and the setting quantity of evaporation cooling unit 6 can be according to reality Border service condition is set, and different installation sites is arranged on according to the actual conditions in station.Evaporative cooling system uses low temperature The water at low temperature of soil source water system supply, effectively it can be waited room temperature lowering for station.
Evaporation cooling spray blower fan, material filling type evaporation cooling unit or high temperature cold water can be used by evaporating cooling unit 6 Unit.
Evaporation cooling spray blower fan therein, for its structure as shown in figure 4, including Blower Housing, Blower Housing is relative Air inlet, air grille 7 are respectively arranged with two side, the direction of air outlet is adjusted using air grille 7;In Blower Housing Axial flow blower 15 and annular water pipe 16 are disposed with by air-flow direction, axial flow blower 15 and annular water pipe 16 are logical Cross support support;On the tube wall of annular water pipe 16, multiple high pressure nozzles 17, annular conduit 16 are evenly arranged with along inner periphery It is connected by water supply branch pipe 26 with feed pipe 19;Valve 20 is provided with water supply branch pipe 26.
The present invention is applied to the wind light mutual complementing power generation drive-type cooling system of bus stop by wind and solar hybrid generating system, low Warm soil source water system and evaporative cooling system composition, its each several part role are specific as follows:
(1) wind and solar hybrid generating system, wind generator system, photovoltaic solar hull cell 1 and electric power cabinet 4 are included:
Whole wind generator system is in tree-shaped, the eminence being arranged at using column 5 in bus stop;In wind generator system Quantity can reasonably set as needed, avoid waste;Utilize the miniature windmill in multiple miniature windmill generating components 2, small wind can not only be caught, can also integrally improve wind-power electricity generation amount;In order to meet the needs of night, by configuring illumination Light fixture, beautification station night scene effect can be played.
Photovoltaic solar hull cell 1 lays shade top outer AT STATION, directly receives and is absorbed too after shining upon Positive energy, can not only make full use of building structure and space, moreover it is possible to play effect of sheltering from heat or light, it is long-term at high temperature to avoid bus It is exposed to the sun.
Electric power cabinet 4 is arranged on the outer wall of column 5, and its inside includes wind/light complementation controller 12, inverter 14 and electric power storage Pond group;The electricity that the electricity and photovoltaic solar hull cell sent by miniature windmill 2 and the combination of miniature power generating device 3 is sent is through scene It is changed into direct current after the integration of complementary controller 12 processing, being then converted to alternating current supply electrical equipment through inverter 14 (steams Send out cooling system, water pump 22), unnecessary being stored electronically in is standby in batteries.
(2) evaporative cooling system:It is made up of multiple evaporation cooling units 6;Multiple evaporation cooling units 6 are respectively positioned on bus Stand below shade, and cold wind is sent towards the bus 11 stopped in bus stop, the evaporation cooling used in the present invention Unit is evaporation cooling spray blower fan.
(3) low temperature soil source water system:Major part is arranged at subsurface corresponding to shade, its internal vertical underground pipe Vertical laying is in soil by way of the well-digging of ground source for group, water and deep low-temperature soil heat exchange in underground pipe 18, underground pipe 18 In water it is cooled after precooling carried out to station ground by coil pipe 21;In addition underground pipe can also be cooled down by coil pipe 21 for evaporation System provides cold water, coordinates evaporative cooling system to reach good cooling-down effect.
The work that the present invention is applied to the wind light mutual complementing power generation drive-type cooling system of bus stop is specific as follows:
The work of wind and solar hybrid generating system is as follows:
The wind caught using miniature windmill 2 in nature drives wind generator system to generate electricity;Photovoltaic solar hull cell 1 Solar energy is converted into by the radiation for receiving sunshine by electric energy, then after the integration of wind/light complementation controller 12 processing, become Galvanic current energy, then required alternating current is converted into by inverter 14, supply in water pump 22 and evaporative cooling system Multiple evaporation cooling units use, and unnecessary electrical power storage is standby in batteries.
Evaporative cooling system cooperates with low temperature soil source water system respectively, for the ground precooling of low temperature soil source and steaming The but mist-spraying cooling fan that feels cold cools, and specific works are as follows:
Water in more underground pipes 18 and deep low-temperature soil heat exchange, by being laid in after water in underground pipe 18 is cooled The coil pipe 21 that subsurface corresponding to shade is set carries out precooling to station ground, as shown in figure 1, using cold airflow 10 to tire Cooled, prevent blowout;Another part water at low temperature supplies multiple evaporations by feed pipe 19 and multiple water supply branch pipes 26 Cooling spray blower fan, sprayed and axle stream with mist by high pressure nozzle 17 into the water at low temperature in evaporation cooling spray blower fan The wind facies that blower fan 15 comes out is met and directly carries out subtracting enthalpy temperature-fall period, and it is empty cold air to be blown into the heat for driving away to come in the external world in station Gas, if lacking water source, supplemented by filling pipe 23, the power of whole system is provided by water pump 22.
The present invention is applied to the wind light mutual complementing power generation drive-type cooling system of bus stop, solves cooling system electrical outdoor The problem of power is supplied;Effectively it can not only be cooled for bus stop, moreover it is possible to which automobile tire is quick-fried when preventing summer high temperature The accident split.

Claims (8)

1. suitable for the wind light mutual complementing power generation drive-type cooling system of bus stop, it is characterised in that include and be arranged at public transport Evaporative cooling system, low temperature soil source water system and wind and solar hybrid generating system in station, the wind and solar hybrid generating system It is connected respectively with evaporative cooling system, low temperature soil source water system;The evaporative cooling system connects with low temperature soil source water system Connect;
Low temperature soil source water system, include vertical underground pipe group and coil pipe (21);
The vertical underground pipe group is made up of underground pipe (18) of the more vertical layings in soil, and the one of more underground pipes (18) End is connected on first circulation water pipe (24), and the other end of the more underground pipes (18) is connected to second circulation water pipe (25) On;
The first circulation water pipe (24) is connected to the water inlet end of horizontal coil pipe (21), and the second circulation water pipe (25) is connected to The water side of horizontal coil pipe (21);Coil pipe (21) level is layed on thermal insulation board (9), and the water inlet end of the coil pipe (21) is set Water pump (22) is equipped with, the water pump (22) is connected by wire with wind and solar hybrid generating system;The coil pipe (21) passes through water supply Pipe (19) is connected with evaporative cooling system;
The coil pipe (21) is embedded in soil together with thermal insulation board (9), and the surrounding of the thermal insulation board (9) is surrounded with warming plate (8); The feed pipe (19) is elevated above the soil with warming plate (8);
The water inlet end of the coil pipe (21) is connected with filling pipe (23);The coil pipe (21) is wrapped with heat-insulation layer.
2. wind light mutual complementing power generation drive-type cooling system according to claim 1, it is characterised in that the wind light mutual complementing hair Electric system, include wind generator system and photovoltaic solar hull cell (1), photovoltaic solar hull cell (1) paving On the outside of the shade of bus stop;Wind generator system and the photovoltaic solar hull cell (1) respectively by wire with Electric power cabinet (4) connects;
The electric power cabinet (4) is connected by wire with evaporative cooling system, water pump (22) respectively.
3. wind light mutual complementing power generation drive-type cooling system according to claim 2, it is characterised in that the wind-power electricity generation system System is provided with multiple;
The wind generator system is supported by column (5), and the wind generator system is connected by wire with electric power cabinet (4), Electric power cabinet (4) is arranged on the outer wall of column (5).
4. wind light mutual complementing power generation drive-type cooling system according to claim 3, it is characterised in that the wind-power electricity generation system System, includes multiple wind power generation units, each wind power generation unit is made up of multiple miniature windmill generating components;It is multiple miniature Windmill generating component is connected on a support (27) by support bar respectively;
The multiple wind power generation unit is connected to form tree by support (27) with column (5) respectively;
The miniature windmill generating component is by the miniature windmill (2) and miniature power generating device (3) group that are linked together by wire Into.
5. wind light mutual complementing power generation drive-type cooling system according to claim 3, it is characterised in that the electric power cabinet (4), Include wind/light complementation controller (12), the wind/light complementation controller (12) by wire respectively with batteries, inverter (14) connect;
The batteries are made up of multiple batteries (13) being sequentially connected in series.
6. wind light mutual complementing power generation drive-type cooling system according to claim 2, it is characterised in that the evaporation cooling system System is made up of multiple evaporation cooling units (6);
The evaporation cooling unit (6) is evaporation cooling spray blower fan, material filling type evaporation cools down unit or high temperature cold water unit.
7. wind light mutual complementing power generation drive-type cooling system according to claim 6, it is characterised in that the evaporation cooling spray Nebelwind machine, include Blower Housing, air inlet, air grille (7) are respectively arranged with the relative two side of Blower Housing;
In the Blower Housing axial flow blower (15) and annular water pipe (16), the axle are disposed with by air-flow direction Flow fan (15) and annular water pipe (16) are supported by support;It is equal along inner periphery on the tube wall of annular water pipe (16) Even to be provided with multiple high pressure nozzles (17), the annular conduit (16) is connected by water supply branch pipe (26) with feed pipe (19).
8. wind light mutual complementing power generation drive-type cooling system according to claim 7, it is characterised in that the water supply branch pipe (26) valve (20) is provided with.
CN201510109061.6A 2015-03-12 2015-03-12 Suitable for the wind light mutual complementing power generation drive-type cooling system of bus stop Expired - Fee Related CN104833016B (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106828721A (en) * 2017-01-23 2017-06-13 西安工程大学 Based on the bicycle use spray cooling system that wind light mutual complementing drives

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4346569A (en) * 1978-10-13 1982-08-31 Yuan Shao W Natural ice for cooling energy
US4674561A (en) * 1985-03-29 1987-06-23 Kelley Norman B Air temperature control system
CN203116192U (en) * 2013-01-15 2013-08-07 西安工程大学 Soil source auxiliary plate-fin indirect-direct two-stage evaporative cooling air conditioner unit
CN103574811A (en) * 2013-11-18 2014-02-12 西安工程大学 Automatic-control type evaporative cooling air conditioner system capable of achieving solar power generation and suitable for bus station
CN103743010A (en) * 2013-12-18 2014-04-23 西安工程大学 Air conditioning unit combining wind power generation with evaporative cooling
CN103900177A (en) * 2014-03-13 2014-07-02 西安工程大学 Evaporative cooling air-conditioning system with power provided based on wind-solar hybrid power generation

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4346569A (en) * 1978-10-13 1982-08-31 Yuan Shao W Natural ice for cooling energy
US4674561A (en) * 1985-03-29 1987-06-23 Kelley Norman B Air temperature control system
CN203116192U (en) * 2013-01-15 2013-08-07 西安工程大学 Soil source auxiliary plate-fin indirect-direct two-stage evaporative cooling air conditioner unit
CN103574811A (en) * 2013-11-18 2014-02-12 西安工程大学 Automatic-control type evaporative cooling air conditioner system capable of achieving solar power generation and suitable for bus station
CN103743010A (en) * 2013-12-18 2014-04-23 西安工程大学 Air conditioning unit combining wind power generation with evaporative cooling
CN103900177A (en) * 2014-03-13 2014-07-02 西安工程大学 Evaporative cooling air-conditioning system with power provided based on wind-solar hybrid power generation

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