CN103994587B - A kind of mirror array solar energy heat collector - Google Patents

A kind of mirror array solar energy heat collector Download PDF

Info

Publication number
CN103994587B
CN103994587B CN201410222216.2A CN201410222216A CN103994587B CN 103994587 B CN103994587 B CN 103994587B CN 201410222216 A CN201410222216 A CN 201410222216A CN 103994587 B CN103994587 B CN 103994587B
Authority
CN
China
Prior art keywords
reflective mirror
mirror
mirror array
heat collector
solar energy
Prior art date
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
CN201410222216.2A
Other languages
Chinese (zh)
Other versions
CN103994587A (en
Inventor
杨发
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201410222216.2A priority Critical patent/CN103994587B/en
Publication of CN103994587A publication Critical patent/CN103994587A/en
Application granted granted Critical
Publication of CN103994587B publication Critical patent/CN103994587B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/47Mountings or tracking

Landscapes

  • Optical Elements Other Than Lenses (AREA)

Abstract

The invention provides a kind of mirror array solar energy heat collector, comprise mirror array and heat collector (18), described mirror array contains multiple reflective mirror (15), the back side of reflective mirror (15) is provided with the guiding mechanism of the angle that can adjust reflective mirror (15) sunray (21) the directive heat collector (18) that reflective mirror (15) is reflected, described guiding mechanism comprises the mirror array main support (1) for supporting reflective mirror (15), for multiple adjustment unit of adjusting reflective mirror (15) angle and the regulating connecting rod (6) be connected with adjustment unit.The mirror array solar energy heat collector of this vertical structure expands the receiving area of solar energy, thus can improve the service efficiency of solar energy, is specially adapted to the warming phase that high latitude area sun low angle irradiates.In addition, this mirror array is that vertical type is arranged, and can also save floor occupying area.

Description

A kind of mirror array solar energy heat collector
Technical field
The present invention relates to technical field of solar energy utilization equipment, particularly a kind of device utilizing mirror array to be generated heat by solar energy collecting of vertical structure.
Background technology
Along with the minimizing gradually of fossil fuel, people need to greatly develop regenerative resource.Solar energy is inexhaustible regenerative resource.Because solar energy density is low, existing solar energy heat collector, efficiency as thermal-collecting tube type solar energy heat collector is lower, especially in the winter time or sunshine, situation was bad time, can not well satisfy the demands, solar energy receiving device adopts high-order installation mostly in addition, cause windward side larger, heat loss is comparatively large, so need to adopt the mode of optically focused to improve the density of solar energy, thus improves the utilization ratio of solar energy.
Summary of the invention
In order to solve the inefficient technical problem of Solar use in prior art.The invention provides a kind of mirror array solar energy heat collector, this mirror array solar energy heat collector expands the receiving area of solar energy, thus can improve the service efficiency of solar energy.
The present invention is the technical scheme solving the employing of its technical problem: a kind of mirror array solar energy heat collector, comprise mirror array and heat collector, described mirror array contains multiple reflective mirror, the back side of reflective mirror is provided with the angle that can adjust reflective mirror and makes the guiding mechanism of the sunray directive heat collector of mirror reflection, and described guiding mechanism comprises mirror array main support for supporting reflective mirror, for multiple adjustment unit of adjusting reflective mirror angle and the regulating connecting rod be connected with adjustment unit.
Reflective mirror in this mirror array is arranged with the arrangement of the ranks of rule, and multirow reflective mirror is arranged with direction from low to high.
Mirror array main support is between regulating connecting rod and reflective mirror, described adjustment unit comprises reflective mirror fixed mount, reflective mirror angular adjustment bar and the projection being arranged on regulating connecting rod surface, described projection is focusing slideway towards the surface of reflective mirror, one end of reflective mirror fixed mount is fixedly connected with mirror array main support, the other end and the reflective mirror of reflective mirror fixed mount are rotationally connected, one end and the reflective mirror of reflective mirror angular adjustment bar are rotationally connected, the other end of reflective mirror angular adjustment bar contacts with the focusing slideway of described lug surface, when regulating connecting rod moves along the length direction of regulating connecting rod, the length direction that reflective mirror angular adjustment bar also can be crossed along reflective mirror angular adjustment bar moves.
Reflective mirror angular adjustment bar is connected with mirror array main support by sliding bearing, and reflective mirror angular adjustment bar can move back and forth along the direction perpendicular to mirror array main support.
The other end of reflective mirror angular adjustment bar abuts with the focusing slideway of described lug surface, is provided with spring between reflective mirror and mirror array main support, and one end of spring is connected with reflective mirror, and the other end of spring is connected with mirror array main support.
The focusing slideway of described lug surface contains the chute that cross section is T-shaped, and size and shape and the chute of the other end of reflective mirror angular adjustment bar match, and the other end of reflective mirror angular adjustment bar is plugged in described chute.
Reflective mirror angular adjustment bar is vertical with mirror array main support, and mirror array main support is parallel with regulating connecting rod.
Described guiding mechanism also comprises drive unit and sunshine automatic tracing device, and this drive unit can drive regulating connecting rod to move along the length direction of regulating connecting rod, and sunshine automatic tracing device is arranged between described mirror array and heat collector.
Described adjustment unit comprises reflective mirror adjusting rod, and one end and the regulating connecting rod of reflective mirror adjusting rod are rotationally connected, and the other end of reflective mirror adjusting rod is connected with reflective mirror, and reflective mirror and mirror array main support are rotationally connected.
The other end of reflective mirror adjusting rod is provided with reflective mirror installation shaft, reflective mirror installation shaft is fixedly connected with reflective mirror, reflective mirror installation shaft is provided with hole, mirror array main support is fixedly connected with focusing fixed screw, focusing fixed screw is plugged in described hole, and reflective mirror adjusting rod and reflective mirror can rotate for axle with fixed screw of focusing.
The invention has the beneficial effects as follows: the mirror array solar energy heat collector of this vertical structure expands the receiving area of solar energy, thus the service efficiency of solar energy can be improved, be specially adapted to the warming phase that high latitude area sun low angle irradiates.In addition, this mirror array is that vertical type is arranged, and can also save floor occupying area.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, mirror array solar energy heat collector of the present invention is described in further detail.
Fig. 1 is the structural representation of the first mirror array solar energy heat collector.
Fig. 2 is the enlarged diagram at A position in Fig. 1.
Fig. 3 is the structural representation of the second mirror array solar energy heat collector.
Fig. 4 is the enlarged diagram at B position in Fig. 3.
Fig. 5 is the schematic perspective view of mirror array.
Fig. 6 is the use schematic diagram of mirror array solar energy heat collector.
Wherein 1. mirror array main support, 2. sliding bearings, 3. elevation angle fixed support, 4. focalizer, 5. reflective mirror angular adjustment bar, 6. regulating connecting rod, 7. motor, 8. motor fixed rack, 9. synchronous-focusing universal driving shaft, 10. universal driving shaft fixed support, 11. reflective mirror connecting axles, 12. reflective mirror fixed axis, 13. focusing slideways, 14. reflective mirror fixed mounts, 15. reflective mirrors, 16. sunshine automatic tracing devices, 17. automatic tracing device supports, 18. heat collectors, 19. collector brackets, 20. bases, 21. sunrays, 22. springs;
32. motors, 33. universal driving shaft focusing drive rods, 34. elevation angle fixed supports, 35. synchronous-focusing universal driving shafts, 36. adjusting rod connecting axles, 37. reflective mirror adjusting rods, 38. reflective mirror installation shaft, 39. focusing fixed screws;
51. accumulation of energy stations, 52. circulating pumps, 53. heat exchanging water storage tanks, 54. radiators, 55. users.
Detailed description of the invention
Below in conjunction with accompanying drawing, mirror array solar energy heat collector of the present invention is described in further detail.A kind of mirror array solar energy heat collector, comprise mirror array and heat collector 18, described mirror array contains multiple reflective mirror 15, the back side of reflective mirror 15 is provided with the angle that can adjust reflective mirror 15 and the guiding mechanism of the whole directive heat collector 18 of the sunray 21 that reflective mirror 15 is reflected, described guiding mechanism comprises mirror array main support 1 for supporting reflective mirror 15, for multiple adjustment unit of adjusting reflective mirror 15 angle and the regulating connecting rod 6 be connected with adjustment unit, as shown in figures 1 and 3.
As shown in Figure 1, when sun altitude is 31 °, sunray 21 converges at heat collector 18 after the reflective mirror 15 in described mirror array reflects, heat collector 18 is existing apparatus, due to the existence of mirror array, expand the receiving area of solar energy, thus can improve the service efficiency of solar energy widely, after having had this mirror array, this mirror array solar energy heat collector is enhanced relative to the efficiency of existing solar energy heat collection pipe.When sun altitude changes, described guiding mechanism can adjust the angle of each reflective mirror 15 in described mirror array, makes sunray 21 can converge at heat collector 18 all the time, thus improves the service efficiency of solar energy further.Be specially adapted to the warming phase that high latitude area sun low angle irradiates.
In order to reduce the floor space of this mirror array, the reflective mirror 15 in this mirror array neatly to be arranged setting with the ranks of rule, and namely as shown in Figure 5, in the horizontal direction, containing multirow reflective mirror 15 in this mirror array, often row is containing multiple reflective mirror 15; In the vertical direction, containing multiple row reflective mirror 15 in this mirror array, often row are containing multiple reflective mirror 15.Multirow reflective mirror 15 is arranged with direction from low to high, and namely reflective mirror 15 a line is higher than a line, thus reduces the floor space of this mirror array.
Concrete, described guiding mechanism comprises the mirror array main support 1 for supporting reflective mirror 15 and the adjustment unit for adjusting each reflective mirror 15 angle.This adjustment unit and reflective mirror 15 one_to_one corresponding, adjustment unit can regulate the angle of reflective mirror 15 corresponding thereto and horizontal plane, thus when the Angulation changes of incident ray after, and reflection ray can directive heat collector 18 all the time, raising collecting efficiency.In order to reduce the floor space of this mirror array, mirror array main support 1 is arranged in upright mode, and as shown in Figure 1, mirror array main support 1 is 76 ° with the angle of horizontal plane, and reflective mirror 15 is all arranged on mirror array main support 1.
Described adjustment unit can have at least two kinds of implementations: when described adjustment unit is for the first, mirror array main support 1 is between regulating connecting rod 6 and reflective mirror 15, described adjustment unit comprises reflective mirror fixed mount 14, reflective mirror angular adjustment bar 5 and the projection being arranged on regulating connecting rod 6 surface, projection is fixedly connected with regulating connecting rod 6, described projection is focusing slideway 13 towards the surface of reflective mirror 15, one end of reflective mirror fixed mount 14 is fixedly connected with mirror array main support 1, the other end and the reflective mirror 15 of reflective mirror fixed mount 14 are rotationally connected, one end and the reflective mirror 15 of reflective mirror angular adjustment bar 5 are rotationally connected, the other end of reflective mirror angular adjustment bar 5 contacts with the focusing slideway 13 of described lug surface, when regulating connecting rod 6 moves along the length direction of regulating connecting rod 6, the length direction that reflective mirror angular adjustment bar 5 also can be crossed along reflective mirror angular adjustment bar 5 moves.As shown in Figure 2, reflective mirror 15 just can be made to rotate after such reflective mirror angular adjustment bar 5 moves, thus regulate the angle of reflective mirror 15 and horizontal plane, thus change the angle of reflection ray, the light that all reflective mirrors 15 are reflected all the time can directive heat collector 18.
Concrete, as shown in Figure 2, the other end of reflective mirror fixed mount 14 is provided with reflective mirror fixed axis 12, and the back side of reflective mirror 15 is fixedly connected with the first axle sleeve, and reflective mirror fixed axis 12 is inserted in the first axle sleeve.One end of reflective mirror angular adjustment bar 5 is provided with reflective mirror connecting axle 11, the back side of reflective mirror 15 is fixedly connected with the second axle sleeve, reflective mirror connecting axle 11 is inserted in the second axle sleeve, just can make reflective mirror 15 with reflective mirror fixed axis 12 for axle rotates after such reflective mirror angular adjustment bar 5 moves left and right.
Described projection is focusing slideway 13 towards the surface of reflective mirror 15, the other end of reflective mirror angular adjustment bar 5 can slide on focusing slideway 13, focusing slideway 13 can be inclined-plane, the concrete angle of inclination of each focusing slideway 13 needs the height according to concrete heat collector 18, heat collector 18 is specifically arranged with the parameter such as the distance of reflective mirror 15, the excursion of sun altitude, in any case make incident ray change, its reflection ray all the time can directive heat collector 18 after the reflection of reflective mirror 15.Or focusing slideway 13 also can be cambered surface.In addition, can better directive heat collector 18 for the ease of whole reflection ray, reflective mirror angular adjustment bar 5 is provided with the focalizer 4 for regulating reflective mirror angular adjustment bar 5 length.
Reflective mirror angular adjustment bar 5 is connected with mirror array main support 1 by sliding bearing 2, and reflective mirror angular adjustment bar 5 can move back and forth along the direction perpendicular to mirror array main support 1.The length of reflective mirror angular adjustment bar 5 can be regulated by focalizer 4, the two ends of focalizer 4 are provided with screwed hole, reflective mirror angular adjustment bar 5 is two screw rods being inserted in screwed hole respectively, can change the length of reflective mirror angular adjustment bar 5 by rotary screw or focalizer 4.
The other end of reflective mirror angular adjustment bar 5 abuts with the focusing slideway 13 of described lug surface, in order to improve the degree of regulation of reflective mirror angular adjustment bar 5, is provided with spring 22 between reflective mirror 15 and mirror array main support 1.As shown in Figure 2, one end of spring 22 is connected with reflective mirror 15, and the other end of spring 22 is connected with mirror array main support 1, thus reflective mirror angular adjustment bar 5 can be abutted with focusing slideway 13 all the time.Or the focusing slideway 13 of described lug surface is the chute of T-shaped containing cross section, and size and shape and the chute of the other end of reflective mirror angular adjustment bar 5 match, and the other end of reflective mirror angular adjustment bar 5 is plugged in described chute.Due to the cooperation of shape, the other end of reflective mirror angular adjustment bar 5 can be fixed in described chute and to slide.
In addition, reflective mirror angular adjustment bar 5 is vertical with mirror array main support 1, and mirror array main support 1 is parallel with regulating connecting rod 6, and reflective mirror fixed mount 14 is vertical with mirror array main support 1, as shown in Figure 2.
Described guiding mechanism also comprises drive unit, sunshine automatic tracing device 16 and control unit, this drive unit can drive regulating connecting rod 6 to move along the length direction of regulating connecting rod 6, and sunshine automatic tracing device 16 is arranged between described mirror array and heat collector 18.Sunshine automatic tracing device 16 may be used for the angle of reflection automatically measuring the incidence angle of sunshine or the light of reflective mirror 15 reflection, when the Angulation changes of incident ray, the angle of reflection of the light that the reflective mirror 15 measured can reflect by existing sunshine automatic tracing device 16 is sent to described control unit, this control unit controls this drive unit makes driving regulating connecting rod 6 along the distance of the length direction movement of regulating connecting rod 6, namely as shown in Figure 2, after sunshine automatic tracing device 16 detects the Angulation changes of the light that reflective mirror 15 reflects, this drive unit makes driving regulating connecting rod 6 move up or down certain distance, then reflective mirror angular adjustment bar 5 also will move along left or right, reflective mirror 15 rotates the sunshine making reflection thereupon can directive heat collector 18 all the time.
The synchronous-focusing universal driving shaft 9 that drive unit comprises motor 7 and is connected with motor 7, motor 7 and synchronous-focusing universal driving shaft 9 evenly existing apparatus.After sunshine automatic tracing device 16 detects the Angulation changes of the light that reflective mirror 15 reflects, this control unit can control the rotational angle of motor 7, synchronous-focusing universal driving shaft 9 makes regulating connecting rod 6 move up or down the distance of setting, thus completes the angular adjustment of reflective mirror 15.This drive unit also can adopt other devices such as hydraulic cylinder, as long as regulating connecting rod 6 can be driven to move back and forth along its length, and this displacement is controlled, and this content is prior art, no longer repeats.Drive unit also comprises motor fixed rack 8 and universal driving shaft fixed support 10.
In addition, the device in the present embodiment also comprises: elevation angle fixed support 3, automatic tracing device support 17, collector bracket 19, base 20.The effect of elevation angle fixed support 3 mainly regulates the angle of inclination of mirror array main support 1, ensures that the reflective mirror of high latitude area at all seasons in (especially winter) mirror array can both receive and utilize solar energy.
Described adjustment unit can have at least two kinds of implementations: when described adjustment unit is the second, described adjustment unit comprises reflective mirror adjusting rod 37, one end and the regulating connecting rod 6 of reflective mirror adjusting rod 37 are rotationally connected, the other end of reflective mirror adjusting rod 37 is connected with reflective mirror 15, reflective mirror 15 and mirror array main support 1 are rotationally connected, as shown in Figure 3 and Figure 4.After such regulating connecting rod 6 moves, drive reflective mirror adjusting rod 37 is rotated, then drive reflective mirror 15 to rotate to change the angle of reflective mirror 15 and horizontal plane, thus change the angle of reflection ray, make it all the time can directive heat collector 18.
As shown in Figure 4, the other end of reflective mirror adjusting rod 37 is provided with reflective mirror installation shaft 38, reflective mirror installation shaft 38 is fixedly connected with reflective mirror 15, reflective mirror installation shaft 38 is provided with hole, mirror array main support 1 is fixedly connected with focusing fixed screw 39, focusing fixed screw 39 is plugged in described hole, and reflective mirror adjusting rod 37 and reflective mirror 15 can with fixed screw 39 of focusing for axle rotations.Regulating connecting rod 6 is provided with adjusting rod connecting axle 36, and one end and the adjusting rod connecting axle 36 of reflective mirror adjusting rod 37 are rotationally connected.After such regulating connecting rod 6 is up or down mobile by drives reflective mirror adjusting rod 37 together with reflective mirror 15 clockwise or rotate counterclockwise, thus the angle of change reflection ray, makes it all the time can directive heat collector 18.Can better directive heat collector 18 for the ease of whole reflection ray, reflective mirror adjusting rod 37 is provided with the focalizer 4 for regulating reflective mirror adjusting rod 37 length.
Described guiding mechanism also comprises drive unit, sunshine automatic tracing device 16 and control unit, this drive unit can drive regulating connecting rod 6 to move along the length direction of regulating connecting rod 6, and sunshine automatic tracing device 16 is arranged between described mirror array and heat collector 18.Sunshine automatic tracing device 16 is connected with mirror array main support 1, sunshine automatic tracing device 16 may be used for the angle of reflection automatically measuring the incidence angle of sunshine or the light of reflective mirror 15 reflection, when the Angulation changes of incident ray, the angle of reflection of the light that the reflective mirror 15 measured can reflect by existing sunshine automatic tracing device 16 is sent to described control unit, this control unit controls this drive unit makes driving regulating connecting rod 6 move up or down certain distance, then reflective mirror adjusting rod 37 and reflective mirror 15 rotate the sunshine making reflection thereupon can directive heat collector 18 all the time.
Drive unit comprises motor 32 and the universal driving shaft that is connected with motor 32 is focused drive rod 33 and synchronous-focusing universal driving shaft 35, universal driving shaft focusing drive rod 33 and synchronous-focusing universal driving shaft 35 are existing apparatus.After sunshine automatic tracing device 16 detects the Angulation changes of the light that reflective mirror 15 reflects, this control unit can control the rotational angle of motor 32, universal driving shaft focusing drive rod 33 and synchronous-focusing universal driving shaft 35 make regulating connecting rod 6 move up or down the distance of setting, thus complete the angular adjustment of reflective mirror 15.This drive unit also can adopt other devices such as hydraulic cylinder, as long as regulating connecting rod 6 can be driven to move back and forth along its length, and this displacement is controlled, and this content is prior art, no longer repeats.
In addition, the device in the present embodiment also comprises: elevation angle fixed support 34, automatic tracing device support 17, collector bracket 19, base 20.
For the ease of the Collection utilization of solar energy, the height of this heat collector 18 is half of middle reflective mirror 15 average height of this mirror array.As in Fig. 1, if reflective mirror 15 average height is 1.5 meters, then the height of this heat collector 18 is 0.75 meter.This mirror array is equal with the height of mirror array to the distance of this heat collector 18, if the height of mirror array is 1.5 meters, this mirror array is 1.5 meters to the distance of this heat collector 18.
During use, heat collector 18 is connected by circulation line with accumulation of energy station 51, and the heat that heat collector 18 produces to be pumped in accumulation of energy station 51 by circulating pump 52 and to store.The heat exchanging water storage tank 53 of user 55 is connected with accumulation of energy station 51 with radiator 54, can take at any time, as shown in Figure 6 when needing.
This mirror array solar energy heat collector not only expands the collection area of solar energy, improve the service efficiency of solar energy, can also according to the change of sun altitude throughout the year accommodation reflex angle automatically, thus further improve the service efficiency of solar energy.
The above, be only specific embodiments of the invention, can not limit the scope that invention implements with it, so the displacement of its equivalent assemblies, or the equivalent variations done according to scope of patent protection of the present invention and modification, all still should belong to the category that this patent is contained.In addition, the technical characteristic in the present invention and all can using by independent assortment between technical characteristic, between technical characteristic and technical scheme, between technical scheme and technical scheme.

Claims (7)

1. a mirror array solar energy heat collector, it is characterized in that, described mirror array solar energy heat collector comprises mirror array and heat collector (18), described mirror array contains multiple reflective mirror (15), the back side of reflective mirror (15) is provided with the guiding mechanism of the angle that can adjust reflective mirror (15) sunray (21) the directive heat collector (18) that reflective mirror (15) is reflected, described guiding mechanism comprises the mirror array main support (1) for supporting reflective mirror (15), for multiple adjustment unit of adjusting reflective mirror (15) angle and the regulating connecting rod (6) be connected with adjustment unit,
Mirror array main support (1) is positioned between regulating connecting rod (6) and reflective mirror (15), described adjustment unit comprises reflective mirror fixed mount (14), reflective mirror angular adjustment bar (5) and be arranged on regulating connecting rod (6) surface projection, described projection is focusing slideway (13) towards the surface of reflective mirror (15), one end of reflective mirror fixed mount (14) is fixedly connected with mirror array main support (1), the other end and the reflective mirror (15) of reflective mirror fixed mount (14) are rotationally connected, one end and the reflective mirror (15) of reflective mirror angular adjustment bar (5) are rotationally connected, the other end of reflective mirror angular adjustment bar (5) contacts with the focusing slideway (13) of described lug surface, when regulating connecting rod (6) moves along the length direction of regulating connecting rod (6), reflective mirror angular adjustment bar (5) also can move along the length direction of reflective mirror angular adjustment bar (5).
2. mirror array solar energy heat collector according to claim 1, is characterized in that: the reflective mirror (15) in this mirror array is arranged with the arrangement of the ranks of rule, and multirow reflective mirror (15) is arranged with direction from low to high.
3. mirror array solar energy heat collector according to claim 1, it is characterized in that: reflective mirror angular adjustment bar (5) is connected with mirror array main support (1) by sliding bearing (2), reflective mirror angular adjustment bar (5) can move back and forth along the direction perpendicular to mirror array main support (1).
4. mirror array solar energy heat collector according to claim 1, it is characterized in that: the other end of reflective mirror angular adjustment bar (5) abuts with the focusing slideway (13) of described lug surface, spring (22) is provided with between reflective mirror (15) and mirror array main support (1), one end of spring (22) is connected with reflective mirror (15), and the other end of spring (22) is connected with mirror array main support (1).
5. mirror array solar energy heat collector according to claim 1, it is characterized in that: the focusing slideway (13) of described lug surface is the chute of T-shaped containing cross section, size and shape and the chute of the other end of reflective mirror angular adjustment bar (5) match, and the other end of reflective mirror angular adjustment bar (5) is plugged in described chute.
6. mirror array solar energy heat collector according to claim 1, it is characterized in that: reflective mirror angular adjustment bar (5) is vertical with mirror array main support (1), mirror array main support (1) is parallel with regulating connecting rod (6).
7. mirror array solar energy heat collector according to claim 1, it is characterized in that: described guiding mechanism also comprises drive unit and sunshine automatic tracing device (16), this drive unit can drive regulating connecting rod (6) to move along the length direction of regulating connecting rod (6), and sunshine automatic tracing device (16) is arranged between described mirror array and heat collector (18).
CN201410222216.2A 2014-05-23 2014-05-23 A kind of mirror array solar energy heat collector Expired - Fee Related CN103994587B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410222216.2A CN103994587B (en) 2014-05-23 2014-05-23 A kind of mirror array solar energy heat collector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410222216.2A CN103994587B (en) 2014-05-23 2014-05-23 A kind of mirror array solar energy heat collector

Publications (2)

Publication Number Publication Date
CN103994587A CN103994587A (en) 2014-08-20
CN103994587B true CN103994587B (en) 2015-12-02

Family

ID=51308831

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410222216.2A Expired - Fee Related CN103994587B (en) 2014-05-23 2014-05-23 A kind of mirror array solar energy heat collector

Country Status (1)

Country Link
CN (1) CN103994587B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107465385A (en) * 2017-09-06 2017-12-12 合肥凌山新能源科技有限公司 A kind of heat energy power-generating system based on solar energy focus utilization

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2809507Y (en) * 2005-06-25 2006-08-23 宋立波 Adjustable reflector for horizontally arranged solar heat collector
CN101521477A (en) * 2007-12-04 2009-09-02 张玉良 Low-cost solar energy tracking and condensing power generation method
CN201303297Y (en) * 2008-10-23 2009-09-02 科强能源系统工程股份有限公司 Solar tracking power station with solar connection rod
CN102799189A (en) * 2012-08-25 2012-11-28 苏州金山太阳能科技有限公司 Linkage-type single-shaft solar tracker system and rotation driving mechanism thereof
CN203837297U (en) * 2014-05-23 2014-09-17 杨发 Solar heat collection device with reflective mirror array

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2809507Y (en) * 2005-06-25 2006-08-23 宋立波 Adjustable reflector for horizontally arranged solar heat collector
CN101521477A (en) * 2007-12-04 2009-09-02 张玉良 Low-cost solar energy tracking and condensing power generation method
CN201303297Y (en) * 2008-10-23 2009-09-02 科强能源系统工程股份有限公司 Solar tracking power station with solar connection rod
CN102799189A (en) * 2012-08-25 2012-11-28 苏州金山太阳能科技有限公司 Linkage-type single-shaft solar tracker system and rotation driving mechanism thereof
CN203837297U (en) * 2014-05-23 2014-09-17 杨发 Solar heat collection device with reflective mirror array

Also Published As

Publication number Publication date
CN103994587A (en) 2014-08-20

Similar Documents

Publication Publication Date Title
CN204906253U (en) Track reflective album of solar electric system
CN205792406U (en) A kind of mechanical mechanism at adjustable photovoltaic support inclination angle
US10148221B2 (en) Solar energy light collecting device and system thereof
CN102043228B (en) Stable support device for autorotation-elevation angle tracking mode heliostat
CN109327183B (en) Solar power generation device
CN106546013A (en) A kind of solar-energy light collector and heat utilization system based on Fresnel Lenses
CN201945729U (en) Stable support device of heliostat with spinning-elevation tracking mode
CN203837297U (en) Solar heat collection device with reflective mirror array
CN103994587B (en) A kind of mirror array solar energy heat collector
JP2015056436A (en) Sunbeam condensation power generation device
KR101379445B1 (en) Solr lightand heat hybrid collecting System having a solar tracker
CN2451975Y (en) Automatic tracking solar water heater
CN210624963U (en) Novel heat collector for solar water heating system
CN203928448U (en) A kind of gradient type linear fresnel solar utilizes system
CN216281658U (en) Phase-change heat storage and supply device
CN202792604U (en) Solar energy water heating and electrical power generating system
KR102081890B1 (en) Complex System for Photovoltaic Panel And Solar Collector
CN201383765Y (en) Automatic tracking control device of solar cell
CN214333081U (en) Heat collecting device for solar house
JP5869284B2 (en) Solar collector
CN208269442U (en) A kind of adjustable solar energy equipment of receiving area
KR101441617B1 (en) Solar power plant having angle adjustment device
CN208859917U (en) A kind of solar energy light gathering and heat collecting system
CN107943111B (en) Heliostat
CN205827246U (en) A kind of raster pattern heliostat

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151202

Termination date: 20170523