CN206517354U - A kind of oblique uniaxiality tracking Photovoltaic array support of roof type - Google Patents

A kind of oblique uniaxiality tracking Photovoltaic array support of roof type Download PDF

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Publication number
CN206517354U
CN206517354U CN201720220996.6U CN201720220996U CN206517354U CN 206517354 U CN206517354 U CN 206517354U CN 201720220996 U CN201720220996 U CN 201720220996U CN 206517354 U CN206517354 U CN 206517354U
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CN
China
Prior art keywords
support
planker
roof
photovoltaic
photovoltaic module
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201720220996.6U
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Chinese (zh)
Inventor
张波
张铁锋
郭立鹏
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Hebei Avenue To Jane Amperex Technology Ltd
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Hebei Avenue To Jane Amperex Technology Ltd
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Priority to CN201720220996.6U priority Critical patent/CN206517354U/en
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Publication of CN206517354U publication Critical patent/CN206517354U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • 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
    • Y02B10/10Photovoltaic [PV]
    • 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
    • Y02E10/50Photovoltaic [PV] energy

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  • Roof Covering Using Slabs Or Stiff Sheets (AREA)
  • Photovoltaic Devices (AREA)

Abstract

The utility model discloses a kind of oblique uniaxiality tracking Photovoltaic array support of roof type, south-north direction is on roof, including support component, photovoltaic module and torsion power component, support component includes the first crossbeam and second cross beam for being divided into south and north flanks and be arrangeding in parallel, provided with support vertical beam between second cross beam and roof, many support plankers are evenly equipped between first crossbeam and second cross beam, every support planker is evenly distributed in the upper surface multiple photovoltaic modulies being obliquely installed;Torsion power component is included located at each support planker with the horizontal rotation support arm on the photovoltaic module of one end, horizontal rotation support arm is fixed in the middle part of photovoltaic module bottom side, level is provided with same gearing pull bar above or below each horizontal rotation support arm, the one end for interlocking pull bar is connected with revolving support, revolving support connection power motor by power transmission shaft.The utility model improves roof photovoltaic module plot ratio;Photovoltaic module is set to keep optimal irradiating angle with the sun, it is ensured that whole photovoltaic generating system obtains peak power output.

Description

A kind of oblique uniaxiality tracking Photovoltaic array support of roof type
Technical field
The utility model is related to solar energy power generating field, more particularly to a kind of oblique uniaxiality tracking Photovoltaic array of roof type Support.
Background technology
When the mankind face energy crisis, it is undoubtedly a kind of most abundant and most reliable method using solar energy.China makees For an energy-consuming big country, in order to reduce energy consumption and greenhouse gas emission, readjust the energy structure, new energy 12 is bright in planning Really propose " must put forth effort to develop distributed solar energy ".China's building roof area newly-increased every year can provide at least photovoltaic hair Electric 10GW.
Roof solar, which has, does not account for soil, and transmission loss is small, the advantages of advantageously reducing peak Voltage force.But it is due to build Build that roof area space is relatively limited, therefore it is to promote roof too that more electricity outputs how are obtained in limited area The key of positive energy large-scale application.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of raising roof photovoltaic module plot ratio, and makes photovoltaic Component obtains a kind of oblique uniaxiality tracking Photovoltaic array support of roof type of more electricity outputs in limited area.
In order to solve the above technical problems, technical solution adopted in the utility model is:
A kind of oblique uniaxiality tracking Photovoltaic array support of roof type, south-north direction is on roof, including support component, photovoltaic Component and torsion power component, it is characterised in that:The support component includes first for being divided into south and north flanks and be arrangeding in parallel Crossbeam and second cross beam, being provided between the second cross beam and roof erects the support of the low northern high setting in Photovoltaic array support south Beam, is evenly equipped with many support plankers, the two ends of the support planker and first crossbeam between the first crossbeam and second cross beam Fixed with second cross beam;Every support planker is evenly distributed in the upper surface multiple photovoltaic modulies being obliquely installed, the photovoltaic module Set and be flexibly connected with support planker upper surface towards south, and be fixedly connected between the photovoltaic module on same support planker Two mobile wireropes;The torsion power component is included located at each support planker with the horizontal rotation branch on the photovoltaic module of one end Arm, the horizontal rotation support arm is fixed in the middle part of photovoltaic module bottom side, and level is set above or below each horizontal rotation support arm There is same gearing pull bar, one end of the gearing pull bar is connected with revolving support, the revolving support by power transmission shaft Connect power motor.
Further technical scheme is:The photovoltaic module includes the fixed frame fixed with photovoltaic panel surrounding and along admittedly Determine the fix bar of framework base setting;The two ends of the fix bar are on the outside of fixed frame, the symmetrical position in fix bar two ends Provided with the fixed part for making to move wirerope and fix bar fixation;Support planker upper surface level on rear side of the photovoltaic module is provided with It is open towards the semicircular angle modulation balladeur train in south, the angle modulation balladeur train is connected with support planker upper surface by U-shaped anchor ear, and angle modulation is slided Frame can be slided in U-shaped anchor ear, and support is respectively equipped between two vertical edge frame bars of the angle modulation balladeur train and fixed frame Bar.
Further technical scheme is:The two ends of the angle modulation balladeur train are hinged with fix bar by universal drive shaft, described solid Determine vertically to be provided with multiple adjustment holes in two vertical edge frame bars of framework, support bar is fixed with adjustment hole.
Further technical scheme is:The middle part level of the fix bar north side is provided with the connection collar, the adapter sleeve Rotary shaft is provided with ring, the rotary shaft is on support planker.
Further technical scheme is:The support vertical beam quantity is many, every support vertical beam and support planker it Between be provided with bearing diagonal.
Further technical scheme is:Provided with reinforcement support beam between the middle part and roof of the support planker.
Further technical scheme is:The many support vertical beam bottoms are fixed on a connecting cross beam.
Further technical scheme is:The fixed part includes the T shape bars being articulated with straight down in fix bar, institute State retainer ring of the T-bar lower end provided with fixed mobile wirerope.
Further technical scheme is:Angle between the support vertical beam and horizontal plane is 5 °~15 °.
It is using the beneficial effect produced by above-mentioned technical proposal:
The utility model is simple in construction, and the low north in Photovoltaic array support south is high, and former and later two light are made on the premise of not sheltering from heat or light Lie prostrate the distance between component to shorten, improve roof photovoltaic module plot ratio;Also, controlled by one group of torsion power component whole Individual Photovoltaic array support follows the sun to be reversed into parallelogram, photovoltaic module is kept optimal irradiating angle with the sun, it is ensured that Whole photovoltaic generating system obtains peak power output, and only one group torsion power component, and each photovoltaic module can be realized Synchronous rotary, more easy to control, photovoltaic module obtains more electricity outputs in limited area;Furthermore, support component one end Directly fixed with roof, without strut support, not only improve the intensity of Photovoltaic array support, can effectively bear severe ring Border, and also reduce the bearing capacity on roof.
Brief description of the drawings
The utility model is described in further detail with reference to the accompanying drawings and detailed description.
Fig. 1 is structural representation of the present utility model;
Fig. 2 is photovoltaic module structure schematic diagram of the present utility model;
Fig. 3 is the mplifying structure schematic diagram in A portions in Fig. 1.
Embodiment
With reference to the accompanying drawing in the utility model embodiment, the technical scheme in the utility model embodiment is carried out clear Chu, it is fully described by, it is clear that described embodiment is only a part of embodiment of the present utility model, rather than whole Embodiment.Based on the embodiment in the utility model, those skilled in the art are obtained under the premise of creative work is not made The every other embodiment obtained, belongs to the scope of the utility model protection.
Many details are elaborated in the following description in order to fully understand the utility model, but this practicality is new Type can also be different from other manner described here using other implement, and those skilled in the art can be without prejudice to this reality With doing similar popularization in the case of new intension, therefore the utility model is not limited by following public specific embodiment.
As shown in Figures 1 to 3, a kind of oblique uniaxiality tracking Photovoltaic array support of roof type, south-north direction is located on roof, including Support component, photovoltaic module 20 and torsion power component, the support component include what is be divided into south and north flanks and be arranged in parallel First crossbeam 11 and second cross beam 12, being provided between the second cross beam 12 and roof sets the low northern height in Photovoltaic array support south The support vertical beam 14 put, is evenly equipped with many support plankers 13 between the first crossbeam 11 and second cross beam 12, the support is dragged The two ends of plate 13 are fixed with first crossbeam 11 and second cross beam 12;Multiple inclinations that have been evenly distributed in the upper surface of every support planker 13 are set The photovoltaic module 20 put, the photovoltaic module 20 sets towards south and is flexibly connected with support planker 13 upper surface, and same branch Two mobile wireropes 18 are fixedly connected between photovoltaic module 20 on support planker 13;The torsion power component is included located at each Individual support planker 13 is fixed on photovoltaic group with the horizontal rotation support arm 35 on one end photovoltaic module 20, the horizontal rotation support arm 35 In the middle part of the bottom side of part 20, level is provided with same gearing pull bar 34 above or below each horizontal rotation support arm 35, and gearing is pushed away Pull bar 34, by hinge, makes gearing pull bar 34 be difficult to be damaged by rigid power in reciprocating motion, institute with rotating arm 23 The one end for stating gearing pull bar 34 is connected with revolving support 32 by power transmission shaft 33, and the revolving support 32 connects power motor 31。
The utility model when mounted, first firmly installs support component arrangement, and photovoltaic module 20 is pacified and turns to drag in support On plate 13, and the photovoltaic module 20 of same row is worn be fixed on two mobile wireropes 18, torsion power group is finally installed again Part.Wherein, the setting angle of photovoltaic module 20 is according to the angle adjustment shined upon in this area and season.Operationally, move Force motor 31 starts, and drives the reciprocating rotation of revolving support 32, the slew range of revolving support 32 is 45 °, due to revolving support 32 It is connected with interlocking pull bar 34 by power transmission shaft 33, can be with the reciprocating rotation of revolving support 32 so interlocking pull bar 34 Move back and forth, and due to interlocking pull bar 34 with being connected in the middle part of the bottom side of photovoltaic module 20 by horizontally rotating support arm 35, so should Photovoltaic module 20 drives two mobile parallelogram formulas of wirerope 18 to carry out backswing to be reversed back and forth for origin in the middle part of its bottom side It is dynamic, so as to drive the synchronous twisting of each photovoltaic module 20, to ensure that photovoltaic module 20 follows the sun to swing, improve generating efficiency.
The utility model is simple in construction, and the low north in Photovoltaic array support south is high, and former and later two light are made on the premise of not sheltering from heat or light Lie prostrate the distance between component to shorten, improve roof photovoltaic module plot ratio;Also, controlled by one group of torsion power component whole Individual Photovoltaic array support follows the sun to be reversed into parallelogram, photovoltaic module is kept optimal irradiating angle with the sun, it is ensured that Whole photovoltaic generating system obtains peak power output, and only one group torsion power component, and each photovoltaic module 20 can be real Existing synchronous rotary, more easy to control, photovoltaic module obtains more electricity outputs in limited area;Furthermore, support component one End is directly fixed with roof, without strut support, is not only improved the intensity of Photovoltaic array support, can effectively be born severe ring Border, and also reduce the bearing capacity on roof.
Wherein, photovoltaic module 20 includes the fixed frame 21 fixed with photovoltaic panel surrounding and set along the base of fixed frame 21 Fix bar 22;The two ends of the fix bar 22 are located at the outside of fixed frame 21, and the symmetrical position in the two ends of fix bar 22 is provided with Make to move the fixed part that wirerope 18 is fixed with fix bar 22;The upper surface level of support planker 13 of the rear side of photovoltaic module 20 is set There is semicircular angle modulation balladeur train 23 of the opening towards south, the angle modulation balladeur train 23 passes through U-shaped anchor ear 24 with the support upper surface of planker 13 Connection, angle modulation balladeur train 23 can be slided in U-shaped anchor ear 24, two vertical frames of the angle modulation balladeur train 23 and fixed frame 21 Support bar 25 is respectively equipped between hack lever.Because photovoltaic module 20 is not vertically arranged, the center of gravity of photovoltaic module 20 backward, is supported Bar 25 can avoid photovoltaic module 20 from turning over, when two mobile parallelogram formulas of wirerope 18 swing back and forth, and angle modulation is slided Frame 23 is slided in U-shaped anchor ear 24 in camber line, and the U-shaped inner side of anchor ear 24 is additionally provided with self-lubricating bearing, and angle modulation balladeur train 23 is located in certainly Lubricate in bearing, be easy to slide, reduce the maintenance of system, improve the service life of array support.
Because each area is different with the angle shined upon in Various Seasonal, the angle of inclination of photovoltaic module when mounted Difference, and to ensure that photovoltaic panel receives the maximum illumination area of the sun, feelings are changed according to sun altitude at regular intervals Condition adjusts the mounted angle of a photovoltaic module, and it is optimal to make mounted angle of the photovoltaic module in the period, can also increase photovoltaic The year generating total amount of component.So, in order to realize Fast Installation adjustment of the present utility model, the two ends of angle modulation balladeur train 23 and fixation Bar 22 is hinged by universal drive shaft, and multiple adjustment holes 26, support are vertically provided with two vertical edge frame bars of the fixed frame 21 Bar 25 is fixed with adjustment hole 26.Because angle modulation balladeur train 23 remains horizontally disposed, so by support bar 25 and different regulations Hole 26 is fixed, you can the setting angle between regulation photovoltaic panel and wirerope.Specifically, the end of support bar 25 is provided with regulation spiral shell Line, support bar 25 passes through adjustment hole 26, and support bar 25 is locked in the both sides of adjustment hole 26 provided with locking nut.
In order to improve photovoltaic module 20 balance and with support planker 13 stable connection, in the north side of fix bar 22 Middle part level provided with connection the collar 29, it is described connection the collar 29 in be provided with rotary shaft 131, the rotary shaft 131 located at support On planker 13.
Because the house in city is often skyscraper, its wind speed greatly exceed ground wind speed, so needing to strengthen The support strength of support component.It is many to support the quantity of vertical beam 14, provided with oblique between every support vertical beam 14 and support planker 13 Support 17;Provided with reinforcement support beam 16 between the middle part and roof of support planker 13, it is to avoid support planker 13 stress increases curved Folding;Also, many support vertical beam 14 bottoms are fixed on a connecting cross beam 15, fix and more facilitate with roof.
The concrete structure of fixed part is, including the T-bar 27 being articulated with straight down in fix bar 22, the T-bar 27 Retainer ring 28 of the lower end provided with fixed mobile wirerope 18.After mobile wirerope 18 passes through retainer ring 28, instrument will be used solid Determine the clamping of ring 28, it is fixed with mobile wirerope 18, enable to move wirerope 18 and drive multiple photovoltaic module parallelograms Reverse back and forth.
Angle between the support vertical beam 14 and horizontal plane is 5 °~15 °, and optimized angle is 9 °, in the premise do not sheltered from heat or light Under make the distance between former and later two photovoltaic modulies 20 shorten, be greatly improved volumetric efficiency.
It the above is only preferred embodiment of the present utility model, anyone is according to content of the present utility model to the utility model A little simple modification, deformation and the equivalent substitution made each falls within protection domain of the present utility model.

Claims (9)

1. a kind of oblique uniaxiality tracking Photovoltaic array support of roof type, south-north direction is on roof, including support component, photovoltaic group Part (20) and torsion power component, it is characterised in that:
The support component includes the first crossbeam (11) and second cross beam (12) for being divided into south and north flanks and be arrangeding in parallel, described Second cross beam (12) is provided with the support vertical beam (14) of the low northern high setting in Photovoltaic array support south is made between roof, and described first is horizontal Many support plankers (13), the two ends of the support planker (13) and the first horizontal stroke are evenly equipped between beam (11) and second cross beam (12) Beam (11) and second cross beam (12) are fixed;
Every support planker (13) is evenly distributed in the upper surface multiple photovoltaic modulies (20) being obliquely installed, the photovoltaic module (20) Set and be flexibly connected with support planker (13) upper surface towards south, and same photovoltaic module (20) for supporting on planker (13) it Between be fixedly connected with two mobile wireropes (18);
The torsion power component is included located at each support planker (13) with the horizontal rotation branch on one end photovoltaic module (20) Arm (35), the horizontal rotation support arm (35) is fixed in the middle part of photovoltaic module (20) bottom side, each horizontal rotation support arm (35) Above or below level provided with one interlock pull bar (34), it is described interlock pull bar (34) one end pass through power transmission shaft (33) even It is connected to revolving support (32), revolving support (32) the connection power motor (31).
2. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 1, it is characterised in that:The photovoltaic Component (20) includes the fixed frame (21) fixed with photovoltaic panel surrounding and the fix bar set along fixed frame (21) base (22);The two ends of the fix bar (22) are on the outside of fixed frame (21), and fix bar (22) symmetrical position in two ends is provided with Make to move wirerope (18) fixed part fixed with fix bar (22);Support planker (13) upper table on rear side of the photovoltaic module (20) Face level is provided with opening towards the semicircular angle modulation balladeur train (23) in south, and the angle modulation balladeur train (23) is with supporting planker (13) upper surface Connected by U-shaped anchor ear (24), angle modulation balladeur train (23) can be slided in the U-shaped anchor ear (24), the angle modulation balladeur train (23) with it is solid Support bar (25) is respectively equipped between two vertical edge frame bars for determining framework (21).
3. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 2, it is characterised in that:The angle modulation The two ends of balladeur train (23) are hinged with fix bar (22) by universal drive shaft, are erected in two vertical edge frame bars of the fixed frame (21) To provided with multiple adjustment holes (26), support bar (25) is fixed with adjustment hole (26).
4. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 2, it is characterised in that:The fixation The middle part level of bar (22) north side is provided with the connection collar (29), and the connection collar (29) is interior to be provided with rotary shaft (131), the rotation Rotating shaft (131) is on support planker (13).
5. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 1, it is characterised in that:The support Vertical beam (14) quantity is many, and bearing diagonal (17) is provided between every support vertical beam (14) and support planker (13).
6. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 1, it is characterised in that:The support Provided with reinforcement support beam (16) between the middle part and roof of planker (13).
7. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 5, it is characterised in that:Described in many Support vertical beam (14) bottom is fixed on a connecting cross beam (15).
8. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 2, it is characterised in that:The fixation Portion includes the T-bar (27) being articulated with straight down in fix bar (22), and T-bar (27) lower end is provided with fixed mobile wirerope (18) retainer ring (28).
9. the oblique uniaxiality tracking Photovoltaic array support of a kind of roof type according to claim 1, it is characterised in that:The support Angle of the vertical beam (14) between horizontal plane is 5 °~15 °.
CN201720220996.6U 2017-03-07 2017-03-07 A kind of oblique uniaxiality tracking Photovoltaic array support of roof type Expired - Fee Related CN206517354U (en)

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Application Number Priority Date Filing Date Title
CN201720220996.6U CN206517354U (en) 2017-03-07 2017-03-07 A kind of oblique uniaxiality tracking Photovoltaic array support of roof type

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720220996.6U CN206517354U (en) 2017-03-07 2017-03-07 A kind of oblique uniaxiality tracking Photovoltaic array support of roof type

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110535420A (en) * 2019-09-05 2019-12-03 南京市光翔新能源科技有限公司 A kind of oblique single-shaft tracking system of prestressing force flexible support

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110535420A (en) * 2019-09-05 2019-12-03 南京市光翔新能源科技有限公司 A kind of oblique single-shaft tracking system of prestressing force flexible support

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Granted publication date: 20170922

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