CN204189773U - Solar module indicative of local optical performance testing device - Google Patents

Solar module indicative of local optical performance testing device Download PDF

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Publication number
CN204189773U
CN204189773U CN201420564537.6U CN201420564537U CN204189773U CN 204189773 U CN204189773 U CN 204189773U CN 201420564537 U CN201420564537 U CN 201420564537U CN 204189773 U CN204189773 U CN 204189773U
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CN
China
Prior art keywords
solar module
structural member
hollow mesh
mesh structural
shutter
Prior art date
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Expired - Lifetime
Application number
CN201420564537.6U
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Chinese (zh)
Inventor
屠智革
曹艳平
许靖琨
张军
李道云
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China Triumph International Engineering Co Ltd
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China Triumph International Engineering Co Ltd
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Priority to CN201420564537.6U priority Critical patent/CN204189773U/en
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Publication of CN204189773U publication Critical patent/CN204189773U/en
Anticipated expiration legal-status Critical
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Abstract

A kind of solar module indicative of local optical performance testing device, comprise the hollow mesh structural member of fixing solar module to be measured, void region, shutter, be located at strutting piece and the handrail of the inner support shutter in described hollow mesh structural member, wherein said hollow mesh structural member customizes according to solar module to be measured, all has described void region one to one to make every block solar module unit.Compared with prior art adopt the utility model simply, reliably, effectively can measure one or more (comprising all) solar module unit any of solar module to be measured.By detecting the optical property of solar module unit, can the design defect of Efficient Evaluation solar battery process, thus improve in the design of subsequent technique.

Description

Solar module indicative of local optical performance testing device
Technical field
The utility model relates to solar module indicative of local optical performance testing device.
Background technology
There is abundant solar energy resources in China.Solar cell utilizes semiconductor photovoltaic effect to make semiconductor device, is widely used in the fields such as aerospace, power station, photovoltaic building, communication, illumination.
Solar module is the core in solar cell power generation system, it by tens, hundreds of solar module units in series, compose in parallel.Adopt certain illumination methods, just can obtain the electric energy of considerable power output.
Solar module needs to adopt optic test to the defect detected in solar module and the optical property measuring solar module.Existing optical testing device is only the overall optical property being confined to solar module, and can not test the local of solar module (solar module unit) optical property.
Therefore, simpler, reliable, effective device is needed to test solar module unit.Thus do follow-uply to prepare the corresponding technique adjustment of solar module for the unit that Local Property is poor, the final solar module optical system energy improving the entirety of subsequent production.
Utility model content
The utility model aims to provide simpler, reliable, effective apparatus and method to test solar module unit.
In order to reach above-mentioned purpose, an aspect of the present utility model is a kind of solar module indicative of local optical performance testing device, comprise the hollow mesh structural member of fixing solar module to be measured, void region, shutter, be located at strutting piece and the handrail of the inner support shutter in described hollow mesh structural member, wherein said hollow mesh structural member customizes according to solar module to be measured, all has described void region one to one to make every block solar module unit.
In some embodiments, the size of void region described in every block of described hollow mesh structural member equals or slightly larger than the size of corresponding solar module unit to be measured.In some embodiments, the size of described shutter is equal to or slightly less than the monolithic void region size of corresponding hollow mesh structural member.In some embodiments, four base angles of void region described in the monolithic that described strutting piece is welded in described hollow mesh structural member, the bottom surface of described strutting piece is concordant with the bottom surface of described hollow mesh structural member, and can hold described shutter.
In some embodiments, when described in the monolithic that described shutter is embedded in described hollow mesh structural member during void region, the part of the upper surface of described shutter and the described solar module of support of described hollow mesh structural member is in a plane.
In some embodiments, the frame both sides of described hollow mesh structural member establish 2 handrails respectively.
In some embodiments, described hollow mesh structural member, described shutter, described strutting piece and the handrail of the described shutter of support in described hollow mesh structural member are made up of light tight and on-deformable steel construction.
Compared with prior art adopt the utility model simply, reliably, effectively can measure one or more (comprising all) solar module unit any of solar module to be measured.By detecting the optical property of solar module unit, can the design defect of Efficient Evaluation solar battery process, thus improve in the design of subsequent technique.
Below in conjunction with accompanying drawing, the description of the utility model purport is described by example, with clear other aspects of the present utility model and advantage.
Accompanying drawing explanation
By reference to the accompanying drawings, by detailed description hereafter, above-mentioned and other feature and advantage of the present utility model more clearly can be understood, wherein:
Fig. 1 is the structural representation of the unloaded shutter of the optimum embodiment of the utility model;
Fig. 2 is the structural representation of the fully loaded shutter of the optimum embodiment of the utility model;
Fig. 3 is the structural representation of the measurement solar module indicative of local optical performance of the optimum embodiment of the utility model;
Fig. 3 A be the structure of the measurement solar module indicative of local optical performance of the optimum embodiment of the utility model as shown in Figure 3 along 3A-3A line schematic cross section;
Fig. 3 B be the structure of the measurement solar module indicative of local optical performance of the optimum embodiment of the utility model as shown in Figure 3 along 3B-3B vertical section schematic diagram;
Wherein: 1. hollow mesh structural member, 2. shutter, the 3. strutting piece of hollow mesh structural member inner support shutter, 4. solar module, 5. void region, 6. handrail
Embodiment
See the accompanying drawing of the utility model specific embodiment, hereafter in more detail the utility model will be described.But the utility model can realize in many different forms, and should not be construed as by the restriction in the embodiment of this proposition.On the contrary, it is abundant and complete open in order to reach for proposing these embodiments, and makes those skilled in the art understand scope of the present utility model completely.
Description, describes the solar module indicative of local optical performance testing device according to the utility model embodiment in detail.
As shown in Figure 1, Figure 2, shown in Fig. 3 (containing Fig. 3 A, 3B), a kind of solar module indicative of local optical performance test methods of the utility model and device, comprise the hollow mesh structural member 1 for fixing solar module 4 to be measured, this hollow mesh structural member 1 size customizes according to the size of solar module 4 to be measured, is advisable just solar module is embedded this hollow mesh structural member 1; And the size of void region 5 is designed according to the size of solar module unit, the size of every block void region 5 equals or slightly larger than the size of corresponding solar module unit to be measured, position relationship is the corresponding one piece of solar module unit in every block void region; Measure-alike shutter 2 is customized according to the size of every block void region 5; Support the strutting piece 3 of shutter in four welded corner joints of every block void region 5, the bottom surface of this supporting bracket 3 is concordant with hollow mesh structural member 1 bottom surface; After place shutter 2 in hollow mesh structural member 1, shutter 2 is concordant with the upper surface of hollow mesh structural member 1 central area, forms a plane; Conveniently operating personnel's operation, sets up 2 handrails respectively in the broadside frame both sides of hollow mesh structural member 1.
Above-mentioned all components adopt on-deformable steel construction.
The operation used according to a kind of solar module indicative of local optical performance testing device of the present utility model is now described.
As shown in Figure 3, when needing the optical property measuring certain block or polylith solar module unit, find void region 5 corresponding with it, except not covering shutter 2 except this void region, other all place all covers shutter; Then, adopt manipulator or the mode of manually lifting plate that solar module 4 to be measured is positioned over (as shown in Fig. 3 A, Fig. 3 B) in this testing apparatus; Then two handrails that two operating personnel respectively hold this testing apparatus this testing apparatus that solar module 4 to be measured is housed is positioned over be furnished with optic testing system testboard above (the utility model patent is not containing the testboard being furnished with optic testing system).Other non-test unit due to this solar module plate that is blocked blocks, and the unit that this solar module need be measured is not blocked, plate blocks, so the simulating nature light sent below testboard by the selection of the utility model device through, simulating nature light only can through the void region not covering shutter, and then absorbed by the solar module unit intending surveying, and by being furnished with the system acquisition of optic test, the final optical performance data obtaining this solar module unit.
Adopt the method measure same specification, batch solar components, gather a large amount of solar module indicative of local optical performance datas, the data of the optical property of relatively more each solar module unit measured, find out the comparatively difference data of concentrated reflection somewhere solar module unit indicative of local optical performance; Technologist is for these data analysis Producing reason, thus improvement of production process, improve the optical property of the solar components unit at this place, the final optical property improving solar module entirety.
Compared with prior art, the utility model is adopted simply, reliably, effectively can to measure one or more (comprising all) solar module unit any of solar module to be measured.By detecting the optical property of solar module unit, can the design defect of Efficient Evaluation solar battery process, thus improve in the design of subsequent technique.
More than describe preferred embodiment of the present utility model in detail.Should be appreciated that those of ordinary skill in the art just can make many modifications and variations according to design of the present utility model without the need to creative work.All technical staff in the art according to design of the present utility model on the basis of existing technology by the available technical scheme of logical analysis, reasoning, or a limited experiment, all should by the determined protection range of claims.

Claims (7)

1. a solar module indicative of local optical performance testing device, it is characterized in that, comprise the hollow mesh structural member of fixing solar module to be measured, void region, shutter, be located at strutting piece and the handrail of the inner support shutter in described hollow mesh structural member, wherein said hollow mesh structural member customizes according to solar module to be measured, all has described void region one to one to make every block solar module unit.
2. solar module indicative of local optical performance testing device as claimed in claim 1, is characterized in that, the size of void region described in every block of described hollow mesh structural member equals or slightly larger than the size of corresponding solar module unit to be measured.
3. solar module indicative of local optical performance testing device as claimed in claim 1, it is characterized in that, the size of described shutter is equal to or slightly less than the monolithic void region size of corresponding hollow mesh structural member.
4. solar module indicative of local optical performance testing device as claimed in claim 1, it is characterized in that, four base angles of void region described in the monolithic that described strutting piece is welded in described hollow mesh structural member, the bottom surface of described strutting piece is concordant with the bottom surface of described hollow mesh structural member, and can hold described shutter.
5. solar module indicative of local optical performance testing device as claimed in claim 1, it is characterized in that, when described in the monolithic that described shutter is embedded in described hollow mesh structural member during void region, the part of the upper surface of described shutter and the described solar module of support of described hollow mesh structural member is in a plane.
6. solar module indicative of local optical performance testing device as claimed in claim 1, it is characterized in that, the frame both sides of described hollow mesh structural member establish 2 handrails respectively.
7. solar module indicative of local optical performance testing device as claimed in claim 1, it is characterized in that, described hollow mesh structural member, described shutter, described strutting piece and the handrail of the described shutter of support in described hollow mesh structural member are made up of light tight and on-deformable steel construction.
CN201420564537.6U 2014-09-28 2014-09-28 Solar module indicative of local optical performance testing device Expired - Lifetime CN204189773U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420564537.6U CN204189773U (en) 2014-09-28 2014-09-28 Solar module indicative of local optical performance testing device

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Application Number Priority Date Filing Date Title
CN201420564537.6U CN204189773U (en) 2014-09-28 2014-09-28 Solar module indicative of local optical performance testing device

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CN204189773U true CN204189773U (en) 2015-03-04

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104241160A (en) * 2014-09-28 2014-12-24 中国建材国际工程集团有限公司 Method and device for testing local optical performance of solar module

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104241160A (en) * 2014-09-28 2014-12-24 中国建材国际工程集团有限公司 Method and device for testing local optical performance of solar module

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