WO2016041108A1 - 一种太阳能发电电池合金瓦 - Google Patents

一种太阳能发电电池合金瓦 Download PDF

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WO2016041108A1
WO2016041108A1 PCT/CN2014/001122 CN2014001122W WO2016041108A1 WO 2016041108 A1 WO2016041108 A1 WO 2016041108A1 CN 2014001122 W CN2014001122 W CN 2014001122W WO 2016041108 A1 WO2016041108 A1 WO 2016041108A1
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aluminum steel
composite material
steel composite
aluminum
solar power
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PCT/CN2014/001122
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English (en)
French (fr)
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宋飞高
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宋飞高
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S20/00Supporting structures for PV modules
    • H02S20/20Supporting structures directly fixed to an immovable object
    • H02S20/22Supporting structures directly fixed to an immovable object specially adapted for buildings
    • H02S20/23Supporting structures directly fixed to an immovable object specially adapted for buildings specially adapted for roof structures
    • H02S20/25Roof tile elements
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S30/00Structural details of PV modules other than those related to light conversion
    • H02S30/10Frame structures
    • 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

Definitions

  • the present invention relates to the field of solar devices, and in particular to a solar power battery alloy tile and a solar module.
  • the existing solar panels only have the function of generating electricity, have a single function, and have insufficient structural strength. After long-term use, the temperature is too high, which may cause a fire, and indirectly restricts the power generation efficiency of the panel.
  • the present invention provides a solar power cell alloy tile and a solar module that overcomes the difficulties of the prior art by changing and creating the frame structure of the solar panel. In case the original function does not change. Additional features have been added, such as water resistance, fire protection, thermal insulation, and sound insulation.
  • the invention provides a solar power battery alloy tile, comprising: a pair of rectangular tubular first aluminum steel composite materials, a pair of rectangular tubular second aluminum steel composite materials combined frame and photovoltaics respectively fixed on the upper and lower sides of the frame Board and insulation board;
  • the first aluminum steel composite material is respectively provided with two parallel clamping slots along its length direction
  • the second aluminum steel composite material is respectively provided with two parallel clamping slots along its length direction.
  • the clamping slot of the first aluminum steel composite material and the clamping slot of the second aluminum steel composite material jointly clamp the photovoltaic panel and the heat insulation panel, and the heat insulation panel is clamped on the first aluminum steel
  • the photovoltaic plate is sandwiched between the first aluminum steel composite material or the pipe wall inside the second aluminum steel composite material, the first aluminum Fixing at least one reinforcing steel strip in the inner wall of the steel composite material and the second aluminum steel composite material;
  • a bottom plate extending from a side opposite to the clamping slot on the first aluminum steel composite material
  • a cover plate extending from a side opposite to the clamping slot on the second aluminum steel composite material, the bottom plate And the cover plate are respectively located on two sides of the frame formed by combining the first aluminum steel composite material and the second aluminum steel composite material.
  • the inner wall of the outer tube wall secures one of the reinforcing steel strips.
  • the inner wall of the outer tube wall secures one of the reinforcing steel strips.
  • a plurality of vent holes in the vertical direction are respectively disposed on the pipe walls of the first aluminum steel composite material or the second aluminum steel composite material in the horizontal direction.
  • the photovoltaic panel is parallel to the heat shield, and the spacing between the photovoltaic panel and the heat shield is 30 mm to 70 mm.
  • a set of said first aluminum steel composite material sandwiches adjacent sides of said photovoltaic panel, and a set of said second aluminum steel composite material holds the other two sides of said photovoltaic panel.
  • a set of said first aluminum steel composite material sandwiches two parallel sides of said photovoltaic panel, and a set of said second aluminum steel composite material holds the other two sides of said photovoltaic panel.
  • the present invention also provides a solar energy module comprising: a plurality of the above-mentioned solar power battery alloy tiles, which are aligned with each other, and the bottom plate of the first aluminum steel composite material of the solar power battery alloy tile supports the adjacent solar power generation battery a bottom surface of the second aluminum steel composite material of the alloy tile, a cover plate of the second aluminum steel composite material of the solar power battery alloy tile, and the first aluminum steel adjacent to the solar power battery alloy tile The top surface of the composite.
  • the solar photovoltaic cell alloy tile of the present invention is compared with the prior art, and the present invention does not change the original function. Added several other features:
  • Fire protection function After the transformation of the original panel frame. Add a notch that installs a fire board. Insert the fireproof panel into the slot. Give the product a fire resistant function.
  • Insulation function After adding fireproof board. There is a 30mm to 70mm air layer between the cell and the fire board. The opening treatment is performed on the upper and lower end faces of the panel frame. Allow air to circulate freely. The natural principle of air circulation is that hot air goes down to the cold air. Allow hot air to drain naturally upwards. Improve the power generation efficiency of the panel. Reduce the temperature in the room.
  • Figure 1 is a schematic view of a solar module of the present invention
  • FIG. 2 is a cross-sectional view of a solar photovoltaic cell alloy tile of the present invention.
  • the solar module of the present invention comprises: five solar power battery alloy tiles arranged in a mutual bite arrangement (the combination of the solar power generation battery alloy tiles is not limited thereto, and the arrangement is arranged according to the actual required quantity)
  • the bottom plate 11 of the first aluminum steel composite material 1 of the solar power generation battery alloy tile supports the bottom surface of the second aluminum steel composite material 2 of the adjacent solar power generation battery alloy tile, and the second aluminum steel composite material of the solar power generation battery alloy tile 2
  • the cover plate 21 is pressed to cover the top surface of the first aluminum steel composite material 1 of the adjacent solar power battery alloy tile.
  • the solar power generation battery alloy tile of the present invention comprises: a pair of rectangular tubular first aluminum steel composite materials 1, a pair of rectangular tubular second aluminum steel composite materials 2 combined frame, and photovoltaic panels 3 respectively fixed on the upper and lower sides of the frame And insulation board 5.
  • the first aluminum steel composite material 1 is respectively provided with two parallel clamping slots along its length direction
  • the second aluminum steel composite material 2 is respectively provided with two parallel clamping slots along its length direction
  • the clamping slot of the steel composite material 1 and the clamping slot of the second aluminum steel composite material 2 jointly hold the photovoltaic panel 3 and the heat insulation panel 5, and the heat insulation panel 5 is clamped on the first aluminum steel composite material 1 or
  • the photovoltaic plate 3 is sandwiched between the first aluminum steel composite material 1 or the inner aluminum tube composite material 2
  • the first aluminum steel composite At least one reinforcing steel strip 4 is fixed in the inner wall of the material 1 and the second aluminum steel composite material 2.
  • a bottom plate 11 is extended on a side of the first aluminum steel composite material 1 opposite to the clamping slot, and a cover plate 21 is extended on a side of the second aluminum steel composite material 2 opposite to the clamping slot, the bottom plate 11 and The cover plates 21 are respectively located on both sides of the frame formed by combining the first aluminum steel composite material 1 and the second aluminum steel composite material 2.
  • a reinforcing steel strip 4 is fixed to the inner wall of the outer tube wall 13.
  • a reinforcing steel strip 4 is fixed to the inner wall of the outer tube wall 23.
  • the photovoltaic panel 3 is parallel to the heat shield 5, and the spacing between the photovoltaic panel 3 and the heat shield 5 is 30 mm to 70 mm.
  • a plurality of vent holes 6 in the vertical direction are respectively provided on the pipe walls of the first aluminum steel composite material 1 or the second aluminum steel composite material 2 in the horizontal direction. Allow air to circulate freely. The natural principle of air circulation is that hot air goes down to the cold air. Allow hot air to drain naturally upwards. Improve the power generation efficiency of the panel. Reduce the temperature of the chamber. When the frame is assembled, the screw holes 7 are screwed.
  • a set of first aluminum steel composite material 1 holds two adjacent sides of the photovoltaic panel 3, and a set of second aluminum steel composite material 2 holds the other two sides of the photovoltaic panel 3.
  • a set of first aluminum-steel composite material 1 may be sandwiched on two sides of the photovoltaic panel 3, and a second set of aluminum-steel composite material 2 may hold the other two sides of the photovoltaic panel 3.
  • the cover 21 has a groove therein. It is used to stick "E-type silicone strip”. It acts as a sealing function for the roof. There is a groove in the bottom plate 11, and a sink in the inner triangle. The groove is adhered to the “E-type silicone strip” to seal again. The indoor air and the room temperature are formed in an independent state. The sink acts as a waterproof again. The structure of the entire sink on the roof is completely through from top to bottom.
  • the invention is not only a simple modification of the aluminum profile. Instead, a flat steel of corresponding strength is added to the effective part of the aluminum profile. It is a material that is not currently available on the market. The advantages are: improving the overall strength and impact resistance of the panel. And can effectively reduce the cost of materials. (if you want to achieve the same strength only Only use aluminum alloy materials. The material cost of aluminum alloys will increase significantly. )
  • the construction market can have one more variety. And can produce green new energy products. Market acceptance will increase dramatically.
  • the product of the invention is also more convenient to install and construct than the original battery panel. The cost is lower. 1: The installation of the old product requires bracket support. This product is not required: 2: If the roof of the building has leaked. It is necessary to rebuild the solar panels before they can be rebuilt. It is not necessary to use the product of the present invention. The reinforcement of the beam can be carried out directly for installation. Greatly improve the feasibility and popularity of the product, and help the green energy strategy to be more concretely implemented.
  • the solar photovoltaic cell alloy tile and solar module of the present invention are compared with the prior art, and the present invention does not change the original function. Added several other features:
  • Fire protection function After the transformation of the original panel frame. Add a notch that installs a fire board. Insert the fireproof panel into the slot. Give the product a fire resistant function.
  • Insulation function After adding fireproof board. There is a 30mm to 70mm air layer between the panel and the fire board. The opening treatment is performed on the upper and lower end faces of the panel frame. Allow air to circulate freely. The natural principle of air circulation is that hot air goes down to the cold air. Allow hot air to drain naturally upwards. Improve the power generation efficiency of the panel. Reduce the temperature of the chamber.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Photovoltaic Devices (AREA)

Abstract

一种太阳能发电电池合金瓦,其包括:一对矩形管状的第一铝钢合成材(1)、一对矩形管状的第二铝钢合成材(2)组合成的边框以及分别固定在边框上下两面的光伏板(3)和隔热板(5),第一铝钢合成材沿其长度方向分别设有两个平行的夹持槽口,并且第二铝钢合成材沿其长度方向分别设有两个平行的夹持槽口,第一铝钢合成材的夹持槽口以及第二铝钢合成材的夹持槽口共同夹持光伏板以及隔热板,隔热板夹持在第一铝钢合成材或第二铝钢合成材内侧的管壁(12、22)之间,光伏板夹持在第一铝钢合成材或第二铝钢合成材外侧的管壁(13、23)之间,底板(11)和盖板(21)分别位于第一铝钢合成材和第二铝钢合成材组合成的边框两侧。该太阳能发电电池合金瓦能够实现防水、防火、隔热以及隔音的功能。

Description

一种太阳能发电电池合金瓦以及太阳能组件 技术领域
本发明涉及太阳能装置领域,特别涉及一种太阳能发电电池合金瓦以及太阳能组件。
背景技术
目前,现有的太阳能电池板只有发电功能,功能单一,结构强度不足,长时间使用后,也容易使得温度过高,可能引发火灾,也间接制约了电池板的发电效率。
因此,一种具有防水防火功能的太阳能发电电池合金瓦以及太阳能组件应运而生。
发明内容
本发明提供了太阳能发电电池合金瓦以及太阳能组件,克服了现有技术的困难,通过对太阳能电池板的框架结构的改变和创造。在原来的功能不改变的情况下。增加了其他的多个功能,例如防水功能、防火功能、隔热功能、隔音功能等。
本发明提供了一种太阳能发电电池合金瓦,包括:一对矩形管状的第一铝钢合成材、一对矩形管状的第二铝钢合成材组合成的边框以及分别固定在边框上下两面的光伏板和隔热板;
所述第一铝钢合成材沿其长度方向分别设有两个平行的夹持槽口,并且所述第二铝钢合成材沿其长度方向分别设有两个平行的夹持槽口,所述第一铝钢合成材的夹持槽口以及第二铝钢合成材的夹持槽口共同夹持所述光伏板以及隔热板,所述隔热板夹持在所述第一铝钢合成材或第二铝钢合成材内侧的管壁之间,所述光伏板夹持在所述第一铝钢合成材或第二铝钢合成材内侧的管壁之间,所述第一铝钢合成材和第二铝钢合成材的内壁中固定至少一条加强钢条;
所述第一铝钢合成材上与夹持槽口相反的一侧延展出一底板,所述第二铝钢合成材上与夹持槽口相反的一侧延展出一盖板,所述底板和盖板分别位于所述第一铝钢合成材和第二铝钢合成材组合成的边框两侧。
优选地,外侧管壁的内壁固定一条所述加强钢条。
优选地,外侧管壁的内壁固定一条所述加强钢条。
优选地,水平方向的所述第一铝钢合成材或第二铝钢合成材的管壁上分别设有垂直方向的若干透气孔。
优选地,所述光伏板平行于所述隔热板,且所述光伏板与隔热板之间的间距为30mm至70mm。
优选地,一组所述第一铝钢合成材夹持所述光伏板相邻的两边,一组所述第二铝钢合成材夹持所述光伏板另外两边。
优选地,一组所述第一铝钢合成材夹持所述光伏板平行的两边,一组所述第二铝钢合成材夹持所述光伏板另外两边。
本发明还提供了一种太阳能组件,包括:若干上述的太阳能发电电池合金瓦,相互咬合排列,所述太阳能发电电池合金瓦的第一铝钢合成材的底板支撑相邻的所述太阳能发电电池合金瓦的所述第二铝钢合成材的底面,所述太阳能发电电池合金瓦的第二铝钢合成材的盖板压盖相邻的所述太阳能发电电池合金瓦的所述第一铝钢合成材的顶面。
由于采用了上述技术,本发明的太阳能发电电池合金瓦与现有技术相比,本发明在原来的功能不改变的情况下。增加了其他的多个功能:
1:防水功能:在原来的电池板的基础上增加一条盖板,再增加一条底板使原来电池板具有防水的功能。
2:防火功能:通过对原来电池板框架的改造以后。增加安装一条防火板的槽口。将防火板插入在该槽口内。使产品达到具有防火的功能。
3:隔热功能:增加了防火板以后。在电池片和防火板之间有30mm至70mm空气层。通过对电池板框架的上下两个端面进行开孔处理。使空气能自由的流通。空气流通的自然原理是热空气向上冷空气向下。使热空气向上自然排出。提高电池板的发电效率。降低室内的温度。
4:隔音功能:增加了防火板以后。碰到下雨天或者冰雹天的时候。能有效的起到隔音的功能。
以下结合附图及实施例进一步说明本发明。
附图说明
图1为本发明的太阳能组件的示意图;以及
图2为本发明的太阳能发电电池合金瓦的剖面图。
附图标记
1  为第一铝钢合成材
11 为底板
12 为内侧管壁
13 为外侧管壁
2  为第二铝钢合成材
21 为盖板
22 为内侧管壁
23 为外侧管壁
3  为光伏板
4  为加强钢条
5  为隔热板
6  为透气孔
7  为螺孔
具体实施方式
下面通过图1至2来介绍本发明的一种具体实施例。
实施例1
如图1和2所示,本发明的太阳能组件包括:五块相互咬合排列的太阳能发电电池合金瓦(太阳能发电电池合金瓦的组合不以此为限,根据实际需要的数量进行排列方式组合),太阳能发电电池合金瓦的第一铝钢合成材1的底板11支撑相邻的太阳能发电电池合金瓦的第二铝钢合成材2的底面,太阳能发电电池合金瓦的第二铝钢合成材2的盖板21压盖相邻的太阳能发电电池合金瓦的第一铝钢合成材1的顶面。
本发明的太阳能发电电池合金瓦包括:一对矩形管状的第一铝钢合成材1、一对矩形管状的第二铝钢合成材2组合成的边框以及分别固定在边框上下两面的光伏板3和隔热板5。第一铝钢合成材1沿其长度方向分别设有两个平行的夹持槽口,并且第二铝钢合成材2沿其长度方向分别设有两个平行的夹持槽口,第一铝钢合成材1的夹持槽口以及第二铝钢合成材2的夹持槽口共同夹持光伏板3以及隔热板5,隔热板5夹持在第一铝钢合成材1或第二铝钢合成材2内侧管壁12、22之间,光伏板3夹持在第一铝钢合成材1或第二铝钢合成材2内侧管壁13、23之间,第一铝钢合成材1和第二铝钢合成材2的内壁中固定至少一条加强钢条4。第一铝钢合成材1上与夹持槽口相反的一侧延展出一底板11,第二铝钢合成材2上与夹持槽口相反的一侧延展出一盖板21,底板11和盖板21分别位于第一铝钢合成材1和第二铝钢合成材2组合成的边框两侧。
外侧管壁13的内壁固定一条加强钢条4。外侧管壁23的内壁固定一条加强钢条4。
光伏板3平行于隔热板5,且光伏板3与隔热板5之间的间距为30mm至70mm。水平方向的第一铝钢合成材1或第二铝钢合成材2的管壁上分别设有垂直方向的若干透气孔6。使空气能自由的流通。空气流通的自然原理是热空气向上冷空气向下。使热空气向上自然排出。提高电池板的发电效率。降低室的温度。框架进行组装的时候,通过螺孔7进行螺丝螺合。
本实施例中,一组第一铝钢合成材1夹持光伏板3相邻的两边,一组第二铝钢合成材2夹持光伏板3另外两边。(但不以此为限,也可以是一组第一铝钢合成材1夹持光伏板3平行的两边,一组第二铝钢合成材2夹持光伏板3另外两边。)
盖板21内有一条凹槽的作用。是用来黏贴“E型硅胶条”的。起到屋顶的密封功能。底板11内有一条凹槽,还有靠内三角的地方有一条水槽。凹槽黏贴“E型硅胶条”起到再一次密封的作用。使室内的空气和室温形成独立的状态。水槽起到再一次的防水作用。整个水槽在屋顶的结构是由上到下完全贯通的。
本发明不仅仅是对铝型材的简单改造。而是在铝型材的有效部位增加了一条相应强度的扁钢材。是目前市场上没有的材料。带来的优点是:提高电池板的整体强度和抗冲击的能力。并能有效的降低材料成本。(如果要达到同样的强度仅 仅是使用铝合金材料的话。铝合金的材料成本将大幅提高。)
本发明将传统的电池板框的结构进行改造以后,建筑市场就能多了一个品种。并且可以产生绿色的新能源的产品。市场的接受度将大幅的提高。本发明的产品在安装施工方面也比原来的电池板的安装更方便。成本更低。1:老产品的安装需要支架支持。本产品是不需要的:2:建筑屋顶如果已经漏水了。就必须进行重新翻建以后才可以安装太阳能发电板。如使用本发明的产品就不需要了。稍微进行一下房梁的加固就可以直接进行安装施工。极大的提高了产品的可行性和普及性,有助于绿色能源战略能得到更具体的实施。
综上可知,本发明的太阳能发电电池合金瓦以及太阳能组件与现有技术相比,本发明在原来的功能不改变的情况下。增加了其他的多个功能:
1:防水功能:在原来的电池板的基础上增加一条盖板,再增加一条底板使原来电池板具有防水的功能。
2:防火功能:通过对原来电池板框架的改造以后。增加安装一条防火板的槽口。将防火板插入在该槽口内。使产品达到具有防火的功能。
3:隔热功能:增加了防火板以后。在电池板和防火板之间有30mm至70mm空气层。通过对电池板框架的上下两个端面进行开孔处理。使空气能自由的流通。空气流通的自然原理是热空气向上冷空气向下。使热空气向上自然排出。提高电池板的发电效率。降低室的温度。
4:隔音功能:增加了防火板以后。碰到下雨天或者冰雹天的时候。能有效的起到隔音的功能。
以上所述的实施例仅用于说明本发明的技术思想及特点,其目的在于使本领域内的技术人员能够了解本发明的内容并据以实施,不能仅以本实施例来限定本发明的专利范围,即凡依本发明所揭示的精神所作的同等变化或修饰,仍落在本发明的专利范围内。

Claims (6)

  1. 一种太阳能发电电池合金瓦,其特征在于,包括:一对矩形管状的第一铝钢合成材(1)、一对矩形管状的第二铝钢合成材(2)组合成的边框以及分别固定在边框上下两面的光伏板(3)和隔热板(5);
    所述第一铝钢合成材(1)沿其长度方向分别设有两个平行的夹持槽口,并且所述第二铝钢合成材(2)沿其长度方向分别设有两个平行的夹持槽口,所述第一铝钢合成材(1)的夹持槽口以及第二铝钢合成材(2)的夹持槽口共同夹持所述光伏板(3)以及隔热板(5),所述隔热板(5)夹持在所述第一铝钢合成材(1)或第二铝钢合成材(2)的内侧管壁(12、22)之间,所述光伏板(3)夹持在所述第一铝钢合成材(1)或第二铝钢合成材(2)内侧管壁(13、23)之间,所述第一铝钢合成材(1)和第二铝钢合成材(2)的内壁中固定至少一条加强钢条(4);
    所述第一铝钢合成材(1)上与夹持槽口相反的一侧延展出一底板(11),所述第二铝钢合成材(2)上与夹持槽口相反的一侧延展出一盖板(21),所述底板(11)和盖板(21)分别位于所述第一铝钢合成材(1)和第二铝钢合成材(2)组合成的边框两侧。
  2. 如权利要求1所述的太阳能发电电池合金瓦,其特征在于:外侧管壁(13)的内壁固定一条所述加强钢条(4)。
  3. 如权利要求1所述的太阳能发电电池合金瓦,其特征在于:外侧管壁(23)的内壁固定一条所述加强钢条(4)。
  4. 如权利要求2或3所述的太阳能发电电池合金瓦,其特征在于:水平方向的所述第一铝钢合成材(1)或第二铝钢合成材(2)的管壁上分别设有垂直方向的若干透气孔(6)。
  5. 如权利要求4所述的太阳能发电电池合金瓦,其特征在于:所述光伏板(3)平行于所述隔热板(5),且所述光伏板(3)与隔热板(5)之间的间距为30mm至70mm。
  6. 如权利要求5所述的太阳能发电电池合金瓦,其特征在于:一组所述第一铝钢合成材(1)夹持所述光伏板(3)相邻的两边,一组所述第二铝钢合成材(2)夹持所述光伏板(3)另外两边。
PCT/CN2014/001122 2014-09-21 2014-12-15 一种太阳能发电电池合金瓦 WO2016041108A1 (zh)

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