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    • 61. 发明授权
    • Flat roof solar racking system
    • 平屋顶太阳能货架系统
    • US08572909B2
    • 2013-11-05
    • US13425871
    • 2012-03-21
    • Angel M. RiveraStanley E. Mayer
    • Angel M. RiveraStanley E. Mayer
    • E04D13/18H01L31/042
    • H02S20/24F24S25/13F24S25/16F24S25/636F24S40/85F24S2025/6008Y02B10/12Y02B10/20Y02E10/47
    • A flat roof racking system configured for receiving solar panels having electrically conductive frames, the racking system comprising substantially parallelly disposed panel support structures, spacer bars and retaining and grounding clips pairs, each panel support structure comprises a first end, a second end, a top member having a first channel section connected to a second channel section and two ends, and a bottom member having a channel section and two ends. The first and second channel sections are disposed in a plane but at an angle from one another and each end of the bottom member is fixedly connected to an end of the top member such that the top member is configured to make a first tilt angle at the first end with the bottom member and a second tilt angle at the second end with the bottom member.
    • 一种平顶屋顶系统,其构造成用于接收具有导电框架的太阳能电池板,所述支架系统包括基本上平行布置的面板支撑结构,间隔条和保持和接地夹子对,每个面板支撑结构包括第一端,第二端,顶部 其具有连接到第二通道部分和两端的第一通道部分,以及具有通道部分和两端的底部部件。 第一和第二通道部分设置在一个平面中但彼此成一定角度,并且底部构件的每个端部固定地连接到顶部构件的端部,使得顶部构件构造成在第一和第二通道部分 第一端部具有底部构件,并且在第二端处具有与底部构件的第二倾斜角度。
    • 62. 发明授权
    • Bearing frame for a panel such as a photoelectric panel and building external wall including such frames
    • 用于诸如光电面板的面板的轴承框架和包括这种框架的建筑物外墙
    • US08549800B2
    • 2013-10-08
    • US12596621
    • 2008-04-17
    • Jean-Pierre ReyalYves Jautard
    • Jean-Pierre ReyalYves Jautard
    • E04D13/18E04C2/52
    • H02S30/10F24S25/20F24S25/40F24S25/63F24S40/44F24S40/80H02S20/23Y02B10/12Y02B10/20Y02E10/47
    • The invention relates to a bearing frame for a panel, of the type comprising a peripheral structure (1, 1′) for receiving a panel (20), including at least three mounts (2, 3, 4, 5, 2′, 3′, 4′, 5′) defining a frame in which the lower face defines a reference plane (P, P′), in which at least one mount (2, 5; 5) includes a wing (90,100; 90′) extending on the entire length thereof towards the outside of the frame in parallel with the upper face of the frame, the frame comprising at least one precut metal strip (30) stamped, folded and assembled by welding, in particular laser welding, characterised in that the peripheral structure (1, 1′) is hollow and in that it further comprises inner and outer connection means (14, 16, 17) and an electric linking means (18) between the inner and outer connection means, provided inside the hollow peripheral structure.
    • 本发明涉及一种用于面板的轴承架,其类型包括用于接收面板(20)的外围结构(1,1'),该外围结构包括至少三个安装件(2,3,4,5,2',3) ',4',5'),其限定了一个框架,其中下表面限定了一个参考平面(P,P'),其中至少一个安装座(2,5,5)包括一个延伸 在框架的整个长度上与框架的上表面平行的框架的外部,框架包括通过焊接冲压,折叠和组装的至少一个预切割金属条(30),特别是激光焊接,其特征在于, 外围结构(1,1')是中空的,并且其还包括内部和外部连接装置(14,16,17)和位于内部和外部连接装置之间的电连接装置(18),其设置在中空外围结构 。
    • 63. 发明授权
    • Renewable energy system
    • 可再生能源系统
    • US08539724B2
    • 2013-09-24
    • US12924789
    • 2010-10-05
    • Todd J. BullivantSteven A. LewKyle J Tierney
    • Todd J. BullivantSteven A. LewKyle J Tierney
    • E04D13/18E04H14/00
    • H02S10/00H02S10/12H02S10/40H02S20/10H02S20/30H02S40/36Y02B10/12Y02B10/20Y02E10/50
    • Electrical power is generated from solar and wind sources thus reducing the need for fuel oil at military forward operating bases and main operating bases. A wind turbine and a solar cell panel are connected to a battery bank. Both the turbine and the solar cells are stored in two standard military shipping containers. When transported to the desired location, these sub-systems are easily set up for operation. The entire apparatus may be disassembled for re-transport and use at another location. Necessary container modifications to connect the system for use are made in such a way as not to alter the container's outside envelope, thus enabling normal transport of the container without damage to the modifications. Each of the solar cells have discs attached so that the solar panel can be assembled in the field by sliding each disc into a mounting channel. This disc and channel structure also allows each cell to be stored in the shipping container by using similar channels mounted back to back in a storage frame located in one of the containers. The solar panel is pivotally mounted in proximity to an edge of the shipping container using mounting elements which interfit with the already provided lift fittings on the container. A wiring harness plugs each solar cell to a conduit for connection to the battery charging system.
    • 电力来自太阳能和风力源,从而减少了在军事前沿作业基地和主要作业基地的燃油需求。 风力涡轮机和太阳能电池面板连接到电池组。 涡轮机和太阳能电池都存储在两个标准的军用集装箱中。 当运送到所需位置时,这些子系统容易设置以进行操作。 整个设备可以拆卸,以便在另一个位置重新运输和使用。 连接系统的必要的容器修改是以不改变容器的外部信封的方式进行的,从而能够正常地运输容器而不损坏修改。 每个太阳能电池具有附接的盘,使得太阳能电池板可以通过将每个盘滑动到安装通道中而在现场组装。 该盘和通道结构还允许通过使用背靠背安装在位于其中一个容器中的存储框架中的类似通道将每个单元格存储在运输容器中。 使用与已经提供的提升配件在容器上相配合的安装元件将太阳能面板枢转地安装在运输容器的边缘附近。 线束将每个太阳能电池插入到用于连接到电池充电系统的导管。
    • 66. 发明授权
    • Solar cell module securing structure
    • 太阳能电池模块固定结构
    • US08453394B2
    • 2013-06-04
    • US13543030
    • 2012-07-06
    • Shuichi Kobayashi
    • Shuichi Kobayashi
    • E04D13/18H01L31/042
    • H02S20/00F24S25/61F24S25/632F24S25/70F24S2025/013F24S2025/6002H02S20/23Y02B10/12Y02B10/20Y02E10/47Y02E10/50
    • A solar cell module securing structure includes a solar cell module, a first securing member that supports the solar cell module, a second securing member that includes an installation connecting portion having an installing portion on which the first securing member is installed, an inclined connecting portion extending from the installation connecting portion, and an abutting portion that is bent from the inclined connecting portion so as to extend along a structural surface of a roof structural member, and spacer members which are laminated between the first securing member and the second securing member at multiple stages. Further, a long hole portion having a long hole shape, which penetrates through the installing surface, is formed on the installing portion of the installation connecting portion, thereby making fine adjustment of a securing position of the first securing member with respect to the second securing member.
    • 太阳能电池模块固定结构包括太阳能电池模块,支撑太阳能电池模块的第一固定构件,第二固定构件,其包括具有安装有第一固定构件的安装部分的安装连接部分,倾斜连接部分 从所述安装连接部延伸出的抵接部,以及从所述倾斜连接部弯曲以沿着屋顶结构构件的结构面延伸的抵接部,以及分隔构件,所述间隔构件层叠在所述第一固定构件与所述第二固定构件之间 多个阶段 此外,在安装连接部分的安装部分上形成有穿过安装表面的具有长孔形状的长孔部分,从而对第一固定构件相对于第二固定件的固定位置进行微调 会员。
    • 67. 发明授权
    • Catenary cable solar panel suspension system
    • 悬链电缆太阳能电池板悬挂系统
    • US08448390B1
    • 2013-05-28
    • US13415213
    • 2012-03-08
    • Jonathan A. Clemens
    • Jonathan A. Clemens
    • E04D13/18F24J2/52
    • H02S20/10F24S25/10F24S25/50F24S25/636Y02B10/12Y02B10/14Y02B10/20Y02E10/47
    • A system of suspended photovoltaic modules relative to a surface wherein modules are suspended generally parallel and spaced apart along the length of dual pairs of catenary cables. A hanger assembly permits initial attachment of a module during installation as the cables are mounted to the rear surfaces of the modules via mid clamp assemblies. End clamp assemblies attach the modules to the cables proximate stanchions having two spaced posts joined by cross beams, a top cross beam angled to define an inclined plane. The respective pairs of cables supporting the modules are joined with cable cross ties to form a catenary shape. The modules may be suspended in a generally consistent inclined plane or a slightly concave curve. The catenary cables and clips are sized and shaped to allow the modules limited sway movement as necessary to reduce stresses and forces during wind or other adverse weather events.
    • 一种相对于表面的悬浮光伏模块的系统,其中模块沿着两对悬链线缆的长度大致平行并间隔开。 衣架组件允许在安装期间模块的初始附接,因为电缆通过中间夹具组件安装到模块的后表面。 端部夹具组件将模块连接到靠近支柱的电缆,其具有通过横梁连接的两个间隔的支柱,顶部横梁成角度以限定倾斜平面。 支撑模块的各对电缆与电缆十字架连接以形成悬链形状。 模块可以悬挂在大致一致的倾斜平面或稍微凹进的曲线中。 悬链线和夹子的尺寸和形状被设计成允许模块根据需要有限的摆动运动,以减少在风或其它恶劣天气事件期间的应力和力。