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    • 42. 发明授权
    • Photovoltaic module assembly
    • 光伏组件
    • US08756880B2
    • 2014-06-24
    • US13311113
    • 2011-12-05
    • Jeffery PeelmanNazoor BaigBrian Tell
    • Jeffery PeelmanNazoor BaigBrian Tell
    • E04D13/18
    • E04H15/58E04H4/10H01L31/042H02S20/00Y02B10/12Y02E10/50
    • A photovoltaic module assembly includes a photovoltaic module and a base layer. The photovoltaic module has a bottom side, a top side, a main body, and a peripheral edge strip. The peripheral edge strip includes a plurality of apertures formed therethrough. The base layer is disposed adjacent the bottom side of the photovoltaic module. The base layer has an underlying portion and a flap portion. The flap portion is folded over the peripheral edge strip of the photovoltaic module, and is disposed adjacent the top side of the photovoltaic module. The flap portion is attached to the underlying portion of the base layer through the plurality of apertures in the peripheral edge strip. The photovoltaic module is thereby secured to the base layer.
    • 光伏模块组件包括光伏模块和基层。 光伏模块具有底侧,顶侧,主体和周缘条。 周缘条带包括穿过其中形成的多个孔。 基底层邻近光伏组件的底侧设置。 底层具有下部和折片部分。 翼片部分折叠在光伏模块的周缘条上,并且邻近光伏模块的顶侧设置。 翼片部分通过周边边缘条带中的多个孔附接到基底层的下面部分。 因此光伏模块固定到基层。
    • 44. 发明授权
    • Integrated thermal module and back plate structure and related methods
    • 集成散热模块和背板结构及相关方法
    • US08739478B1
    • 2014-06-03
    • US13250908
    • 2011-09-30
    • Eric R. BurttSamuel Truthseeker
    • Eric R. BurttSamuel Truthseeker
    • E04D13/18
    • H02S20/23F24S10/50F24S20/67F24S25/35F24S25/40H02S40/42Y02B10/12Y02B10/20Y02E10/44Y02E10/47
    • An integrated solar module capable of being easily assembled for thermal solar application. The module includes a solar panel device having an aperture region and a backside region and a shaped thickness of material including a first side wall and a second side wall. The shaped thickness of material is characterized by a fire rating of at least A and has a mechanical strength to maintain a thickness free from penetration of moisture and a specific shape to couple with the backside region. Additionally, the module includes an air plenum provided between the backside region and the shaped thickness of material. The air plenum is configured to receive air flows from ambient via an intake region and guide the air flows toward an output region. The air flows are optionally let to pass through either or both of the first side wall and the second side wall.
    • 集成太阳能模块,能够轻松组装用于热太阳能应用。 该模块包括具有开口区域和背侧区域以及包括第一侧壁和第二侧壁的材料的成形厚度的太阳能电池板装置。 材料的成形厚度的特征在于具有至少A的防火等级,并且具有机械强度以保持厚度不受潮湿的渗透和特定形状与背面区域耦合。 此外,模块包括设置在背侧区域和成形厚度的材料之间的空气增压室。 空气增压室构造成经由进气区域接收来自环境的空气流,并将空气流引向输出区域。 任选地使空气流通过第一侧壁和第二侧壁中的一个或两个。
    • 45. 发明授权
    • Collapsible solar module support system and method for assembling the same
    • 可折叠太阳能组件支撑系统及其组装方法
    • US08726897B2
    • 2014-05-20
    • US13048054
    • 2011-03-15
    • Linus Eric Wallgren
    • Linus Eric Wallgren
    • F24J2/46B23P19/04A47G19/08E04D13/18H01L31/042
    • F24S25/13F24S40/85F24S2025/012F24S2025/02Y02B10/12Y02B10/20Y02E10/47
    • A collapsible rack assembly for supporting a solar module and methods of assembling the same are provided. The assembly is movable from a collapsed position to an assembled position. The assembly comprises a plurality of collapsible frames, each of which comprises a first leg, a second leg, and a third leg. The first leg extends substantially parallel to a support surface. The second leg extends from the first leg at a first angle relative to the first leg when the frame is assembled and supports the solar module at the first angle when assembled. The third leg extends from the first leg at a second angle relative to the first leg when the frame is assembled. The second and third legs are rotatably connected to the first leg. When in the collapsed position the legs are nested so that one of the legs is disposed within another of the legs.
    • 提供了一种用于支撑太阳能模块的可折叠机架组件及其组装方法。 组件可以从折叠位置移动到组装位置。 组件包括多个可折叠框架,每个框架包括第一腿部,第二腿部和第三腿部。 第一支腿基本上平行于支撑表面延伸。 当组装框架时,第二支腿相对于第一支腿以第一角度从第一支腿延伸,并且在组装时以第一角度支撑太阳能模块。 当组装框架时,第三条腿相对于第一条腿以第二角度从第一条腿延伸。 第二腿和第三腿可旋转地连接到第一腿。 当处于折叠位置时,腿被嵌套,使得腿中的一个被布置在另一个腿部中。
    • 47. 发明申请
    • ABOVE-DECK ROOF VENTING ARTICLE
    • 上海 - 屋顶露台文章
    • US20140115980A1
    • 2014-05-01
    • US13666123
    • 2012-11-01
    • 3M INNOVATIVE PROPERTIES COMPANY
    • John Scott EdwardsFrank William Klink
    • E04D13/17E04D13/18E04B7/00
    • E04D13/17E04D13/152F24F7/02
    • An exemplary building construction assembly for installation on a roof deck including a base layer and a channel structure coupled to the base layer and defining a plurality of channels is described. In an exemplary embodiment, the plurality of channels include a first airflow channel and second airflow channel extending in parallel through the channel structure. The plurality of channels further includes a venting channel between the first and second airflow channels and the base layer. The channel structure defines one or more apertures between the venting channel and each of the first and second airflow channels configured to allow airflow from the first and second airflow channels into the venting channel. The base layer defines one or more exit orifices in airflow communication with the venting channel and configured such that air in the venting channel exits the building construction assembly through the one or more exit orifices.
    • 描述了一种用于安装在屋顶甲板上的示例性建筑结构组件,其包括基底层和耦合到基层并且限定多个通道的通道结构。 在示例性实施例中,多个通道包括通过通道结构平行延伸的第一气流通道和第二气流通道。 多个通道还包括在第一和第二气流通道之间的通气通道和基础层。 通道结构限定了通气通道和第一和第二气流通道中的每一个的一个或多个孔,其构造成允许从第一和第二气流通道进入通气通道的气流。 底层限定一个或多个出口孔,其与通气通道气流连通并且被构造成使得排气通道中的空气通过一个或多个出口孔离开建筑物结构组件。
    • 48. 发明授权
    • Method and apparatus for assembling photovoltaic modules
    • 用于组装光伏组件的方法和装置
    • US08701360B2
    • 2014-04-22
    • US12151806
    • 2008-05-09
    • Stephen Daniel Ressler
    • Stephen Daniel Ressler
    • H02N6/00H01L31/042H01L31/00E04D13/18E04H14/00
    • E04D3/32E04D1/08H02S20/23H02S20/25Y02B10/12Y10T29/49117
    • A method of assembling a solar array includes forming at least one substrate member that includes an upper surface and a lower surface. The lower surface is contoured with a shape that at least partially conforms to at least a portion of a contoured roof. The upper surface includes at least one elevated portion and a plurality of substantially planar regions. The at least one elevated portion is offset a predetermined height above at least one other portion of the substrate member. Each of the plurality of substantially planar regions is a distance above the at least one elevated portion and is oriented to receive at least one photovoltaic laminate. The method also includes coupling the at least one substrate member to at least a portion of the contoured roof.
    • 一种组装太阳能电池阵列的方法包括形成至少一个包括上表面和下表面的衬底构件。 下表面具有至少部分地符合轮廓屋顶的至少一部分的形状的轮廓。 上表面包括至少一个升高部分和多个基本平坦的区域。 所述至少一个提升部分偏移到所述基底构件的至少一个其它部分上方的预定高度。 多个基本上平坦的区域中的每一个是至少一个提升部分之上的距离,并且被定向成接收至少一个光伏层压板。 该方法还包括将至少一个基底构件联接到轮廓顶部的至少一部分。
    • 50. 发明授权
    • Building roof fascia, coping and/or solar panel connector arrangement
    • 建筑屋顶面板,应对和/或太阳能电池板连接器布置
    • US08640402B1
    • 2014-02-04
    • US13415081
    • 2012-03-08
    • Henry H. Bilge
    • Henry H. Bilge
    • E04D13/18
    • E04D13/155E04D3/405E04D13/0762E04D13/103E04D13/152F24S20/67F24S25/61F24S25/632Y02B10/20Y02E10/44Y02E10/47
    • A building roof fascia and coping connector arrangement includes a cleat having a planar wall, a spacer extending inwardly from the planar wall for spacing the planar wall away from a building side when the cleat is secured thereto and having an opening permitting air flow therethrough and between the planar wall and the building, an upper securement assembly at an upper end of the planar wall, and a lower securement assembly at a lower end of the planar wall, with coping secured across an outer surface of the planar wall and connected with the upper and lower securement assemblies; and a vertical load bearing member seating on the building roof when the cleat is secured to the building side, while being connected with an upper end of the cleat to transfer a load from the cleat and the coping to the building roof.
    • 建筑物屋顶面板和应对连接器装置包括具有平面壁的防滑板,从平面壁向内延伸的间隔板,用于当防滑板固定在其上时将平面壁与建筑物侧隔开,并具有允许空气流过的开口, 平面壁和建筑物,在平壁的上端的上固定组件,以及在平壁的下端处的下固定组件,其具有固定在平壁的外表面上且与上壁连接的下固定组件 和下固定组件; 以及当防滑板固定到建筑物侧面时,在与防滑板的上端连接以将来自防滑板的负载和应对位置传递到建筑物屋顶的同时固定在建筑物屋顶上的垂直承载构件。