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    • 2. 发明授权
    • Lightweight, self-ballasting photovoltaic roofing assembly
    • 轻便,自镇流光伏屋顶组件
    • US5746839A
    • 1998-05-05
    • US629052
    • 1996-04-08
    • Thomas L. Dinwoodie
    • Thomas L. Dinwoodie
    • E04D13/00E04D13/18F24J2/52H01L31/042H01L31/048
    • F24J2/5239F24J2/5237H02S20/24F24J2/4638F24J2002/467F24J2002/4692F24J2002/5292Y02B10/12Y02B10/20Y02E10/47Y10S136/291
    • A photovoltaic roofing assembly comprises a roofing membrane (102), a plurality of photovoltaic modules (104, 106, 108) disposed as a layer on top of the roofing membrane (102), and a plurality of pre-formed spacers, pedestals or supports (112, 114, 116, 118, 120, 122) which are respectively disposed below the plurality of photovoltaic modules (104, 106, 108) and integral therewith, or fixed thereto. Spacers (112, 114, 116, 118, 120, 122) are disposed on top of roofing membrane (102). Membrane (102) is supported on conventional roof framing, and attached thereto by conventional methods. In an alternative embodiment, the roofing assembly may have insulation block (322) below the spacers (314, 314', 315, 315'). The geometry of the preformed spacers (112, 114, 116, 118, 120, 122, 314, 314', 315, 315') is such that wind tunnel testing has shown its maximum effectiveness in reducing net forces of wind uplift on the overall assembly. Such construction results in a simple, lightweight, self-ballasting, readily assembled roofing assembly which resists the forces of wind uplift using no roofing penetrations.
    • 光伏屋顶组件包括屋顶隔膜(102),多个光伏模块(104,106,108),其设置为屋顶隔膜(102)的顶部上的层,以及多个预先形成的间隔物,基座或支撑 (112,114,116,118,120,122),其分别设置在多个光伏模块(104,106,108)下方并与之成一体或固定在其上。 隔板(112,114,116,118,120,122)设置在屋顶隔膜(102)的顶部。 膜(102)支撑在传统的屋顶框架上,并通过常规方法附接到其上。 在替代实施例中,屋顶组件可以在间隔件(314,314',315,315')下方具有绝缘块(322)。 预制间隔件(112,114,116,118,120,122,314,314',315,315')的几何形状使得风洞测试已经显示出其在总体上降低风力提升的净力的最大效力 部件。 这种结构产生简单,重量轻,自流平,易于组装的屋顶组件,其抵抗使用无屋顶穿透的风隆起力。
    • 4. 发明授权
    • Solar heating assembly
    • 太阳能加热总成
    • US4102324A
    • 1978-07-25
    • US708213
    • 1976-07-23
    • Oliver E. Netherton
    • Oliver E. Netherton
    • F24J2/10F24J2/52F24J3/02
    • F24J2/5232F24J2/10F24J2002/1023F24J2002/1071F24J2002/5292Y02B10/20Y02E10/47
    • A solar heating assembly including a radiant energy collector having a casing where fluid conduit is mounted therein in substantially suspended fashion relative to the interior space of the casing and angularly oriented, reflective wall surfaces disposed to essentially concentrate the radiant energy on the fluid conduit so as to heat the interior space of the casing and the fluid within the conduit. A brace frame is mounted on the ground or other surface and comprises a plurality of support columns wherein the casing is adjustably mounted adjacent the upper portions of the support columns and brace frame in spaced relation to the ground. A plurality of exercise devices such as children's gym set are mounted in substantially suspended relation wherein the collector assembly of the solar heating assembly is used in combination with the brace frame which is specifically in the form of an exercise device or gym set.
    • 一种太阳能加热组件,包括辐射能量收集器,其具有壳体,其中流体导管相对于壳体的内部空间以基本上悬挂的方式安装在其中,并且角度定向的反射壁表面被设置为基本上将辐射能量集中在流体导管上, 以加热壳体的内部空间和管道内的流体。 支架框架安装在地面或其他表面上并且包括多个支撑柱,其中壳体可相对于地面间隔开地可调节地安装在支撑柱和支架框架的上部附近。 许多健身器材例如儿童健身器具以基本上悬挂的关系安装,其中太阳能加热组件的收集器组件与具体以锻炼装置或健身器具的形式的支架框架结合使用。
    • 5. 发明授权
    • Solar energy panel
    • 太阳能面板
    • US5647915A
    • 1997-07-15
    • US663512
    • 1996-06-13
    • Charles Zukerman
    • Charles Zukerman
    • E04D13/18H01L31/042H01L31/048
    • F24J2/525F24J2/5203H01L31/048H02S20/23F24J2002/5292Y02B10/12Y02B10/20Y02E10/47Y02E10/50Y10S136/291
    • A combined solar energy panel and roof element, which provides an additional layer of weather proofing to a building, as well as providing an electric power source. The solar energy panel is comprised of a translucent polymeric pane, with electrically interconnected photovoltaic cells laminated onto the underside of the polymeric pane. A polymeric frame is attached to the underside of the pane contiguous to the edges of the pane. Anchor blocks are adhered to the roof and the panel is attached to the roof at the anchor blocks, where several anchor blocks support the frame attached to the panel and each anchor block may support the frames of more than one panel. A plurality of solar energy panels may be arranged in an array, whereby waterproofing means seals any spaces between the panels.
    • 组合的太阳能板和屋顶元件,为建筑物提供额外的防风雨层,以及提供电源。 太阳能板由半透明聚合物板组成,其中电互连的光伏电池层压在聚合物窗板的下侧。 聚合物框架连接到与窗格边缘相邻的窗格的下侧。 锚块被粘附到屋顶,并且面板在锚块处附接到屋顶,其中多个锚块支撑附接到面板的框架,并且每个锚块可以支撑多于一个面板的框架。 多个太阳能面板可以排列成阵列,由此防水装置密封面板之间的任何空间。
    • 6. 发明授权
    • Thermally regulated photovoltaic roofing assembly
    • 热稳压光伏屋面组件
    • US5505788A
    • 1996-04-09
    • US267499
    • 1994-06-29
    • Thomas L. Dinwoodie
    • Thomas L. Dinwoodie
    • E04D13/18F24J2/34F24J2/52H01L31/042H01L31/048H01L31/052
    • H01L31/052F24J2/34F24J2/5205F24J2/5228F24J2/5235F24J2/5237F24J2/5239H02S20/23F24J2/4638F24J2002/4676F24J2002/5292Y02B10/12Y02B10/20Y02E10/47Y02E10/50Y10S136/291
    • A photovoltaic roofing assembly comprises a roofing membrane (102), a plurality of photovoltaic modules (104, 106, 108, 110) disposed as a layer on top of the roofing membrane (102), and a plurality of pre-formed spacers, pedestals or supports (112, 114, 116, 118, 120, 122) which are respectively disposed below the plurality of photovoltaic modules (104, 106, 108, 110) and integral therewith, or fixed thereto. Spacers (112, 114, 116, 118, 120, 122) are disposed on top of roofing membrane (102). Membrane (102) is supported on conventional roof framing, and attached thereto by conventional methods. In an alternative embodiment, the roofing assembly may have a tapered profile for orienting modules (204, 206, 208, 210) in a direction of increased sun exposure. Other embodiments include the use of phase change material for temperature regulation, and incorporating an insulation block into the assembly as a means of spacing and of building thermal control. Such construction results in a simple, readily assembled roofing assembly which regulates the temperature of the photovoltaic module and roofing membrane and avoids the need for rooting penetrations for hold-down to the building rooftop. Photovoltaic modules (104, 106, 108, 110) serve the purpose of electric generator, and in addition, the multiple purposes of ballast, UV block, and weather protector for the insulation block and roofing membrane below. A fluid convects within the passageways created by the spacers, transferring heat from the backside of the photovoltaic modules. Rainwater drains through the joints between the integral modules, onto and over the roofing membrane below.
    • 光伏屋顶组件包括屋顶膜(102),多个光伏模块(104,106,108,110),其设置为屋顶隔膜(102)的顶部上的层,以及多个预先形成的间隔件 或分别设置在多个光伏模块(104,106,108,110)下方并与之成一体或固定在其上的支撑件(112,114,116,118,120,122)。 隔板(112,114,116,118,120,122)设置在屋顶隔膜(102)的顶部。 膜(102)支撑在传统的屋顶框架上,并通过常规方法附接到其上。 在替代实施例中,屋顶组件可以具有用于在增加的阳光照射的方向上定向模块(204,206,208,210)的锥形轮廓。 其他实施例包括使用相变材料进行温度调节,并且将绝缘块作为间隔和建筑物热控制的手段并入组件中。 这样的结构形成了一个简单,容易组装的屋顶组件,其调节光伏模块和屋顶膜的温度,并且避免了用于压住建筑物屋顶的生根穿透的需要。 光伏模块(104,106,108,110)用于发电机的目的,此外,还有用于下面的绝缘块和屋顶膜的压载物,UV阻挡层和气候保护器的多个目的。 由间隔件产生的通道内的流体对流,从光伏模块的背面传递热量。 雨水通过整体模块之间的接缝排入下面的屋顶膜上。
    • 7. 发明授权
    • Apparatus for supporting a solar collector unit
    • 用于支撑太阳能收集器单元的装置
    • US5769068A
    • 1998-06-23
    • US803017
    • 1997-02-21
    • Kei Takahashi
    • Kei Takahashi
    • F24J2/52F28F9/007F24J2/00
    • F24J2/5241F24J2/5228F24J2002/5286F24J2002/5292Y02E10/47
    • An apparatus for supporting a solar collector unit comprises a pair of spaced carriers, and a support net for supporting a solar collector unit thereon. The support net includes a set of longitudinal wires extending between the carriers, and a set of transverse wires extending in a direction transverse to the longitudinal wires and welded thereto. A pair of tension mechanisms are mounted to the carriers to adjust the tension of the longitudinal wires. The tension mechanisms include holders for holding opposite ends of the longitudinal wires between the carriers, and fasteners operatively associated with the holders to adjust the tension of the longitudinal wires so that the longitudinal wires are aligned in a transverse direction.
    • 用于支撑太阳能收集器单元的装置包括一对间隔的载体,以及用于在其上支撑太阳能收集器单元的支撑网。 支撑网包括在载体之间延伸的一组纵向线,以及一组在垂直于纵向线并且与其焊接的方向上延伸的横向线。 一对张紧机构安装到载体上以调节纵向丝线的张力。 张紧机构包括保持器,用于保持载体之间的纵向线的相对端,以及与保持器可操作地相关联的紧固件以调节纵向线的张力,使得纵向线在横向方向上对准。