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    • 6. 发明授权
    • Solar collector, system, and method of use
    • 太阳能收集器,系统和使用方法
    • US09347687B2
    • 2016-05-24
    • US13804670
    • 2013-03-14
    • Ronald D. HeatonJustin J. Lawrence
    • Ronald D. HeatonJustin J. Lawrence
    • F24J2/50F24J2/24F24J2/48F24J2/28F24J2/30F24J2/36
    • F24S10/74F24S10/30F24S10/73F24S10/80F24S20/50F24S70/14F24S80/525Y02B10/20Y02E10/44
    • Provided is a light-weight, easy to install, use and remove solar collector that may be manufactured inexpensively from readily available common materials, and which may be installed, removed, moved, and reinstalled almost anywhere by almost anyone without special tools or skills. In one embodiment, the solar collector comprises one or more collection tubes formed from attaching clear or substantially translucent material, such as clear vinyl, along the edges and over the top of dark colored or otherwise solar-energy-absorbant material, such as black polyethylene plastic, black vinyl-coated polyester, or any other suitable material, which may be insulated by an insulative layer. A dark-colored or otherwise solar-energy-absorbant air-permeable layer may also be located in the collection tube to increase heating of the air flowing through the collection tube. In addition to the solar collector is a fan, which may take the form of a forced-air window unit with thermostatic controls.
    • 提供了一种重量轻,易于安装,使用和移除太阳能收集器,其可以由容易获得的普通材料廉价地制造,并且几乎可以在几乎任何地方安装,移除和移动并重新安装,没有特殊的工具或技能。 在一个实施例中,太阳能收集器包括一个或多个收集管,其通过沿着边缘并且在深色或其它太阳能吸收材料的顶部上附着透明或基本上半透明的材料,例如透明的乙烯基而形成,例如黑色聚乙烯 塑料,黑色乙烯基涂覆的聚酯或任何其它合适的材料,其可被绝缘层绝缘。 深色或其他太阳能吸收透气层也可以位于收集管中,以增加流经收集管的空气的加热。 除了太阳能收集器之外,风扇还可以采用具有恒温控制的强制风窗单元的形式。
    • 7. 发明授权
    • Solar energy apparatus and methods
    • 太阳能装置和方法
    • US09318996B2
    • 2016-04-19
    • US14597463
    • 2015-01-15
    • James H. Bushong, Jr.
    • James H. Bushong, Jr.
    • H02S40/44F24J2/28B62M3/08
    • H02S40/44B62M3/08F24S10/80Y02B10/20Y02B10/70Y02E10/44Y10T74/2168
    • The invention is for improved solar energy collection apparatus that utilize one or more 3-dimensional porous metal absorber plates that contain one or more materials that can harness either or both solar thermal and solar electric energy. Working fluid can traverse throughout the depth, width, and length of the 3-dimensional porous metal absorber plate in order to extract solar thermal energy absorbed therein. Working fluid can be guided throughout the porous metal absorber plate in an alternating flow pattern with contoured cover glazing, to extract solar energy at high efficiency while reducing flow resistance. Working fluid that contains materials that exhibit the photovoltaic effect can traverse within the solar energy collection apparatus. The utility includes a wide variety of practical uses such as energy for hot water heating, space heating, aquaculture, industrial production processes, and other thermal or electric energy applications. The invention can also be utilized for other multi-functionality purposes such as combined effects of air pollution reduction and solar energy harvest inside the improved solar energy collectors.
    • 本发明是用于改进的太阳能收集装置,其利用一个或多个三维多孔金属吸收板,其包含一种或多种能够利用太阳能热和太阳能电能中的一种或两种的材料。 工作流体可以穿过三维多孔金属吸收板的整个深度,宽度和长度,以便提取其中吸收的太阳能热能。 工作流体可以以具有轮廓的盖玻璃的交替流动模式贯穿多孔金属吸收板,以高效率提取太阳能,同时降低流动阻力。 包含表现出光电效应的材料的工作流体可以在太阳能收集装置内穿过。 该实用程序包括各种各样的实际用途,例如用于热水加热,空间加热,水产养殖,工业生产过程以及其它热或电能应用的能量。 本发明还可以用于其他多功能目的,例如改进的太阳能收集器内的空气污染减少和太阳能收集的组合效应。