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    • 5. 发明申请
    • SUNSHADE WITH INTEGRATED SOLAR THERMAL COLLECTOR
    • 带集成太阳能热收集器的SUNSHADE
    • US20140116420A1
    • 2014-05-01
    • US13663431
    • 2012-10-29
    • BIO-TECTURE, INC.
    • Yves B. Lefay
    • F24J2/04B21D53/02
    • F24S10/753F24S10/00F24S2020/183F24S2020/186Y02B10/20Y02E10/44Y10T29/49355
    • Embodiments disclosed provide a sunshade apparatus that integrates a solar collector into an attractive architectural sunshade, and a system for deriving energy, and in particular heat, from such an apparatus. The sunshade is comprised of between one and several solar collector panels. Each panel has an infrared clear pass face and contains tubing. The panel may also contain a layer of insulation underneath the tubing. The tubing contains a fluid and is connected to a solar water system. The clear face extends for most but not all of the upper surface of the panel, such that the ends are solid to provide structural support for the panel. The panels are designed in advance for use in connection with an architectural feature, such as a window on a building, with angles for each of the panels and in some cases the shade as well. Aesthetic architectural options including interior beam colors and clear face coatings are contemplated.
    • 所公开的实施例提供一种将太阳能收集器集成到有吸引力的建筑遮阳罩中的遮阳装置,以及用于从这种装置获得能量,特别是热的系统。 遮阳板由一个和多个太阳能收集器板组成。 每个面板都有一个红外透明面,并包含管道。 面板还可以在管道下面包含一层绝缘层。 管道包含流体并连接到太阳能水系统。 透明表面延伸到面板的大部分但不是全部的上表面,使得端部是固体的,以为面板提供结构支撑。 这些面板预先设计用于建筑特征,例如建筑物上的窗户,每个面板的角度以及在某些情况下也是阴影。 考虑到美观的建筑选择,包括内部光束颜色和透明的表面涂层。
    • 6. 发明授权
    • Three-dimensional wind-light congregating power generating system with spherical joints
    • 具有球形接头的三维风光聚集发电系统
    • US08674547B2
    • 2014-03-18
    • US13260566
    • 2008-12-16
    • Weiqing Shen
    • Weiqing Shen
    • H02J7/34F03D9/00
    • F03D9/007F03D1/04F03D3/0427F03D3/0463F03D3/049F03D9/11F03D9/25F03D13/20F05B2240/13F24S10/00H02S10/12Y02E10/72Y02E10/74Y02P70/523Y10T307/658
    • A three-dimensional wind-light congregating power generating system with spherical joints includes a spherical joint wind-light congregating device (10), a spherical joint wind-light trapping device (20), both of which are assembled through spherical joints, and a vertical axis wind generator (30), wherein the profile of the spherical joint wind-light congregating device (10) is the shape of rectangular paralleling and comprises four wind lateral guiding boards (15) equally spaced around a center, a gradually narrowing wind inlet passage (150) is formed between adjacent wind lateral guiding boards (15), and the wind inlets of the wind inlet passages (150) are located respectively at the four sides of the spherical joint wind-light congregating device (10); the spherical joint wind-light trapping device (20) comprises wind-light trapping rods (22) and wind-light trapping films (21) for absorbing solar energy; the vertical axis wind generator (30) is mounted in the center of the spherical joint wind-light congregating device (10). The present power generating system applies an assembled structure with spherical joints, the components of the system can be produced in standardization and be assembled together by simple tools, and a plurality of miniwatt power generating systems can be assembled to a high power generating system; the power generating system can generate electricity efficiently all day even in the condition of gentle breeze and weak light.
    • 具有球形接头的三维风光聚光发电系统包括球形接头风光聚集装置(10),球形接头风光捕获装置(20),它们都通过球形接头装配, 纵轴风力发电机(30),其中,所述球形接头风光聚集装置(10)的轮廓为矩形平行的形状,并且包括围绕中心等间隔开的四个风向引导板(15),逐渐变窄的风入口 通道(150)形成在相邻的风向引导板(15)之间,风向入口通道(150)的入口分别位于球形接头风光聚集装置(10)的四侧。 球形关节风光捕获装置(20)包括用于吸收太阳能的风光捕获杆(22)和风光捕获膜(21) 垂直轴风力发电机30被安装在球形接头风光聚集装置10的中心。 本发明的发电系统采用具有球形接头的组装结构,系统的部件可以通过简单的工具进行标准化生产并组装在一起,并可将多个小型发电系统组装到大功率发电系统; 即使在温和微弱的光线条件下,发电系统也能整天发电。
    • 7. 发明授权
    • Methods for fabricating thermochromic filters
    • 制造热致变色滤光片的方法
    • US08665414B2
    • 2014-03-04
    • US12545051
    • 2009-08-20
    • Richard M. PowersWil McCarthyMatthew Bryant Kish
    • Richard M. PowersWil McCarthyMatthew Bryant Kish
    • G02F1/133G02F1/1335G02F1/1337G02F1/1339G02F1/13G02F1/1341G02F1/01C09K19/02
    • G02F1/1334C09K2219/13F24S10/00F24S50/80G02B5/23G02F1/132G02F1/133305G02F1/1339Y02E10/44
    • Thermochromic liquid crystal filters are fabricated by providing two polarizers oriented at offset polarity with respect to each other; providing alignment structures adjacent the inner surfaces of the polarizers; placing a plurality of spacers between the polarizers; and filling a space created by the spacers with a thermotropic liquid crystal that acts as a depolarizer in a nematic state. The filter acts as a wave block when the liquid crystal is in an isotropic state. Alternatively, the filters can be created by encapsulating a thermochromic liquid crystal with a polymer material to form a flexible film and orienting the thermochromic liquid crystal in the polymer material to create a structure that functions as a thermochromic optical filter. Such filters can control the flow of light and radiant heat through selective reflection, transmission, absorption, and/or re-emission. The filters have particular application in passive or active light-regulating and temperature-regulating films and materials.
    • 通过提供两个相对于偏移极性取向的偏振器来制造热致变色液晶滤波器; 提供邻近偏振器的内表面的对准结构; 在偏振器之间放置多个间隔物; 以及用向列型态作为去极化器的热致液晶填充由间隔物产生的空间。 当液晶处于各向同性状态时,滤波器作为波形块。 或者,可以通过用聚合物材料封装热变色液晶以形成柔性膜并且将热致变色液晶定向在聚合物材料中以产生用作热变色光学滤光器的结构来产生滤光片。 这种过滤器可以通过选择性反射,透射,吸收和/或再发射来控制光和辐射热的流动。 滤光片在被动或主动调光和温度调节膜和材料中具有特殊应用。