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    • 3. 发明申请
    • REFLECTIVE PHOTOVOLTAIC SOLAR CONCENTRATION SYSTEM
    • 反射光伏太阳能集中系统
    • US20130298990A1
    • 2013-11-14
    • US13876468
    • 2011-09-22
    • Sebastian Caparros Jimenez
    • Sebastian Caparros Jimenez
    • H01L31/052
    • H01L31/0525F24S23/71F24S23/74F24S23/79F24S2023/833F24S2023/834G02B19/0028G02B19/0042G02B19/0076H01L31/0547Y02E10/40Y02E10/52
    • A reflective photovoltaic solar concentration system is formed by a primary reflecting mirror (1) changing the direction of the light beams entering the system and redirecting the beams toward a secondary reflecting mirror (2), changing again the direction of the received light beams and redirecting them toward a tertiary optical element (3), which in turn transmits the received light beams to a photovoltaic receiver. The tertiary optical element (3) has a convex-curved input face (4) of circular section, and truncated pyramid section (5) which transmits the received light beams by complete internal reflection to a photovoltaic receiver. The leading end (6) of the truncated pyramid section (5) has, immediately after the input face (4), a circular cross-section (6) which is progressively transformed into a square cross-section until reaching the trailing end (7) of the truncated pyramid section (5).
    • 反射光伏太阳能集中系统由主反射镜(1)形成,主反射镜(1)改变进入系统的光束的方向,并将光束重新定向到次级反射镜(2),再次改变接收的光束的方向和重定向 它们朝向第三光学元件(3),其又将接收的光束传输到光伏接收器。 第三光学元件(3)具有圆形截面的凸曲面输入面(4)和通过完全内部反射将接收的光束透射到光电接收器的截锥形部分(5)。 截顶金字塔部分(5)的前端(6)在输入面(4)的紧后面具有逐渐变换成正方形横截面直到到达后端(7)的圆形横截面(6) )的截锥体部分(5)。
    • 4. 发明申请
    • PHOTOVOLTAIC SOLAR CONCENTRATION SYSTEM
    • 光伏太阳能集中系统
    • US20130042915A1
    • 2013-02-21
    • US13579647
    • 2011-02-02
    • Sebastian Caparros JimenezThomas Lewis Rowley Davenport
    • Sebastian Caparros JimenezThomas Lewis Rowley Davenport
    • H01L31/0232
    • G02B19/0076F24S23/31G02B3/08G02B19/0028G02B19/0042H01L31/0543Y02E10/40Y02E10/52
    • A concentrated photovoltaic solar system has a Fresnel lens concentrator (1) with a constant facet thickness in a first zone, a the central area of the lens (1), then has a constant facet height in a second zone at the peripheral area of the lens (1), in order to maximize the optical efficiency of the lens (1) and maintain the typical system aberrations under control. The concentrated photovoltaic solar system also includes a secondary optical element 2 with a circular intake face (3) and convex curvature, a section to accommodate a rim (4), and a pyramid section (6), the transverse section changing from a circle into a square in the lower end (7) where the photovoltaic receiver is housed. This system improves optical and thermodynamic efficiency of existing systems, facilitates the production and installation in the photovoltaic module, and reduces manufacturing-related costs.
    • 集中的光伏太阳能系统具有菲涅耳透镜集中器(1),其在第一区域具有恒定的小平面厚度,透镜的中心区域(1),然后在第二区域的周边区域具有恒定的小平面高度 透镜(1),以便最大化透镜(1)的光学效率并且保持典型的系统像差在控制之下。 集中的光伏太阳能系统还包括具有圆形入口面(3)和凸曲率的二次光学元件2,用于容纳边缘(4)的部分和金字塔形部分(6),横截面从圆形变为 光伏接收器容纳在下端(7)中的正方形。 该系统提高了现有系统的光学和热力学效率,便于光伏组件的生产和安装,并降低了制造相关成本。