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    • 1. 发明申请
    • CAPTURING REFLECTED SOLAR EMR ENERGY
    • 捕获反射的太阳能EMR能量
    • WO2015038815A2
    • 2015-03-19
    • PCT/US2014/055249
    • 2014-09-11
    • SEGAL, Edward
    • SEGAL, Edward
    • H01L31/0547F24S23/30F24S23/77F24S23/79Y02E10/40Y02E10/52
    • Surfaces (250, 265) containing conversion elements may be positioned and shaped to concentrate or manipulate convergence of sunlight, for example, to produce a steady reflected beam within a wide range of concentration levels and to direct reflected beams for multiple reflections from other solar power conversion mediums (295). The surfaces (250, 265) and mediums (295) can be positioned to avoid blocking reflected or other light so that unconverted energy may be directed to other surfaces and has several chances to be absorbed or converted. All of the devices (250, 265, 295) may fit within the total converting surface area, e.g., within a surface area of a concentrator (230). The method of solar power conversion may employ active and passive methods simultaneously and/or sequentially.
    • 包含转换元件的表面(250,265)可以被定位和成形以集中或操纵太阳光的会聚,例如,以在宽范围的浓度水平内产生稳定的反射光束,并且将反射光束引导到来自其他太阳能发电的多次反射 转化介质(295)。 可以将表面(250,265)和介质(295)定位成避免阻挡反射或其他光,使得未转换的能量可以被引导到其它表面并且具有几种被吸收或转换的机会。 所有装置(250,265,295)可以适合于总转换表面积,例如在集中器(230)的表面区域内。 太阳能转换的方法可以同时和/或顺序地使用主动和被动的方法。
    • 2. 发明申请
    • CAPTURING REFLECTED SOLAR EMR ENERGY
    • 捕获反射的太阳能电磁能量
    • WO2015038815A3
    • 2015-11-12
    • PCT/US2014055249
    • 2014-09-11
    • SEGAL EDWARD
    • SEGAL EDWARD
    • F24J2/05F24J2/46
    • H01L31/0547F24J2/08F24J2/16F24J2/18Y02E10/40Y02E10/52
    • Surfaces (250, 265) containing conversion elements may be positioned and shaped to concentrate or manipulate convergence of sunlight, for example, to produce a steady reflected beam within a wide range of concentration levels and to direct reflected beams for multiple reflections from other solar power conversion mediums (295). The surfaces (250, 265) and mediums (295) can be positioned to avoid blocking reflected or other light so that unconverted energy may be directed to other surfaces and has several chances to be absorbed or converted. All of the devices (250, 265, 295) may fit within the total converting surface area, e.g., within a surface area of a concentrator (230). The method of solar power conversion may employ active and passive methods simultaneously and/or sequentially.
    • 包含转换元件的表面(250,265)可以被定位和成形为聚集或操纵太阳光的会聚,例如以在宽范围的浓度水平内产生稳定的反射光束并且引导反射光束以用于来自其他太阳能的多次反射 转换介质(295)。 可以定位表面(250,265)和介质(295)以避免阻挡反射光或其他光,使得未转换的能量可以被引导到其他表面并且具有被吸收或转换的几次机会。 所有装置(250,265,295)都可以装配在总转换表面区域内,例如在聚光器(230)的表面区域内。 太阳能转换的方法可以同时和/或顺序地采用主动和被动方法。