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    • 125. 发明授权
    • Enclosed solar collector
    • 封闭的太阳能收集器
    • US07665459B2
    • 2010-02-23
    • US11737023
    • 2007-04-18
    • William R. Lowstuter, Jr.
    • William R. Lowstuter, Jr.
    • F24J2/12F24J2/04F24J2/06F24J2/10F24J2/24
    • H02S20/00F24S23/74F24S30/428F24S50/20F24S2023/84F24S2030/136H01L31/0547H02S40/44Y02B10/20Y02E10/45Y02E10/47Y02E10/52Y02E10/60
    • A solar collector includes a plurality of elongated parabolic reflectors mounted within a glass-topped enclosure for pivotal movement such that each reflector is incrementally pivoted throughout the course of a day to remain substantially perpendicular to the sun. The incremental pivotal movement is caused by a motor energized from a solar switch having solar cells that also pivot throughout the day so that in one position of the switch, no electricity is being generated and transferred to the motor, but in a second position, the switch receives solar radiation and energizes the motor to again incrementally pivot each reflector along with the solar switch. The reflectors are therefore incrementally pivoted throughout the course of a day to follow the sun for optimal collection of solar radiation which is used to heat liquid carried by tubes positioned at the axis of generation of the parabolic reflectors and/or strips of solar cell material so that electricity can be generated alone, liquid heated alone, or liquid heated and electricity generated simultaneously.
    • 太阳能收集器包括多个细长的抛物面反射器,其安装在玻璃顶盖的外壳内用于枢转运动,使得每个反射器在一天的整个过程中逐渐地枢转以保持基本上垂直于太阳。 增量枢转运动是由一个太阳能开关的电动机引起的,该太阳能开关具有太阳能电池,该太阳能电池也在整个一天中枢转,使得在开关的一个位置中,不产生电并传递到电动机,而在第二位置, 开关接收太阳辐射并使电动机再次沿着太阳能开关逐渐地枢转每个反射器。 因此,反射器在一天的整个过程中逐渐地转动以跟随太阳,以最佳地收集太阳辐射,其用于加热位于抛物面反射器和/或太阳能电池材料条的轴上的管所承载的液体,因此 电能单独产生,液体单独加热,或液体加热和电力同时产生。
    • 126. 发明申请
    • SOLAR ENERGY COLLECTOR
    • 太阳能收集器
    • US20090288656A1
    • 2009-11-26
    • US12327602
    • 2008-12-03
    • DA-WEI LIN
    • DA-WEI LIN
    • F24J2/38F24J2/12
    • G01S3/7861F24S23/71F24S25/10F24S30/452F24S50/20F24S2023/833F24S2030/134H01L31/0547H02S20/00H02S20/30H02S40/22Y02E10/42Y02E10/47Y02E10/52
    • A solar energy collector includes a parabolic reflector, a solar panel, a photosensor panel, a projecting pointer, a solar location calculator, and a reflector mount. The parabolic reflector includes a parabolic reflecting surface. The solar panel includes a light receiving surface for facing the reflecting surface. The photosensor panel includes a light sensing surface. The projecting pointer is mounted on the photosensor panel. The solar location calculator is connected to the photosensor panel, and is configured for calculating the trajectory of the sun relative to a geographic location of the parabolic reflector according to the motion of a shadow of the projecting pointer on the light sensing surface sensed by the photosensor panel and generating a control signal associated therewith. The reflector mount is configured for supporting and moving the parabolic reflector in following movement of the sun in response to the control signal from the solar location calculator.
    • 太阳能收集器包括抛物面反射器,太阳能面板,光电传感器面板,投影指针,太阳位置计算器和反射器支架。 抛物面反射器包括抛物面反射面。 太阳能面板包括面对反射面的受光面。 光传感器面板包括感光表面。 投影指针安装在光电传感器面板上。 太阳能位置计算器连接到光传感器面板,并且被配置为根据由光传感器感测的光感测表面上的投影指示器的阴影的运动来计算相对于抛物面反射器的地理位置的太阳的轨迹 并产生与其相关联的控制信号。 反射器支架被构造成响应于来自太阳能位置计算器的控制信号而在太阳的跟随运动中支撑和移动抛物面反射器。
    • 130. 发明申请
    • Hybrid Photovoltaic Concentrating System with Corrected Total Reflection Reflectors for Very Large Concentrating Ratios
    • 混合光伏集中系统具有校正的全反射反射器,用于非常大的浓度比
    • US20070240705A1
    • 2007-10-18
    • US10554802
    • 2004-04-02
    • Alexandros Papadopoulos
    • Alexandros Papadopoulos
    • F24J2/12G02B17/00
    • G02B19/008F24S23/10F24S23/12F24S23/71F24S23/79F24S30/455F24S2020/23G02B19/0028G02B19/0042H01L31/0547Y02B10/10Y02B10/20Y02E10/42Y02E10/47Y02E10/52
    • This invention refers to the development of innovative parabolic and paraboloid total reflection Reflectors with Curved Rectangular Total Reflection Prisms, which raise the imperfection of diffusion at the conventional rectangular prisms of the conventional parabolic and paraboloid TRR so that an accurate focusing and high Concentration (500 till 1500 suns or even more) are succeeded. Also refers to the development of an Innovative Solar Wave Guide with total reflection walls (Solar Artery), with Curved Rectangular Total Reflection Prisms which raise the phenomenon of diffusion (and losses) at the conventional Rectangular prisms of the conventional Hollow Solar Wave Guides and increase, one or even more orders of magnitude, the range of Solar Arteries for the same level of losses. The invention refers also to the development of Hybrid Concentrating Solar Systems, which use corrected parabolic and paraboloid reflectors with Curved Rectangular Total Reflection Prisms as above and promise competitive cost of thermal, cooling energy and electricity from the Sun, as well as refers to hybrid Solar Systems that combine the ability of creation of an entry narrow beam in Solar Arteries with Solar Arteries as above for the substitution of buildings-lighting with solar lighting over and above the production of thermal, cooling energy and electricity.
    • 本发明涉及开发具有弯曲矩形全反射棱镜的创新的抛物线抛物面和抛物面全反射反射器,这提高了常规抛物线和抛物面TRR的常规矩形棱镜扩散的缺陷,从而精确聚焦和高浓度(500〜 1500太阳甚至更多)成功。 还指的是开发具有全反射壁(太阳能动力)的创新太阳能波导,其具有弯曲的矩形全反射棱镜,其提高了常规空心太阳能波导的传统矩形棱镜的扩散现象(和损耗),并增加 ,一个甚至更多的数量级,太阳能动脉的范围同等水平的损失。 本发明还涉及混合集中太阳能系统的开发,其使用如上所述的具有弯曲矩形全反射棱镜的校正抛物线和抛物面反射器,并且承诺来自太阳的热,冷却能量和电力的有竞争力的成本,并且指混合太阳能 将太阳能动力学中的入射窄光束与太阳能动力的能力相结合的系统,用于替代建筑物 - 照明与太阳能照明超过热,冷却能源和电力的生产。