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公开(公告)号:EP2194343A4
公开(公告)日:2014-04-23
申请号:EP08829755
申请日:2008-08-29
申请人: VINARESOL S L
发明人: YECORA SAENZ ROBERTO
CPC分类号: F24J2/38 , F16H23/10 , F24J2/5413 , F24J2/5427 , F24J2002/5472 , H02S20/00 , H02S20/32 , Y02E10/47 , Y02E10/50 , Y02P80/24 , Y02P80/25
摘要: The invention relates to a mechanical solar tracker forming a system for tracking the position of the sun in relation to the earth, which is used to orient thermal and photovoltaic solar energy capture and conversion systems based on electromagnetic radiation dispersed or concentrated in any of the varieties thereof in order to produce good perpendicularity in dispersed capture systems and perfect focusing in concentration systems, in relation to the sun. The invention is characterised in that it is essentially an astronomical clock, having a construction that is practically mechanical and permanent over time, faithfully tracking the movements of the earth in relation to the sun during the operating years thereof. The invention is suitable for use in the industry involved in the conversion of clean renewable energy into energy for general use, i.e. electrical energy, thermal energy and chemical fuels such as hydrogen
摘要翻译: 本发明涉及一种形成用于跟踪太阳相对于地球的位置的系统的机械太阳跟踪器,其用于基于分散或集中在任何品种中的电磁辐射来定向热和光伏太阳能捕获和转换系统 以便在分散的捕获系统中产生良好的垂直度并且相对于太阳在浓度系统中完美聚焦。 本发明的特征在于它本质上是一个天文钟,其具有实际上机械性和永久性的结构,在实际操作期间,可以忠实地跟踪地球相对于太阳的运动。 本发明适用于涉及将清洁可再生能源转化为一般用途的能源的行业,即电能,热能和化学燃料如氢
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公开(公告)号:EP3212925A4
公开(公告)日:2018-06-27
申请号:EP15854688
申请日:2015-10-30
发明人: ARMSTRONG ROSS D
CPC分类号: F03D9/007 , F02G1/043 , F02G1/044 , F02G1/057 , F02G2243/30 , F02G2244/06 , F02G2244/12 , F02G2254/30 , F03D9/25 , F05B2240/214 , F24J2/07 , F24J2/10 , F24J2/32 , F24J2/34 , F24J2/542 , F24J2002/1014 , F24J2002/1038 , F24J2002/5451 , F24J2002/5468 , F24J2002/5472 , F24S10/90 , F24S20/20 , F24S23/70 , F24S23/71 , F24S23/74 , F24S23/79 , F24S30/452 , F24S60/00 , F24S2023/832 , F24S2023/837 , F24S2030/131 , F24S2030/136 , F24S2030/137 , H02S10/12 , H02S20/32 , H02S40/44 , Y02E10/41 , Y02E10/42 , Y02E10/44 , Y02E10/465 , Y02E10/47 , Y02E10/60 , Y02E10/725
摘要: An integrated wind and solar solution is provided, including a solar energy collection assembly (100) and a vertical axis wind turbine (400), combined to provide an integrated power output. In preferred embodiments, the vertical axis wind turbine is positioned above the solar energy collection assembly. Concentrating solar mirror collectors (116) are used to direct sunlight to a heat engine (250), which converts the collected heat energy into rotary motion. Rotary motion from the heat engine and from the vertical axis wind turbine preferably are on the same rotating axis (600), to facilitate load sharing between these two sources. A dual axis azimuth-altitude solar panel alignment tracking system is used in order to boost the energy conversion capability of the solar energy collectors.
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公开(公告)号:EP2645012A4
公开(公告)日:2017-05-31
申请号:EP11843323
申请日:2011-07-21
申请人: RAON TECH CO LTD
发明人: PARK GI JU , JANG CHUL SOO , NAM HYUNG DO , SEO WAN YONG
IPC分类号: F24J2/38 , F24J2/54 , H01L31/052
CPC分类号: H01L31/052 , F24J2/542 , F24J2002/5472 , H02S20/10 , H02S20/32 , Y02E10/47
摘要: The present invention relates to a robotic sunlight tracking apparatus which can reduce power consumption and improve efficiency of solar photovoltaic power generation. The robotic sunlight tracking apparatus includes a solar cell module for converting the sunlight incident thereon into electricity, a rotation shaft connected to a backside of the solar cell module for supporting the solar cell module 110 while rotating, a cylindrical body under the rotation shaft having a cam with a curvature formed as a recess in a surface of the cylindrical body in a preset depth and a motor built therein to rotate in one direction by operation of a timer, and fixing means for supporting and fixing the cylindrical body to ground, wherein the rotation shaft includes a cam follower at one side of the cylindrical body placed in the cam of the cylindrical body for moving following the cam as the motor rotates, and a lift arm connected to the cam follower for moving up/down to adjust an angle of the solar cell module when the cam follower moves following the cam.
摘要翻译: 本发明涉及一种可减少功耗并提高太阳能光伏发电效率的机器人日光追踪装置。 机器人太阳光跟踪装置包括:太阳能电池模块,用于将入射在其上的太阳光转换成电;旋转轴,连接到太阳能电池模块的后侧,用于在旋转的同时支撑太阳能电池模块110;旋转轴下方的圆柱体, 具有在预定深度的圆柱体的表面中形成为凹部的曲率的凸轮和通过定时器的操作而内置于其中以在一个方向上旋转的电机以及用于将圆柱体支撑并固定到地面的固定装置,其中, 旋转轴包括位于圆柱形本体的凸轮中的圆柱形本体的一侧处的凸轮从动件,用于随着马达的旋转而跟随凸轮移动;以及提升臂,连接至凸轮从动件以上/下移动以调节 当凸轮从动件跟随凸轮移动时太阳能电池模块。
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公开(公告)号:EP2565935A4
公开(公告)日:2014-07-02
申请号:EP11741509
申请日:2011-07-11
申请人: RAON TECH CO LTD
发明人: PARK DOO YEOL , PARK GI JU
IPC分类号: H01L31/042 , F24J2/38 , F24J2/52 , F24J2/54 , H01L31/052
CPC分类号: H01L31/054 , F24J2/5209 , F24J2/5232 , F24J2/542 , F24J2002/5462 , F24J2002/5472 , H02S20/00 , H02S20/10 , H02S20/30 , Y02E10/47 , Y02E10/50 , Y02E10/52
摘要: Disclosed herein is a solar cell module support assembly including a solar cell module and a frame supporting the solar cell module, a drive motor and a power transmission unit transmitting power of the drive motor so as to support frame and change disposition angle and disposition direction of the frame, a motion conversion unit to convert rotating motion of the power transmission unit into rotating motion and vertical motion of the frame, first connection support units connecting upper and lower portions of the rear surface of the frame, and second connection support units connecting the first connection support units to the motion conversion unit.
摘要翻译: 这里公开了一种太阳能电池模块支撑组件,其包括太阳能电池模块和支撑太阳能电池模块的框架,驱动电动机和传动单元,其传递驱动电动机的动力以支撑框架并改变配置角度和配置方向 框架,将动力传递单元的旋转运动转换为框架的旋转运动和垂直运动的运动转换单元,连接框架的后表面的上部和下部的第一连接支撑单元和连接框架的第二连接支撑单元 第一连接支持单元到运动转换单元。
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