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公开(公告)号:EP2910868A4
公开(公告)日:2016-06-22
申请号:EP13847995
申请日:2013-10-18
申请人: SOLARFLAME CORP , MIHAMA CORP
发明人: TAMAURA YUTAKA
CPC分类号: F24J2/38 , F24J2/07 , F24J2/16 , F24J2/484 , F24J2/5241 , F24J2/5424 , F24J2/5427 , F24J2002/003 , F24J2002/5437 , F24J2002/5468 , G02B7/183 , Y02E10/41 , Y02E10/47
摘要: [PROBLEM] The present invention aims to provide a solar heat collecting apparatus and solar heat collecting method that make it possible to simply collect solar heat with a high degree of precision and efficiency. [SOLUTION] A solar heat collecting apparatus, wherein plural reflecting mirrors are disposed in the north-south direction; the plural reflecting mirrors are provided with a heliostat mechanism; the heliostat mechanism includes an east-west angle adjustment unit, having a rotating ring, to adjust the angle of the reflecting surface of the plural reflecting mirrors in the east-west direction, and a north-south angle adjustment unit, having actuators, to adjust the angle of the reflecting surface of the plural reflecting mirrors in the north-south direction; the angle of the reflecting surface of the plural reflecting mirrors on each reflection line is simultaneously adjusted via the frame by the rotation of the rotating ring; the angle of the reflecting surface of each reflecting mirror is individually adjusted by a back-and-forth motion of an arm of the corresponding actuator; and, each reception line is provided with a receiver, and the receiver collects heat from the reflected light of the sunlight reflected by the plural reflecting mirrors.
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2.
公开(公告)号:EP3045838A4
公开(公告)日:2017-10-11
申请号:EP14844674
申请日:2014-09-10
申请人: SOLARFLAME CORP , MIHAMA CORP
发明人: TAMAURA YUTAKA
CPC分类号: H02S40/22 , F24J2/16 , F24J2/18 , F24J2/38 , F24J2/5424 , F24J2002/075 , F24J2002/108 , F24J2002/5458 , G01S3/7861 , G02B7/183 , G02B19/0019 , G02B19/0042 , G02B26/0816 , G05D3/105 , H01L31/0547 , H02S20/32 , H02S40/38 , H02S40/42 , Y02E10/47 , Y02E10/52
摘要: The present invention provides a heliostat apparatus including one mirror frame that supports a reflecting mirror; a pair of north-south rotational shafts to rotate the mirror frame in the north-south direction; an east-west rotational shaft to rotate the mirror frame in the east-west direction with the north-south direction as the rotational axis direction; a pair of arms projecting from the east-west rotational shaft to the east and to the west; an east-west rotational shaft support that allows the axial rotation of the east-west rotational shaft; and the pair of the north-south rotational shafts positioned to face each other on the ends of the pair of the arms; wherein the rotation of the mirror frame, etc. as an integrated unit in the east-west direction with the east-west rotational shaft as the rotational axis adjusts the east-west angle of a reflecting surface of the reflecting mirror; and with the north-south rotational shaft as the rotational axis, the rotation of the mirror frame in the north-south direction adjusts the north-south angle of the reflecting surface of at least one reflecting mirror. With this mechanism, a lower-cost heliostat apparatus can be provided.
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