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    • 1. 发明专利
    • Automatic solar light following-up device
    • 自动太阳能照明装置
    • JP2005251865A
    • 2005-09-15
    • JP2004057817
    • 2004-03-02
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • MASUDA MASAYUKI
    • H01L31/042F24J2/54
    • F24J2/5427F24J2002/5458Y02B10/12Y02E10/47
    • PROBLEM TO BE SOLVED: To provide a lightweight, inexpensive, and reliable automatic solar light following-up device that is constituted to enable the elevation angle and the azimuth in the east-west direction of the light receiving surface of a solar battery panel to follow up the sun in order to improve the power generation efficiency of a solar battery. SOLUTION: The elevation angle of the solar battery panel is adjusted by constituting the top edge of the panel in a vertically movable state and the azimuth in the east-west direction of the panel is adjusted by constituting the top edge of the panel in a rotatable state. In addition, the bottom edge of the panel is constituted to flexibly follow the adjustment of the top edge. The power for vertically moving the top edge of the solar battery panel is exerted from a lifting carriage containing a reduction gear using a warm gear and a lifting carrier is raised or lowered by using a spiral shaft. The adjustment of the azimuth of the top edge of the solar battery panel is performed by means of an azimuth following-up device mounted on the lifting carrier. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种轻质,便宜且可靠的自动太阳能跟踪装置,其被构造成能够使太阳能电池的光接收表面的东西方向上的仰角和方位角 以提高太阳能电池的发电效率。

      解决方案:通过将面板的上边缘构成垂直移动状态来调整太阳能电池面板的仰角,通过构成面板的上边缘来调整面板的东西方向的方位角 处于可旋转状态。 此外,面板的底边缘被构造成灵活地跟随顶边缘的调整。 用于使太阳能电池板的顶部边缘垂直移动的功率是从包含减速齿轮的提升架使用暖齿轮施加的,并且提升架通过使用螺旋轴升高或降低。 通过安装在提升架上的方位跟踪装置来进行太阳能电池面板的顶边方位的调整。 版权所有(C)2005,JPO&NCIPI

    • 3. 发明专利
    • Drive mechanism of heliostat
    • HELIOSTAT的驱动机制
    • JP2010101591A
    • 2010-05-06
    • JP2008275211
    • 2008-10-27
    • Mitaka Koki Co Ltd三鷹光器株式会社
    • NAKAMURA GIICHI
    • F24S50/20F24S23/70
    • F24J2/5427Y02E10/47
    • PROBLEM TO BE SOLVED: To provide a drive mechanism of a heliostat having a simple structure and securely rotating a mirror constituent body even by small drive force.
      SOLUTION: The mirror constituent 3 has the gravity center positioned blow a first rotating shaft A and thus, has a horizontal posture as it is. A wire 17 is connected to the lower part of the mirror constituent 3 and can be wound up by a wire winding part 16 fixed to a support arm 15. Thus, due to winding up and delivery of the wire 17, the mirror constituent 3 is rotated. Since the gravity is used for the rotation to one side, the mirror constituent 3 can be securely rotated with the simple structure even by the small drive force.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种具有简单结构的定日镜的驱动机构,并且甚至通过小的驱动力可靠地旋转镜子构成体。 解决方案:镜面构件3具有定位在第一旋转轴A上的重心,从而具有水平姿势。 线17连接到镜子构件3的下部,并且可以被固定到支撑臂15上的线缠绕部分16卷起。因此,由于线17的卷绕和输送,镜子构件3是 旋转。 由于重力用于向一侧旋转,所以即使通过小的驱动力也能以简单的结构可靠地旋转镜面构件3。 版权所有(C)2010,JPO&INPIT
    • 10. 发明专利
    • JPS6118353B2 -
    • 空值
    • JPS6118353B2
    • 1986-05-12
    • JP4511680
    • 1980-04-04
    • Stark Virgil
    • BAAJIRU SUTAAKUAREKUSANDORU UAIDAHORU RUSE
    • F24J2/04B01D5/00C02F1/14F24J2/08F24J2/24F24J2/54H01L31/052H01L31/06
    • F24J2/5427B01D5/0066F24J2/07F24J2/085Y02E10/41Y02E10/43Y02E10/47Y02E10/52
    • Solar energy collecting system includes >=1 focussing lens with a liq. medium or >=1 Fresnel lens which focusses the sun's rays along a continuous line or along a line of discrete focal points in the path of an energy collecting ducting arrangement contg. different liquids adjacent to each other. Pref. >=2 collecting ducts are used, one being within the other. The enclosed duct contains a liq. which has a b.pt. >=50 degrees C higher than that of the liq. in the other duct. The two liquids pref. have respective b.pt. of 150-350 degrees C. and -60-100 degrees C. Typically the two liquids can be oil and water, and the liquid content of the lens system can be a soln. of NaCl. The system can convert the collected energy into either heat or electrical form.
    • 太阳能收集系统包括> = 1个聚焦透镜和液晶。 中等或> = 1菲涅耳透镜,其聚焦沿着连续线或沿能量收集管道布置的路径中的离散焦点线的太阳光线。 不同的液体彼此相邻。 Pref。 > = 2个收集管被使用,一个在另一个之内。 封闭的管道包含液体。 它有一个b.pt. > =比液晶高50摄氏度。 在另一个管道。 两种液体首选 有相应的b.pt 150-350摄氏度和-60-100摄氏度。通常两种液体可以是油和水,透镜系统的液体含量可以是一种溶液。 的NaCl。 该系统可以将收集的能量转换成热或电的形式。