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    • 3. 发明授权
    • Central focus solar energy system
    • 中央集中太阳能系统
    • US4317031A
    • 1982-02-23
    • US161443
    • 1980-06-20
    • Max Findell
    • Max Findell
    • F24J2/10F24J2/54G01S3/786G01J1/20
    • F24J2/5431F24J2/10F24J2/38F24J2/5424G01S3/7861H02S20/00H02S20/32F24J2002/108F24J2002/5468F24J2002/5486F24J2002/5489Y02E10/47Y02E10/50
    • A central focus solar energy system consisting of one or more arrays of mirrors, a receiver for each array, a sun tracker, a sun tracker sun acquisition device and a control unit. Mirrors of the arrays are subjected to two-axis control by electromechanical devices actuated by sun-tracking error signals generated by the sun tracker. Mirrors are thus oriented so as to cause reflections of the direct rays of the sun from all mirrors in an array to converge on a receiver at a common focus. Fixed (principal) axes of mirror rotation are parallel to the fixed (principal) axis of rotation of the sun tracker sensor making orientation of the system independent of the earth's spin axis. The system includes a "vernier" or fine adjustment control for positioning mirrors that supplements sun tracker controls.
    • 由一个或多个反射镜阵列,每个阵列的接收器,太阳跟踪器,太阳追踪器太阳采集装置和控制单元组成的中央聚焦太阳能系统。 通过由太阳跟踪器产生的太阳跟踪误差信号致动的机电装置对阵列的反射镜进行双轴控制。 因此,反射镜被定向成使得阵列中的所有反射镜的太阳直射线的反射在共同的焦点处会聚在接收器上。 镜面旋转的固定(主)轴平行于太阳跟踪传感器的固定(主)轴旋转,使系统的方向与地球的旋转轴无关。 该系统包括用于定位镜子的“游标”或微调控件,用于补充太阳跟踪器控制。
    • 6. 发明授权
    • Heating apparatus
    • 加热装置
    • US4249515A
    • 1981-02-10
    • US932943
    • 1978-08-11
    • Victor J. Page
    • Victor J. Page
    • F24J2/24F24J2/10F24J2/52F24J3/02
    • F24J2/5431F24J2/4625F24J2/5267F24J2/541F24J2002/5489Y02E10/47Y10S126/908
    • A solar energy heating apparatus comprising means for concentrating solar energy incident thereon at an absorption station, an absorber located at the said absorption station for absorbing solar energy concentrated thereat, a first passageway associated with the said energy concentrating means for directing fluid so as to be preheated by the proportion of the incident energy absorbed by the said means, a second passageway associated with the absorber for effecting principal heating of fluid directed therethrough, the second passageway being such that on directing fluid through the first passageway it is initially preheated by the proportion of the incident energy absorbed by the said energy concentrating means, the preheated fluid thereafter being directed to the second passageway where the principal heating takes place.
    • 一种太阳能加热装置,包括用于集中在吸收站入射的太阳能的装置,位于所述吸收站处的吸收器,用于吸收集中在其上的太阳能的吸收器,与所述能量集中装置相关联的用于引导流体的第一通道, 由所述装置吸收的入射能量的比例预热,与吸收器相关联的第二通道,用于对通过其引导的流体进行主要加热,第二通道使得在将流体引导通过第一通道时,其首先被预热比例 由所述能量集中装置吸收的入射能量中,预热的流体此后被引导到发生主要加热的第二通道。
    • 9. 发明授权
    • Heliostat apparatus
    • 日光仪器
    • US4110009A
    • 1978-08-29
    • US642473
    • 1975-12-19
    • Jesse C. Bunch
    • Jesse C. Bunch
    • F24J2/16F24J2/54G02B5/08
    • F24J2/5431F24J2/16F24J2002/5468F24J2002/5489Y02E10/47
    • Heliostat apparatus for concentrating solar energy comprising support structure disposed in a first plane and supporting a plurality of mirror units having freedom of substantial universal articulation thereon, each of the plurality of mirror units carrying at an upper portion thereof reflective element trained to receive incident rays of the sun and to focus reflection thereof to a desired focal point, adjustment structure operatively connected to the plurality of mirror units and disposed in a plane generally parallel to the first plane in which the support structure is disposed, the adjustment structure being shiftable to additional planes adjacent and generally parallel thereto to effect conjoint articulation of each of the mirror units at the support structure and thereby conjointly retrain the reflective element of each of the mirror units to receive incident rays of the sun and maintain reflection thereof on the focal point over the course of any day.
    • 用于集中太阳能的定向天线装置,包括设置在第一平面中的支撑结构,并且支撑多个具有基本上通用铰接的自由度的反射镜单元,所述多个反射镜单元中的每一个在上部反射元件被训练成接收入射光线 太阳并将其反射聚焦到期望的焦点,调节结构可操作地连接到多个反射镜单元并且设置在大致平行于其中设置有支撑结构的第一平面的平面中,调节结构可移动到附加平面 相邻并且大致平行于其,以在支撑结构处实现每个反射镜单元的联合关节,从而共同重新训练每个反射镜单元的反射元件,以接收太阳的入射光线并将其保持在该过程的焦点上的反射 任何一天。