具有扭转装置的原型螺旋升降器的性能,可全天保持注意力集中

Roger Angel, Nicholas Didato, Matthew Rademacher, Yiyang Huang
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摘要

我们设计并制造了一个原型定日镜,它带有一个矩形反射镜,其形状可在一天中自动改变,以最大限度地提高接收器的集中度。只要使用一个面向目标的双轴支架,就可以通过扭转反射镜的四角来实现形成太阳圆盘图像所需的形状变化,从而获得尽可能高的浓度。然后,可以使用与第二(交叉)轴驱动装置相连的凸轮机构,随着入射光线的角度转动,根据需要扭转反射镜。 我们的原型反射镜由一面 2.4 米 x 3.3 米的玻璃镜组成,安装在钢架上。四根斜背支柱从中央装置延伸到矩形框架的四角。原型的玻璃镜通过 58 个螺钉传动装置固定在钢框上。 在扭转框架之前,先将玻璃形状调整为所需的双子形状,以便在阳光以 60° 角入射时,在 113 米远的目标上形成直径为 1 米的圆盘图像。为了在从 0°(正常入射角)到 70°的整个入射角范围内形成圆盘图像,支撑杆将边角上下推动了 17 毫米。反射测量计量系统用于设置初始形状的 58 个调节螺钉,精度≤ 0.6 mrad,并测量不同扭曲形状的精度。原型将于明年初在 NSTTF 进行测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of a Prototype Heliostat Having a Twisting Mechanism to Maintain Focus Throughout the Day
A prototype heliostat has been designed and built with a rectangular reflector whose shape is altered automatically through the day, to maximize concentration at the receiver. The shape changes needed to form solar disc images, which give the highest possible concentration, can be realized by twisting the reflector from its corners, provided that a target-oriented, dual-axis mount is used. Then a cam mechanism connected to the second (cross) axis drive, turning with the angle of incident sunlight, may be used to twist the reflector as needed.   Our prototype reflector comprises a single glass mirror, 2.4 m x 3.3 m, attached to a steel frame. Four diagonal back struts extend from the central mechanism out to the rectangular frame corners. The glass mirror of the prototype is attached to the steel frame by 58 screw actuators.  Before twisting the frame, the glass shape is adjusted to the biconic shape needed to form a 1 m diameter disc image on a 113 m distant target when sunlight is incident at 60°. To form disc images over the full range of angles of incidence from 0° (normal incidence) to 70°, the struts push the corners up and down by up to 17 mm. A reflectometry metrology system has been used to set the 58 adjustment screws for the initial shape to an accuracy of ≤ 0.6 mrad, and to measure the accuracy of the different twisted shapes. The prototype will be tested at NSTTF early next year. 
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