会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 94. 发明授权
    • Automatic control of incident solar flux
    • 自动控制入射太阳能通量
    • US4715358A
    • 1987-12-29
    • US814513
    • 1985-12-18
    • Helmut Koster
    • Helmut Koster
    • E06B9/26E06B9/24E06B9/28F21S11/00F24J2/04F24J2/10F24J2/18F24J2/40
    • F24J2/0433E06B9/24E06B9/28F21S11/00F24J2/0444F24J2/10F24J2/18F24J2/407F24J2002/1014Y02B10/20Y02B10/22Y02E10/44Y02P80/24
    • Apparatus for automatic control of incident solar radiation consisting of transparent wall elements (2,3) and of opaque elements (7,8). The control is effected by reflection depending on the angle of incidence of the solar radiation. Single walled and multiple walled apparatuses are possible. In a simple two walled apparatus the opaque elements (7,8) are joined to two parallel wall elements (2,3) at an angle .alpha., at least the wall element (2) directed towards the sun being translucent. The opaque elements (7,8) may be flat mirrors or mirrors of a particular shape. The specially shaped mirror sections (94,95) form radiation concentration and emission funnels, wherein absorber pipes may be provided in the radiation emission funnels. The two walled apparatus having flat reflective elements (7,8) between the wall elements (2,3) may be manufactured in a production line. Starting from the roll-off station (150,151,164) the reflective elements (7,8) and the wall elements (2,3) can be welded together and then cut into individual pieces.
    • PCT No.PCT / DE80 / 00088 Sec。 371日期1981年2月2日 102(e)日期1981年2月2日PCT申请1980年6月9日PCT公布。 出版物WO80 / 02712 日期为1980年12月11日。用于自动控制由透明壁元件(2,3)和不透明元件(7,8)组成的入射太阳辐射的设备。 该控制由取决于太阳辐射的入射角的反射来实现。 单壁和多壁设备是可能的。 在简单的双壁设备中,不透明元件(7,8)以角度α连接到两个平行的壁元件(2,3),至少朝向太阳的壁元件(2)是半透明的。 不透明元件(7,8)可以是具有特定形状的平面镜或反射镜。 特殊形状的镜部分(94,95)形成辐射浓度和发射漏斗,其中吸收管可以设置在辐射发射漏斗中。 在壁元件(2,3)之间具有平坦反射元件(7,8)的两壁设备可以在生产线中制造。 从滚降站(150,151,164)开始,反射元件(7,8)和壁元件(2,3)可以焊接在一起,然后切割成单独的部件。
    • 97. 发明授权
    • Heliostatic solar energy conversion system
    • 日光太阳能转换系统
    • US4365618A
    • 1982-12-28
    • US213210
    • 1980-12-05
    • Dedger Jones
    • Dedger Jones
    • F24J2/12F24J2/18F24J2/54F24J3/02A63G21/00
    • F24J2/5424F24J2/12F24J2/18F24J2002/0084F24J2002/5458F24J2002/5465F24J2002/5475Y02E10/42Y02E10/47
    • A heliostatic solar energy conversion system in which a plurality of multi-faceted heliostats are supported on one or more platforms that move in a segment of a circular path about a central receiver as a center. The heliostats are mounted in frames that pivot on the platform on an edge of each heliostat. In one embodiment the platforms are supported in a concave spherical depression in the ground. The heliostats of the invention are constructed with a plurality of intersecting beams and stringers, and the stringers are formed with parabolic flanges which support the facets so that the angle of incidence between the sun and the focal point of the central receiver is generally in the center of each facet. A vernier adjustment is provided for each heliostat.
    • 一种日光灯太阳能转换系统,其中多个多面定日镜被支撑在一个或多个以围绕中心接收器为中心的圆形路径的段中移动的平台上。 定日镜安装在每个定日镜边缘的平台上枢转的框架中。 在一个实施例中,平台被支撑在地面中的凹形球形凹陷中。 本发明的定日镜由多个交叉的梁和桁条构成,并且桁条形成有抛物面凸缘,其支撑小平面,使得中心接收器的太阳与焦点之间的入射角通常在中心 的每个方面。 为每个定日镜提供游标调整。