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    • 3. 发明申请
    • SOLAR LIGHT CONDENSING SYSTEM
    • 太阳能冷凝系统
    • US20120227731A1
    • 2012-09-13
    • US13392187
    • 2010-08-11
    • Yutaka TamauraHiroshi Hasuike
    • Yutaka TamauraHiroshi Hasuike
    • F24J2/16F24J2/46F24J2/24
    • G02B19/0042F24S10/74F24S20/20F24S23/79F24S80/30F24S2010/71F24S2020/18F28D2001/0273F28F13/08G02B19/0023G02B19/0076Y02E10/41Y02E10/44Y02E10/46
    • Provided is a solar light concentrating system which realizes suppression of power generation costs by applying a receiver 2 that is capable of suppressing a manufacturing cost to a low level, facilitating recovery work when a failure occurs, and quickly recovering a heating medium circulating inside in case of an emergency. The receiver 2 is formed by three-dimensionally combining multiple modules 20. At least a part of the modules is a trapezoid-shaped module 20B. The trapezoid-shaped module includes an upper header 21B, a lower header 22B being shorter than the upper header, and multiple heat receiving tubes 23 which connect the two headers. The heat receiving tubes are formed by successively altering their cross-sectional shapes in away that makes each heat receiving tube shaped like a wedge that becomes narrower from its top toward its bottom in a front view, and like a wedge that becomes wider from its top toward its bottom in a side view.
    • 提供一种太阳能聚光系统,其通过将能够抑制制造成本的接收器2应用于低水平来实现抑制发电成本,便于故障发生时的恢复工作,并且在快速恢复在内部循环的加热介质的情况下 的紧急情况。 接收机2通过三维地组合多个模块20而形成。模块的至少一部分是梯形模块20B。 梯形模块包括上集管21B,比上集管短的下集管22B和连接两个集管的多个热接收管23。 热接收管是通过依次改变它们在远离处的横截面形状而形成的,这使得每个受热管在前视图中形成为从其顶部朝向底部变窄的楔形物,并且像从其顶部变得更宽的楔形物 朝向底部的侧视图。
    • 4. 发明授权
    • Solar light condensing system
    • 太阳能聚光系统
    • US08726899B2
    • 2014-05-20
    • US13392187
    • 2010-08-11
    • Yutaka TamauraHiroshi Hasuike
    • Yutaka TamauraHiroshi Hasuike
    • F24J2/02F03G6/06
    • G02B19/0042F24S10/74F24S20/20F24S23/79F24S80/30F24S2010/71F24S2020/18F28D2001/0273F28F13/08G02B19/0023G02B19/0076Y02E10/41Y02E10/44Y02E10/46
    • Provided is a solar light concentrating system which realizes suppression of power generation costs by applying a receiver 2 that is capable of suppressing a manufacturing cost to a low level, facilitating recovery work when a failure occurs, and quickly recovering a heating medium circulating inside in case of an emergency. The receiver 2 is formed by three-dimensionally combining multiple modules 20. At least a part of the modules is a trapezoid-shaped module 20B. The trapezoid-shaped module includes an upper header 21B, a lower header 22B being shorter than the upper header, and multiple heat receiving tubes 23 which connect the two headers. The heat receiving tubes are formed by successively altering their cross-sectional shapes in away that makes each heat receiving tube shaped like a wedge that becomes narrower from its top toward its bottom in a front view, and like a wedge that becomes wider from its top toward its bottom in a side view.
    • 提供一种太阳能聚光系统,其通过将能够抑制制造成本的接收器2应用于低水平来实现抑制发电成本,便于故障发生时的恢复工作,并且在快速恢复在内部循环的加热介质的情况下 的紧急情况。 接收机2通过三维地组合多个模块20而形成。模块的至少一部分是梯形模块20B。 梯形模块包括上集管21B,比上集管短的下集管22B和连接两个集管的多个热接收管23。 热接收管是通过依次改变它们在远离处的横截面形状而形成的,这使得每个受热管在前视图中形成为从其顶部朝向底部变窄的楔形物,并且像从其顶部变得更宽的楔形物 朝向底部的侧视图。
    • 6. 发明申请
    • SOLAR LIGHT COLLECTING METHOD IN MULTI-TOWER BEAM-DOWN LIGHT COLLECTING SYSTEM
    • 多光束聚光系统中的太阳光收集方法
    • US20110259320A1
    • 2011-10-27
    • US13056367
    • 2009-07-23
    • Minoru YuasaHiroshi HasuikeYutaka Tamaura
    • Minoru YuasaHiroshi HasuikeYutaka Tamaura
    • F24J2/18F24J2/38
    • F24S50/00F24S20/20F24S23/79F24S30/45F24S2023/87F24S2050/25G02B7/1824H01L31/052Y02E10/41
    • It enhances heat collecting efficiency of sunlight received by heliostats. It is a solar light collecting method in a multi-tower beam-down light collecting system, including a tower selection. The multi-tower beam-down light collecting system is a system in which, in a field where a plurality of beam-down light collecting towers are present, light primarily reflected by heliostats 1 around each tower 4 is secondarily reflected by a reflector 3 at a top part of the tower 4 and is collected on a receiver 3 on the ground, and the tower selection is a process in which, assuming that the heliostat 1 in a given position receives sunlight and reflects the sunlight toward each of optionally selected two of the towers 4, 4, a light receiving quantity on the receiver 3 of each of the towers 4 is compared, and one of the towers 4 in which the light receiving quantity is relatively large is selected to reflect the sunlight toward the one of the towers 4.
    • 它可以提高定日镜所接收的阳光的热收集效率。 它是一种多塔式射束收集系统中的太阳能光收集方法,包括塔式选择。 多塔式射束收集系统是一种系统,其中在存在多个波束收集塔的场中,主要由每个塔架4周围的定日镜1反射的光被反射器3二次反射 塔4的顶部并且被收集在地面上的接收器3上,并且塔选择是这样的过程,其中假设在给定位置的定日镜1接收太阳光并且将太阳光反射到每个可选择的两个 比较塔4,4在每个塔4的接收器3上的光接收量,并且选择其中光接收量相对较大的塔4中的一个以将太阳光反射到塔的一个 4。