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    • 4. 发明申请
    • METHOD FOR CONVEYING CONCENTRATED SOLAR POWER
    • 输送集中太阳能的方法
    • WO2018052753A1
    • 2018-03-22
    • PCT/US2017/050028
    • 2017-09-05
    • RODLUVAN INC.
    • NORDIN, KennethMATTSSON, Mats Olof Erik
    • H02S20/32F24J2/46F24J2/54
    • The method is for of conveying a solar power. A parabolic reflector (402) receives sunrays that reflects and concentrates the sunrays as light into second reflector (410) that reflects the light into a tapering device (412). The tapering device (412) conveys the light to a first curved glass rod section (416). The first curved glass rod section conveying the light to a second curved glass rod section (424) via a gap (422) defined between the ends of the first and second rod sections. The second rod section conveys the light to a third rod section (426) via a second gap (429). The first rod section is rotated relative to the second rod section and the second rod section is rotated relative to the third rod section so that the parabolic reflector follows a path of the sun.
    • 该方法用于输送太阳能。 抛物面反射器(402)接收将太阳光作为光反射并聚集到第二反射器(410)中的阳光,第二反射器(410)将光反射到锥化装置(412)中。 锥形装置(412)将光传送到第一弯曲玻璃棒部分(416)。 第一弯曲玻璃杆部分经由限定在第一和第二杆部分的端部之间的间隙(422)将光传输到第二弯曲玻璃杆部分(424)。 第二杆部分通过第二间隙(429)将光传送到第三杆部分(426)。 第一杆部分相对于第二杆部分旋转,并且第二杆部分相对于第三杆部分旋转,使得抛物面反射器遵循太阳的路径。
    • 5. 发明申请
    • IMPROVED SOLAR TRACKER SYSTEM FOR LARGE UTILITY SCALE SOLAR CAPACITY
    • 用于大型太阳能电池的改进的太阳能追踪系统
    • WO2018035094A1
    • 2018-02-22
    • PCT/US2017/046891
    • 2017-08-15
    • LOKEY, Roger
    • LOKEY, Roger
    • F24J2/38F24J2/54H02S20/00H02S20/30H02S20/32F24J2/40
    • H02S20/32F24S30/452F24S30/455F24S40/85F24S50/20F24S2030/115G01S3/7861G05D3/105H01L31/02021H02S20/10H02S40/22H02S40/34Y02E10/47Y02E10/52
    • The present invention solar tracker system is directed to a solar tracker that includes a main platform for supporting a plurality of solar panels, a sub-platform, one or more support poles supporting the sub-platform, and a linking mechanism that connects the sub-platform to the apex of the one or more supporting poles, wherein the linking mechanism rotates in a first axis and a second axis. The main platform is configured for adverse wind condition management. The solar tracker system includes a radiation sensor for determining the best tracking position for maximizing capture of solar energy. The large scale solar tracker system also includes at least two linear hydraulic actuators, each linear hydraulic actuator having a distal end and proximal end, a rotational joint that connects the distal end of the linear actuators to the sub-platform and the proximal end to the support beam. The second embodiment of the present invention is a plurality of solar tracker apparatus specifically arranged into a utility scale field system.
    • 本发明的太阳能跟踪器系统涉及一种太阳能跟踪器,其包括用于支撑多个太阳能面板的主平台,子平台,支撑该子平台的一个或多个支撑杆,以及 连接机构,其将所述子平台连接到所述一个或多个支撑杆的顶点,其中所述连接机构沿第一轴线和第二轴线旋转。 主要平台配置用于逆风状况管理。 太阳追踪器系统包括用于确定最佳追踪位置以最大化捕获太阳能的辐射传感器。 大型太阳能跟踪器系统还包括至少两个线性液压致动器,每个线性液压致动器具有远端和近端,旋转接头将线性致动器的远端连接到子平台并将近端连接到 支撑梁。 本发明的第二实施例是专门设置在公用事业规模现场系统中的多个太阳能跟踪装置。
    • 7. 发明申请
    • CLIP-ON MOUNTING RAILS, MOUNTING BRACKETS, AND METHODS OF MOUNTING SOLAR MODULES
    • 夹式安装轨道,安装支架和安装太阳能组件的方法
    • WO2017218326A1
    • 2017-12-21
    • PCT/US2017/036710
    • 2017-06-09
    • ARRAY TECHNOLOGIES, INC.
    • CORIO, Ronald, P.
    • H02S20/32F24J2/52F24J2/54H02S20/30
    • A snap-on mounting bracket assembly suitable for connecting a mounting rail to a torque tube is provided. The mounting bracket assembly includes an upper clamp piece and a lower clamp piece. The upper clamp piece has a first member defining a tube insertion aperture and an open bottom space and includes an upper partial fastener. The lower clamp piece has a second member with a lower partial fastener configured to mate with the upper partial fastener such that the lower clamp piece is attachable to the upper clamp piece. In exemplary embodiments, the lower clamp piece further comprises two opposing support members configured to attach to the mounting rail. Solar tracker assemblies incorporating snap-on open mounting brackets are provided. Methods of mounting framed or unframed solar modules are also described. A mounting rail is attached to an upper clamp piece of a mounting assembly. Then the upper clamp piece is snapped onto a torque tube. A lower clamp piece of the mounting assembly is then attached to the upper clamp piece by mating a lower partial fastener of the lower clamp piece with an upper partial fastener of the upper clamp piece. When the upper and lower clamp pieces are attached, the open bottom space is closed and the mounting rail is secured to the torque tube.
    • 提供适用于将安装导轨连接到扭矩管的卡扣安装支架组件。 安装支架组件包括上夹件和下夹件。 上夹紧件具有限定管插入孔和开放底部空间的第一构件并且包括上部部分紧固件。 下部夹紧件具有第二构件,该第二构件具有构造成与上部部分紧固件配合的下部部分紧固件,使得下部夹紧件可附接至上部夹紧件。 在示例性实施例中,下夹持件进一步包括两个相对的支撑构件,该两个相对的支撑构件被构造成附接到安装轨道。 太阳能追踪器组件包含搭扣式开放式安装支架。 还描述了安装框架式或非框架式太阳能模块的方法。 安装导轨连接到安装组件的上夹片上。 然后将上部夹紧件卡入扭矩管。 然后通过将下夹紧件的下部分紧固件与上夹紧件的上部分紧固件配合,将安装组件的下夹紧件连接到上夹紧件。 当上下夹块连接时,底部开放空间关闭,安装导轨固定在扭矩管上。

    • 8. 发明申请
    • SINGLE AXIS IN-LINE GEARBOX MODULAR TRACKER SYSTEM
    • 单轴在线齿轮箱模块化跟踪系统
    • WO2017210432A1
    • 2017-12-07
    • PCT/US2017/035459
    • 2017-06-01
    • SUNDRIVE TECHNOLOGIES, LLC
    • PRACA, Miguel Martinho, LopesREZNIKOV, Yury
    • F24J2/54F16C1/02F16C11/06
    • A modular tracker system (10) that includes at least first and second tables (12a-b), or is continuous without the use of tables, includes a single motor driving the first and second tables (1 2a-b), first and second intra-table drive shafts (42a-b) and an inter-table drive shaft (16a). Each table includes a support structure (18a-b) including first and second mounting posts (20a-b, 22a-b), a frame (26a-b) supported by the support structure (18a-b), at least one solar panel (28) supported by the frame (26a-b), and first and second gearboxes (30a-d) being concentrically aligned for each table (12a-b). The first and second gearboxes (30a-d) are each configured to produce first and second outputs (68a-d, 50a-d). The first output (68a-d) has a first rotational speed, and the second output (50a-d) has a second rotational speed less than the first rotational speed, and is operatively coupled to the frame (26a-b). The inter-table drive shaft (16a) couples the second gearbox (30b) of the first table (12a) with the first gearbox (30c) of the second table (1 2b), whereby the first and second tables (12a-b) are rotated synchronously.
    • 包括至少第一台和第二台(12a-b)或在不使用台的情况下是连续的模块化跟踪器系统(10)包括驱动第一台和第二台(1 2a-b),第一和第二台内驱动轴(42a-b)和台间驱动轴(16a)。 每个台包括包括第一和第二安装柱(20a-b,22a-b),由支撑结构(18a-b)支撑的框架(26a-b)的支撑结构(18a-b),至少一个太阳能面板 (26a-b)支承的第一和第二齿轮箱(30a-d),以及为每个工作台(12a-b)同心对准的第一和第二齿轮箱(30a-d)。 第一和第二齿轮箱(30a-d)各自配置为产生第一和第二输出(68a-d,50a-d)。 第一输出(68a-d)具有第一转速,并且第二输出(50a-d)具有小于第一转速的第二转速,并且可操作地联接到框架(26a-b)。 台间驱动轴16a将第一工作台12a的第二齿轮箱30b与第二工作台12b的第一齿轮箱30c连接, 被同步旋转。