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    • 6. 发明申请
    • Apparatus and method for manipulating substrates
    • 用于操纵基板的装置和方法
    • US20050019904A1
    • 2005-01-27
    • US10863584
    • 2004-06-07
    • Andrey ZarurSeth RodgersTodd BasqueIan MacGregorTimothy Johnson
    • Andrey ZarurSeth RodgersTodd BasqueIan MacGregorTimothy Johnson
    • B01F9/00B01F11/00B01L7/00B01L9/00C12M1/00C12N15/82C12N15/87
    • C12M23/08B01F9/0001B01F9/002B01F11/00B01L7/00B01L9/52B01L2300/0819B01L2300/0822B01L2300/0829B01L2400/0409C12M23/10C12M23/48C12M27/10C12M41/14Y10S435/809
    • This disclosure generally relates to systems and methods for manipulating chambers and other substrates for chemical, biological, or biochemical samples, such as cell culture and other chambers, within units such as incubators. In certain embodiments, the invention provides a technique for maintaining a plurality of substrates or chambers in a housing within which a predetermined environment is maintained, different from the environment external to the housing, and moving substrates or chambers in and out of the housing, in some cases without creating a large opening in the housing (e.g., by opening a door significantly larger than the substrates). A technique is provided, in certain embodiments, in which a plurality of substrates are mounted in fixed, secured relation to each other within a housing providing a predetermined, controlled environment, and are moved within the housing so that they can be evenly exposed to any differences in environment within the housing. In certain embodiments, the invention provides a technique for agitating a fluid within one or more chambers or substrates within a housing that can provide environmental control, in certain embodiments without physically stirring the fluid, such as with a stir bar or other stirring element in direct contact with the fluid. In still another embodiment, the invention provides a method for rotating a substrate or chamber about a substantially vertical and/or horizontal axis. In some cases, any of the above-described systems can be rotated at a speed sufficient to cause separation of a substance within the chamber or substrate.
    • 本公开总体上涉及用于在诸如培养箱的单元内操作用于化学,生物或生化样品(例如细胞培养物和其它室)的室和其它底物的系统和方法。 在某些实施例中,本发明提供了一种用于将多个基板或腔室保持在壳体内的技术,在壳体内保持预定环境,不同于壳体外部的环境,以及将基板或腔室移入和移出壳体, 一些情况下,在外壳中不会形成大的开口(例如,通过打开比基板大得多的门)。 在某些实施例中提供了一种技术,其中多个基板在壳体内以固定的,固定的关系安装在提供预定的受控环境的壳体内,并且在壳体内移动,使得它们可以均匀地暴露于任何 房屋环境差异。 在某些实施例中,本发明提供了一种用于在一个或多个腔室内的流体搅拌的技术,其可以在某些实施例中提供环境控制,而不用物理地搅拌流体,例如直接用搅拌棒或其它搅拌元件 与流体接触。 在另一个实施例中,本发明提供了一种用于围绕基本垂直和/或水平轴线旋转衬底或室的方法。 在一些情况下,任何上述系统可以以足以使物质在室或衬底内分离的速度旋转。
    • 7. 发明授权
    • Reinforced delta-wing blade for wind turbine
    • 用于风力发电机的增强型三角翼叶片
    • US4697988A
    • 1987-10-06
    • US825879
    • 1986-02-04
    • John A. C. KentfieldIan MacGregor
    • John A. C. KentfieldIan MacGregor
    • F03D1/06
    • F03D1/0633F05B2240/301Y02E10/721
    • The flat-plate type wind turbine rotor blade comprises a rigid spoke having a single thin flexiblie skin associated therewith. The skin is formed to provide a delta-wing and a flap extension. The delta-wing and the flap extension are angularly disposed at about 25.degree. to each other. The spoke lies along the junction of the delta-wing and the flap extension. A substantially rigid peripheral member extends along the margin of the skin. The peripheral member and the spoke are joined to provide a frame to which the skin is secured. Arrays of parallel reinforcing rib members extend between the spoke and the peripheral member. These rib members are mounted on the pressure surface of the skin. The ribs on the delta-wing are positioned at an angle of about 60.degree. from the axis of the spoke; the ribs on the flap extension are positioned at an angle of about 75.degree. from said axis. They therefore coincide with the main flow paths of the air flow over the blade surface.The blade is reduced in weight and cost relative to a conventional double-walled blade or a single skin blade of a thickness sufficient to eliminate the need for reinforcing members.
    • 平板式风力涡轮机转子叶片包括刚性轮辐,其具有与其相关联的单个薄柔性皮肤。 形成皮肤以提供三角翼和翼片延伸。 三角翼和翼片延伸部彼此成角度地设置在约25度。 辐条位于三角翼与翼片延伸部分的交界处。 大致刚性的外围构件沿着皮肤的边缘延伸。 外围构件和辐条接合以提供固定皮肤的框架。 平行加强肋构件的阵列在轮辐和周边构件之间延伸。 这些肋构件安装在皮肤的压力表面上。 三角翼上的肋与辐条的轴线成约60°的角度; 翼片延伸部上的肋条与所述轴线成约75°的角度。 因此,它们与叶片表面上的空气流的主流动路径重合。 相对于传统的双壁叶片或具有足以消除对加强构件的需要的厚度的单个皮肤叶片,叶片的重量和成本降低。