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    • 5. 发明授权
    • Embedded flex-lock slip liner hanger
    • 嵌入式柔性滑动滑行挂架
    • US07431096B2
    • 2008-10-07
    • US11148390
    • 2005-06-08
    • Peter Fay
    • Peter Fay
    • E21B43/10E21B23/00
    • E21B23/01E21B43/10
    • A liner hanger includes an annular slip seat that radially surrounds a section of the liner being hung. The slip seat contains a plurality of windows that each accommodates at least one intermediate slip seat. The intermediate slip seats, in turn, each contain windows that accommodate a slip element. There are tongue and groove arrangements between the slip seat and the intermediate slip seat as well as between the intermediate slip seat and the slip element that allow axial movement of the slip element to be translated by camming surfaces into radial outward movement of both the intermediate slip seat and the slip element. The imposition of one or more intermediate slip seats, in an embedded or nested relationship, allows for greater radial expansion of the slip elements with respect to the interior liner.
    • 衬管悬挂器包括环形滑座,其径向地围绕悬挂的衬垫的一部分。 滑动座椅包含多个窗口,每个窗口容纳至少一个中间滑座。 中间滑动座位又分别包含容纳滑动元件的窗户。 在滑动座和中间滑动座之间以及中间滑动座和滑动元件之间存在舌形和凹槽布置,允许滑动元件通过凸轮表面轴向移动以被中间滑块的径向向外运动 座位和滑动元件。 嵌入或嵌套关系中的一个或多个中间滑动座的施加允许滑动元件相对于内衬的更大的径向膨胀。
    • 9. 发明授权
    • Series-parallel condensing system
    • 串并联冷凝系统
    • US07926555B2
    • 2011-04-19
    • US11821816
    • 2007-06-26
    • Frank David SanderlinHerman Peter Fay
    • Frank David SanderlinHerman Peter Fay
    • F28B9/02F28F27/02
    • F28B1/02F28B1/06F28B7/00F28B9/06F28B11/00
    • A series-parallel condensing system comprised of an air-cooled condenser, a surface condenser, a circulating water system and a cooling tower, body of water, or other equivalent heat sink. The cooling tower, being an evaporative device, consumes water. In the simplest embodiment of the invention steam is condensed in a two-stage series process with steam first fed to an air-cooled condenser where the majority of the steam is condensed and then to a surface condenser, which in conjunction with the circulating water system and cooling tower condenses the remaining steam. This embodiment achieves the greatest degree of water conservation. The function of the surface condenser is to replace the dephlegmator of the air-cooled condenser, which results in a significant reduction in the size and cost of the air-cooled condenser and also yields improved plant performance and operational simplicity. In a second embodiment, where additional makeup water is available, a steam bypass system is added converting the system from a series condensing process into a series-parallel process. In this arrangement steam exiting the turbine flows through both the air-cooled condenser and also through the bypass system with final condensation taking place in the surface condenser.
    • 一种串并联冷凝系统,包括空气冷却冷凝器,表面冷凝器,循环水系统和冷却塔,水体或其他等效散热器。 作为蒸发装置的冷却塔消耗水。 在本发明的最简单的实施方案中,蒸汽在两级串联方法中冷凝,蒸汽首先进料到空气冷却的冷凝器中,其中大部分蒸汽被冷凝,然后到达表面冷凝器,其结合循环水系统 并且冷却塔冷凝剩余的蒸汽。 该实施例达到最大程度的节水。 表面冷凝器的功能是取代空冷冷凝器的分凝器,这导致空冷冷凝器的尺寸和成本的显着降低,并且还产生改进的设备性能和操作简单性。 在第二实施例中,在可用附加补充水的情况下,添加蒸汽旁路系统,将系统从串联冷凝过程转换为串并联过程。 在这种布置中,离开涡轮的蒸汽流过空气冷却的冷凝器,并且还通过旁路系统,在表面冷凝器中发生最终的冷凝。