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    • 1. 发明授权
    • Electrochemical fuel cell stack with compression bands
    • 具有压缩带的电化学燃料电池堆
    • US5993987A
    • 1999-11-30
    • US96769
    • 1998-06-12
    • Boguslaw WozniczkaNicholas J. FletcherPeter R. Gibb
    • Boguslaw WozniczkaNicholas J. FletcherPeter R. Gibb
    • H01M8/10H01M8/24
    • H01M8/247H01M2300/0082
    • An electrochemical fuel cell stack includes a plurality of fuel cell assemblies interposed between a pair of end plate assemblies. The mechanism for securing the stack in its compressed, assembled state includes at least one compression band which circumscribes the end plate assemblies and interposed fuel cell assemblies of the stack. At least one of the end plate assemblies is sufficiently thin so as to deflect under the compressive force if the at least one end plate assembly is supported only at a peripheral edge portion thereof. Preferably, at least one of the end plate assemblies comprises a resilient member which cooperates with each compression band to urge the first end plate assembly toward the second end plate assembly, thereby applying compressive force to the fuel cell assemblies to promote sealing and electrical contact between the layers forming the fuel cell stack.
    • 电化学燃料电池堆包括插入在一对端板组件之间的多个燃料电池组件。 用于将堆叠固定在其压缩的组装状态的机构包括至少一个压缩带,该压缩带围绕端板组件和中间堆叠的燃料电池组件。 至少一个端板组件足够薄,以便如果至少一个端板组件仅在其周边边缘部分处被支撑,则在压缩力下偏转。 优选地,端板组件中的至少一个包括与每个压缩带配合以将第一端板组件推向第二端板组件的弹性构件,从而向燃料电池组件施加压力,以促进燃料电池组件之间的密封和电接触 形成燃料电池堆的层。
    • 3. 发明授权
    • Weight type motion compensation system for a riser moored tanker
    • 用于立管停泊油罐的重量类型运动补偿系统
    • US4567842A
    • 1986-02-04
    • US619736
    • 1984-06-12
    • Peter R. GibbPius Bartsch
    • Peter R. GibbPius Bartsch
    • B63B22/02E21B19/00E21B19/14E21B19/15E21B43/01B63B21/00
    • E21B19/143B63B22/025E21B19/006E21B19/15E21B43/01
    • A system for mooring a ship-shape floating production system using a riser tensioned by a weight type motion compensation system. The riser is attached to the ship by a rocking beam that has a weight attached at one end of the beam to balance the vertical load component of the riser attached at the other end of the beam. A rocker arrangement is used whereby the beam support point moves to compensate for the inertial forces of the weight caused by the vertical accelerations of the tanker. Thus the high load fluctuations and hence poor riser fatigue life usually associated with weight type motion compensators is minimized. A gear arrangement is used to transmit horizontal loads. The overall arrangement provides a totally self-contained motion compensation and riser handling system that requires minimal ship modifications and is independent of significant self-induced wave loading.
    • 一种使用由重量型运动补偿系统张紧的提升管系泊船形浮动生产系统的系统。 提升管通过摇摆梁连接到船上,该摇摆梁在梁的一端具有附着的重量,以平衡连接在梁的另一端的提升管的垂直载荷分量。 使用摇臂装置,由此梁支撑点移动以补偿由油轮的垂直加速度引起的重量的惯性力。 因此,通常与重量型运动补偿器相关联的高负载波动和因此较差的提升管疲劳寿命被最小化。 齿轮装置用于传输水平载荷。 整体布置提供完全独立的运动补偿和立管处理系统,其需要最小的船舶修改,并且独立于显着的自身波浪载荷。
    • 4. 发明授权
    • Apparatus and method for connecting subsea production equipment to a
floating facility
    • 将海底生产设备连接到浮动设施的装置和方法
    • US4662785A
    • 1987-05-05
    • US578204
    • 1984-02-07
    • Peter R. GibbKarel Balik
    • Peter R. GibbKarel Balik
    • E21B43/013E21B17/01E21B33/038F16L37/00E21B7/12F16L37/08
    • F16L37/002E21B17/01E21B33/038
    • There is disclosed a type of riser to connect subsea hydrocarbon production equipment to a floating storage, process or control facility which combines the advantages of integral and non-integral risers previously used. This is achieved by a locking mechanism which allows the individual tubes to be freed once each section of riser is added, and a subsea remotely operated connector that allows individual tubing to be released. Improvements in the design of collet connectors are also disclosed. There is also disclosed a guidelineless method of connecting risers or other equipment to subsea installations. The method uses a cone on the subsea equipment and a guideframe on the riser. The guideframe aligns itself with the subsea cone prior to the riser being connected. As the riser is drawn to the subsea mandrel the guideframe aligns the riser connector with the mandrel. A still further embodiment disclosed herein is a flexjoint consisting of a series of flexjoints in an outer case with a high pressure tube inside. Internal tubes are fixed at either end of the assembly to the outer case.
    • 公开了一种将海底碳氢化合物生产设备连接到浮动储存,过程或控制设施的提升器,其结合了先前使用的整体式和非整体式立管的优点。 这是通过一个锁定机构来实现的,一旦每个提升管部分被添加,允许单独的管被释放,以及允许单独管道被释放的海底远程操作的连接器。 还公开了夹头连接器的设计改进。 还公开了将立管或其他设备连接到海底设施的无引导方法。 该方法使用海底设备上的锥体和立管上的引导框架。 引导架在提升管连接之前将其与海底锥体对准。 当提升管被吸引到海底心轴时,引导框架将立管连接器与心轴对准。 本文公开的另一个实施例是由在外壳中具有高压管内部的一系列弯曲部组成的挠性连接件。 内管固定在组件的任一端到外壳。
    • 9. 发明授权
    • Membrane electrode assembly for an electrochemical fuel cell
    • 一种用于电化学燃料电池的膜电极组件
    • US06423439B1
    • 2002-07-23
    • US09545274
    • 2000-04-07
    • Russell H. BartonPeter R. GibbJoel A. RonneHenry H. Voss
    • Russell H. BartonPeter R. GibbJoel A. RonneHenry H. Voss
    • H01M208
    • H01M8/241H01M8/0271H01M8/247H01M8/2483H01M2300/0082
    • An improved membrane electrode assembly (“MEA”) comprises coextensive ion exchange membrane and electrode layers and a resilient fluid impermeable integral seal comprising a sealant material impregnated into the porous electrode layers in the sealing regions. The integral seal preferably circumscribes the electrochemically active area of the MEA. The integral seal preferably also extends laterally beyond the edge of the MEA. An integral seal may also be provided around any openings, such as external manifold openings formed outside the MEA. Preferably, the uncured sealant material is a flow processable elastomer applied using an injection molding process. In preferred embodiments the seal has a plurality of spaced, parallel raised ribs with cross-ribs extending therebetween at spaced intervals. The raised ribs and cross-ribs provide compartmentalized seals that provide improved protection against fluid leaks.
    • 改进的膜电极组件(“MEA”)包括共同延伸的离子交换膜和电极层以及包含浸渍在密封区域中的多孔电极层中的密封剂材料的弹性流体不可渗透的整体密封件。 整体密封件优选地围绕MEA的电化学活性区域。 整体密封件还优选地横向延伸超过MEA的边缘。 也可以围绕任何开口设置整体密封件,例如在MEA外部形成的外部歧管开口。 优选地,未固化的密封剂材料是使用注射成型方法施加的可流动加工的弹性体。 在优选实施例中,密封件具有多个间隔开的平行的凸肋,其横截面以间隔开间隔延伸。 凸肋和横肋提供隔室密封,提供改进的防止流体泄漏的保护。