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    • 1. 发明授权
    • Antenna extension system
    • 天线扩展系统
    • US06392606B1
    • 2002-05-21
    • US09740758
    • 2000-12-14
    • Daniel W. FrenchTheodore C. GagliardiSteven L. CamaraJohn J. Vaillancourt
    • Daniel W. FrenchTheodore C. GagliardiSteven L. CamaraJohn J. Vaillancourt
    • H01Q104
    • G01S19/36H01Q1/04H01Q1/10H01Q1/34
    • An antenna extension system for extending an antenna from an underwater vehicle. The system comprises a housing disposed wholly within the vehicle and a plurality of telescopically connected tiers extendible from a base tier disposed within the housing, an innermost of the tiers being adapted to support the antenna. A cable extends from a base portion of the housing and is fixed at a distal end to the antenna. A plurality of telescopically connected fairings are extendible from the housing and are disposed around the tiers and the cable. A cap is fixed to a distal end of a distalmost of the fairings for enclosing the antenna. Extension of the telescopically connected tiers from the base tier moves the antenna from wholly inside the housing to a position extending outwardly from the vehicle, and extends the cable and fairings with the tiers.
    • 一种用于从水下航行器延伸天线的天线延伸系统。 该系统包括完全设置在车辆内的壳体以及可从设置在壳体内的基座层延伸的多个可伸缩连接的层,其中最内层适于支撑天线。 电缆从壳体的基部延伸并固定在天线的远端。 多个可伸缩连接的整流罩可从壳体延伸并围绕层和电缆设置。 盖子固定在整流罩最远端的远端,用于封闭天线。 从基座延伸的可伸缩连接的层将天线从壳体的整体移动到从车辆向外延伸的位置,并且使层与层叠层延伸电缆和整流罩。
    • 4. 发明授权
    • Bottom activated retractable control surface for an unmanned undersea vehicle
    • 底部活动可伸缩控制面为无人值守的海底车辆
    • US06640740B1
    • 2003-11-04
    • US10214483
    • 2002-08-05
    • Daniel W. FrenchJohn J. VaillancourtThomas W. Hedly, Jr.
    • Daniel W. FrenchJohn J. VaillancourtThomas W. Hedly, Jr.
    • B63G814
    • B63G8/18B63G8/001B63G2008/004B63H2025/385
    • A bottom activated retractable control device includes a fin member having a front edge, a trailing edge opposite to the front edge, a bottom edge between the front edge and the trailing edge, and an arm portion extending from and coextensive with the leading edge and away from the bottom edge. The arm portion includes a pivot pin extending in a perpendicular direction from each side of the arm portion. A pivot housing having an aperture is provided for receiving the pivot pin of the arm portion, the housing enabling both a vertical pivot of the fin member upon contact of the fin with, an object and axial rotation of the fin about the arm portion of the fin member. A well is formed in the bottom surface of an underwater vehicle corresponds in depth to a fully retracted position of the fin member and in width to any rotated position of the fin member. A spring member is joined between the pivot housing and the pivot pin, the spring member normally biasing the fin member away from the vehicle, the fin member pivoting into as much as an entirety of the well in response to a force against the control fin.
    • 底部活动的可伸缩控制装置包括翅片构件,其具有前边缘,与前边缘相对的后缘,前边缘和后边缘之间的底边缘以及从前缘延伸并与前缘共同延伸的臂部分 从底部边缘。 臂部包括从臂部的每一侧沿垂直方向延伸的枢轴销。 具有孔的枢轴壳体设置成用于容纳臂部分的枢转销,该壳体能够在翅片接触时使翅片构件的垂直枢转与物体相接触,并且翅片围绕臂部分的轴向旋转 翅片成员。 形成在水下运载工具的底面上的一个井深度对应于翅片构件的完全缩回位置并且宽度对准翼片构件的任何旋转位置。 弹簧构件连接在枢转壳体和枢转销之间,弹簧构件通常使翅片构件偏离车辆,翼片构件响应于对控制翅片的力而旋转到井的整体。
    • 6. 发明授权
    • Underwater depolyable testing platform
    • 水下部署测试平台
    • US6085683A
    • 2000-07-11
    • US144892
    • 1998-09-01
    • Daniel W. FrenchJohn J. VaillancourtRobert N. CarpenterRichard R. Shell
    • Daniel W. FrenchJohn J. VaillancourtRobert N. CarpenterRichard R. Shell
    • B63C11/00G10K11/00B63B35/00
    • G10K11/006B63C11/00
    • An underwater testing platform assembly includes first and second rails for disposition in part in a body of water, each of the rails having facility for connection to a surface vessel. The rails are disposed vertically, parallel to each other. A cage comprising a network of struts is mounted on the rails. A skid is mounted on, and is movable in, the cage, and can receive and retain an apparatus to be tested. First and second travelers are fixed to the cage and are movably mounted, respectively, on the rails, such that the cage is vertically movable on the rails. Instrumentation is mounted on the cage. A transmission line is connected at a first end to the instrumentation and extends to the surface vessel. A receiver on the surface vessel has a second end of the transmission line connected thereto and receives data signals from the instrumentation.
    • 水下测试平台组件包括用于部分地配置在水体中的第一和第二轨道,每个轨道具有用于连接到地面船的设备。 轨道垂直设置,彼此平行。 包括支柱网的笼子安装在轨道上。 滑架安装在保持架上并且可移动到保持架中,并且可以接收和保持待测试的装置。 第一和第二旅行者固定在保持架上并分别可移动地安装在轨道上,使得轿厢可以在轨道上垂直移动。 仪表安装在机架上。 传输线在第一端连接到仪器,并延伸到表面容器。 表面容器上的接收器具有连接到其上的传输线的第二端并接收来自仪器的数据信号。
    • 7. 发明授权
    • Alignment lifting fixture
    • 对准提升夹具
    • US6030014A
    • 2000-02-29
    • US152475
    • 1998-09-11
    • John J. VaillancourtSteven L. CamaraDaniel W. French
    • John J. VaillancourtSteven L. CamaraDaniel W. French
    • B63C7/16E04B1/24
    • B63C7/16E04B2001/2433
    • An aligning and lifting device is disclosed. The invention may be for use th an underwater cage including a top portion and a bottom portion. The aligning and lifting device includes a male member having a support surface fixed to the top portion of the cage, an integrally formed wedge shaped portion depending from the support surface for lateral alignment capabilities, and an alignment pin projecting from the distal end of the depending wedge shaped portion for facilitating vertical alignment. The device also has a female member that includes integrally formed side walls and complementary support surfaces opposed to the support surface of the male member, thereby defining a complementary wedge shaped opening for receiving the depending wedge portion of the male member. An alignment pin hole is formed at the base of said complementary wedge shaped opening for receiving the alignment pin of the depending wedge. The male member is aligned with the female member in a vertical direction by insertion of the alignment pin into the alignment pin hole and in a lateral direction by mating of the male wedge with the complementary shaped female opening.
    • 公开了一种对准和提升装置。 本发明可以用于包括顶部和底部的水下保持架。 对准和提升装置包括:阳构件,其具有固定到保持架的顶部的支撑表面,从支撑表面悬垂的一体形成的楔形部分用于横向对准能力;以及对准销,其从垂直方向的远端突出 楔形部分,用于促进垂直对准。 该装置还具有阴构件,其包括一体形成的侧壁和与阳构件的支撑表面相对的互补支撑表面,由此限定用于接收阳构件的悬垂楔形部分的互补的楔形开口。 在所述互补的楔形开口的底部形成一个对准销孔,以便接收该垂直楔的对准销。 阳构件通过将对准销插入对准销孔中并且通过将凸形楔与互补形状的凹形开口配合而在横向方向上在垂直方向上与阴构件对齐。
    • 9. 发明授权
    • Fluid pressure measuring device interface
    • 流体压力测量装置接口
    • US5824911A
    • 1998-10-20
    • US891366
    • 1997-07-10
    • Daniel W. French
    • Daniel W. French
    • G01L19/00G01L7/00
    • G01L19/0007
    • A fluid pressure measuring device interface which may be used in a submerle platform or vehicle includes an interface chamber fluidly coupled to a conduit which leads to the fluid medium whose pressure is to be measured. The interface chamber encloses a liquid-filled deformable pressure transfer container or bladder, which is generally completely surrounded by the fluid medium whose pressure is being measured. A second conduit fluidly couples the bladder to a pressure measuring device. The device can perform fluid medium pressure measurements including water pressure and wave and tide measurements. When used in an underwater structure, the conduit coupled to the interface chamber connects to the exterior surface of the underwater structure, at a point generally vertically above the interface housing.
    • 可用在潜水平台或车辆中的流体压力测量装置接口包括流体耦合到导管的接口腔室,该导管通向要测量其压力的流体介质。 界面室包围液体填充的可变形的压力转移容器或囊,其通常被被测量的压力的流体介质完全包围。 第二导管将气囊流体地连接到压力测量装置。 该装置可以执行流体介质压力测量,包括水压和波浪和潮汐测量。 当在水下结构中使用时,连接到界面室的管道在接口壳体上方大致垂直的位置处连接到水下结构的外表面。
    • 10. 发明授权
    • Oceanographic sensor suite wet well system
    • 海洋传感器套件湿井系统
    • US5578751A
    • 1996-11-26
    • US530464
    • 1995-12-08
    • Daniel W. French
    • Daniel W. French
    • B63C11/42B63G8/38G01C13/00G01F1/00
    • G01C13/00B63C11/42B63G8/38
    • A wet well sensor system includes a housing member having a fluid inlet and fluid outlet, each formed in a wall of the housing member. A wet well member is positioned within the housing. The wet well includes a canister portion, a cavity formed within the canister, an inlet port formed in an end wall of the canister and an outlet port formed in the same end wall thereof, a plurality of sensor members formed within the wet well canister, each of the plurality of sensors having a dry cable for supplying sensed information to a location exterior of the wet well canister and interior to the housing member. Finally, there are provided braces for stationarily mounting the plurality of sensor members within the wet well and a pump system for circulating fluid from the fluid inlet to the fluid outlet of the housing member and intermediately through the wet well canister such that fluid sensing is entirely contained within the wet well canister.
    • 湿式井传感器系统包括具有流体入口和流体出口的壳体构件,每个形成在壳体构件的壁中。 湿井构件定位在壳体内。 湿井包括罐部分,在罐内形成的空腔,形成在罐的端壁中的入口和形成在其同一端壁中的出口,形成在湿井罐内的多个传感器构件, 多个传感器中的每一个具有用于将感测信息提供到湿井筒外部的位置并且在壳体内部的内部的干燥电缆。 最后,提供了用于将多个传感器构件固定地安装在湿井内的支架和用于将流体从流体入口循环到壳体构件的流体出口并且中间通过湿井罐的泵系统,使得流体感测完全 包含在湿井罐内。