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    • 61. 发明授权
    • Drilling vessel provided with auxiliary tower or auxiliary mast
    • 设有辅助塔或辅助桅杆的钻井船
    • US06361262B1
    • 2002-03-26
    • US09486766
    • 2000-03-02
    • Joop Roodenburg
    • Joop Roodenburg
    • E21B1900
    • E21B19/143E21B15/02
    • The present invention relates to a drilling vessel with drilling tower or drilling mast for drilling in the earth's surface from said vessel, for example for oil or gas. The drilling vessel according to the present invention is characterized by an auxiliary tower or mast placed next to the drilling tower or drilling mast, and a clamp carriage which is fixed so that it is movable between a first position near the drilling tower or drilling mast and a second position near the auxiliary tower or auxiliary mast, said clamp carriage having at least one gripping clamp for clamping the drill string. The presence of an auxiliary tower or auxiliary mast next to the drilling tower or drilling mast means that a substantial time gain can be achieved during the construction and dismantling of the drilling string.
    • 本发明涉及具有钻塔或钻桅杆的钻井器,用于在所述容器中例如用于油或气的地球表面上钻孔。 根据本发明的钻井船的特征在于邻近钻井塔或钻井桅杆设置的辅助塔架或桅杆,以及固定夹具架,使其能够在靠近钻塔或钻桅杆的第一位置和 在辅助塔或辅助桅杆附近的第二位置,所述夹具托架具有用于夹紧钻柱的至少一个夹紧夹。 辅助塔架或辅助桅杆在钻井塔或钻井桅杆旁边的存在意味着在钻铤的施工和拆除期间可以实现实质的时间增益。
    • 62. 发明授权
    • Semi-submersible vessel and operating method
    • 半潜式船舶及作业方式
    • US09352809B2
    • 2016-05-31
    • US13808778
    • 2011-07-07
    • Joop RoodenburgMarc Louis BrinkmanAlexei Bereznitski
    • Joop RoodenburgMarc Louis BrinkmanAlexei Bereznitski
    • B63B35/08B63B35/44E21B19/14B63B1/04
    • B63B35/4413B63B1/04B63B1/041B63B35/08B63B35/44B63B2001/044B63B2241/12E21B19/143
    • A semi-submersible vessel for offshore operations is suitable to be operated in icy waters and in ice-free waters. The vessel includes an operating deck, at least one lower hull, an essentially vertical connecting structure between the at least one lower hull and the operating deck, and a ballast system. The connecting structure has a water portion and an icebreaking portion arranged on top of each other. The vessel is configured to have an icebreaking draft for icy waters, and a water draft for ice-free waters in which the waterline is substantially level with the water portion. The icebreaking portion has a closed tapered contour. During the water draft, the collective area of the water portion of the connecting structure intersecting the water surface is smaller than the collective area of the icebreaking portion of the connecting structure intersecting the water surface during the icebreaking draft.
    • 用于海上作业的半潜式船只适用于冰冷的水域和无冰水域。 船舶包括操作甲板,至少一个下船体,在至少一个下船体和操作甲板之间的基本垂直的连接结构以及镇流器系统。 连接结构具有设置在彼此顶部的水部分和破冰部分。 船舶被配置为具有冰冷的水域的破冰吃水,以及无水水域的水吃水,其中水线基本上与水部分平齐。 破冰部分具有闭合的锥形轮廓。 在抽水期间,与水面相交的连接结构的水部分的集合区域小于在破冰吃水期间与水面相交的连接结构的破冰部分的集合区域。
    • 64. 发明授权
    • Offshore vessel for laying a pipeline on the seabed, and a method for handling pipe sections
    • 用于在海底铺设管道的海上船舶,以及管道管段的处理方法
    • US09056657B2
    • 2015-06-16
    • US13497762
    • 2010-09-21
    • Ronny Lambertus Waltherus NouwensJoop Roodenburg
    • Ronny Lambertus Waltherus NouwensJoop Roodenburg
    • F16L1/12B63B35/03
    • B63B35/03F16L1/207
    • An offshore pipelaying vessel for laying a pipeline on a seabed includes a pipeline-laying installation having a preassembly line; an inspection station; an assembly line with a pipeline assembly station to assemble a pipeline to be launched from the vessel by joining multi and/or single length pipe sections end to end; and a conveyor system for transporting multi and single length pipe sections, said conveyor system comprising an entry-and-exit location, wherein the conveyor system is configured to allow transportation of multi and/or single length pipe sections at least along the following routes: directly from the entry-and-exit location to the assembly line; indirectly from the entry-and-exit location to the assembly line via the preassembly line and said inspection station; and from the entry-and-exit location to the preassembly line and said inspection station, and after passing said inspection station directly to the entry-and-exit location.
    • 用于在海床上铺设管道的海上管道铺设船包括具有预组装线的管道敷设设备; 检查站; 具有管线组装站的装配线,用于通过端部与端部连接多个和/或单个长度的管段来组装要从容器发射的管道; 以及用于输送多个和单个长度的管段的输送机系统,所述输送机系统包括入口和出口位置,其中所述输送系统被配置为允许至少沿着以下路线运输多个和/或单个长度的管段: 直接从出入境点到装配线; 通过预组装线和所述检查站间接从进出口位置到装配线; 并且从进出口位置到预装配线和所述检查站,并且在通过所述检查站之后直接进入出入口位置。
    • 65. 发明授权
    • Crane vessel
    • 起重船
    • US08701904B2
    • 2014-04-22
    • US12811026
    • 2009-01-14
    • Joop RoodenburgTheodorus Cornelis Joanes Maria StijnmanHendrikus Jacobus Weterings
    • Joop RoodenburgTheodorus Cornelis Joanes Maria StijnmanHendrikus Jacobus Weterings
    • B66C23/26B66C23/52
    • B66C23/62B66C23/52B66C23/605B66C23/82
    • A crane vessel including a revolving hoist crane and a method of using such a vessel are provided. The hoist crane includes a jib, main hoisting means and auxiliary hoisting means for raising and lowering a load. The main hoisting means include a main hoisting tackle with a main hoist upper block connected to the jib and a main hoist lower block. The main hoist lower block is assembled from a sheave block including the sheaves of the main hoist lower block and a load attachment assembly having the lowering weight and the main load attachment device. The crane vessel is provided with a load attachment assembly storage device for storage of the disassembled load attachment assembly and displacement means capable of engaging with and displacing the load attachment assembly while it is assembled to the sheave block and when the jib is supported by a jib rest.
    • 提供了包括旋转起重机的起重机和使用这种容器的方法。 起重机包括起重机,主起重机构和用于升降负载的辅助提升装置。 主提升装置包括主起重滑车,主起重机上部块连接到起重臂和主起重机下部块。 主起重机下部块由包括主起重机下部车轮的滑轮的滑轮组件和具有降低重量的负载附接组件和主负载附接装置组装。 起重机容器设置有负载附接组件存储装置,用于存储拆卸的负载附接组件和位移装置,其能够在装配到滑轮块的同时与负载附接组件接合和移位,并且当起重臂由支臂支撑时 休息。
    • 66. 发明申请
    • MARINE TENSIONER
    • 海上起重机
    • US20130243529A1
    • 2013-09-19
    • US13882515
    • 2011-11-08
    • Joop RoodenburgRonny Lambertus Waltherus Nouwens
    • Joop RoodenburgRonny Lambertus Waltherus Nouwens
    • F16L1/23
    • F16L1/23B63B35/03B65H51/105F16L1/235
    • The invention is directed to a marine tensioner (1) for handling an elongated article from an offshore vessel. The tensioner comprises a tensioner frame (11), multiple track units (20), wherein each track unit comprises an elongated chassis (30) and an endless track supported by said chassis, wherein between the chassis of each track unit and the tensioner frame a connecting structure (40,140) is provided that at least allows for lateral motion of the track unit with respect to the passage axis (26) so as to adapt the position of the track unit. For each track unit a group of hydraulic squeeze cylinders (50a, 50b, 50c) is provided between the tensioner frame and the chassis of the track unit. The tensioner further comprises a tilting mechanism (60) for the group of squeeze cylinders of each track unit, said tilting mechanism being adapted to tilt the hydraulic squeeze cylinders of a track unit between an operative position, wherein the squeeze cylinders are operative to exert a squeeze force in use of the tensioner for handling an elongated article, and an oversized article passage position.
    • 本发明涉及一种用于处理来自海上船舶的细长物品的船用张紧器(1)。 张紧器包括张紧器框架(11),多个轨道单元(20),其中每个轨道单元包括细长底盘(30)和由所述底盘支撑的环形轨道,其中在每个轨道单元的底盘与张紧器框架a之间 提供连接结构(40,140),其至少允许轨道单元相对于通道轴线(26)的横向运动,以便适应轨道单元的位置。 对于每个轨道单元,一组液压挤压缸(50a,50b,50c)设置在张紧器框架和轨道单元的底盘之间。 张紧器还包括用于每个轨道单元的一组挤压缸的倾斜机构(60),所述倾斜机构适于使履带单元的液压挤压缸在操作位置之间倾斜,其中挤压缸可操作地施加 使用张紧器处理细长物品的挤压力以及超大物品通道位置。
    • 68. 发明授权
    • Installing an expandable tubular in a subsea wellbore
    • 在海底井筒中安装可膨胀管
    • US08376042B2
    • 2013-02-19
    • US12682211
    • 2008-10-03
    • Diederick Bernardus WijningJoop Roodenburg
    • Diederick Bernardus WijningJoop Roodenburg
    • E21B19/00
    • E21B19/22E21B17/20E21B19/143F16L1/202
    • A method and vessel for installing an expandable tubular in a subsea wellbore, wherein said expandable tubular is assembled from expandable tubular segments, said expandable tubular being adapted to be expanded diametrically when positioned in said wellbore by means of expansion tooling, wherein a multitude of expandable tubular segments are provided, and wherein use is made of a surface vessel, said vessel comprising: at least one assembly station adapted for the assembly of at least one intermediate tubular assembly by interconnection of multiple expandable tubular segments, an intermediate tubular assembly suspension storage device adapted for storage of one or more intermediate tubular assemblies, said intermediate tubular assemblies being suspended from the vessel into the water by said storage device, a guide and handling system for intermediate tubular assemblies, said guide and handling system having an entry and an exit, said entry being spaced from said exit, the entry being arranged and adapted to receive a suspended intermediate tubular assembly from the storage device, the system being adapted for the upward feeding of said intermediate tubular assembly from the entry towards a top of the system, and then downwards to the exit, said system further being adapted for launching the intermediate tubular assembly downward from said exit into the water towards and into the wellbore, a connecting station adapted for connecting an intermediate tubular assembly to another intermediate tubular assembly.
    • 一种用于在海底井筒中安装可膨胀管的方法和容器,其中所述可膨胀管由可膨胀管状管段组装,所述可膨胀管适于在通过膨胀工具定位在所述井眼中时沿径向扩径,其中多个可膨胀管 提供管状部分,并且其中使用表面容器,所述容器包括:适于通过多个可膨胀管状部分的互连来组装至少一个中间管状组件的至少一个组装工位,中间管状组件悬挂储存装置 适于存储一个或多个中间管状组件,所述中间管状组件通过所述存储装置从容器悬挂到水中,用于中间管状组件的引导和处理系统,所述引导和处理系统具有入口和出口, 所述条目与所述出口间隔开,所述条目是 布置并适于从所述存储装置接收悬挂的中间管状组件,所述系统适于将所述中间管状组件从入口朝向所述系统的顶部向上馈送,然后向下进入所述出口,所述系统还适于 用于将中间管状组件从所述出口向下推入水中并进入井眼,连接站适于将中间管状组件连接到另一中间管状组件。