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    • 4. 发明授权
    • Composite buoyancy module
    • 复合浮力模块
    • US06488447B1
    • 2002-12-03
    • US09691315
    • 2000-10-18
    • Randall W. NishRandy A. JonesMetin Karayaka
    • Randall W. NishRandy A. JonesMetin Karayaka
    • E21B7132
    • E21B17/012B63B35/44B63B2035/442
    • A buoyancy system for a deep water floating platform includes at least one composite buoyancy module coupled to the a riser having a length greater than 1000 feet and an associated weight. The composite buoyancy module is sized to have a volume to produce a buoyancy force at least as great as the weight of the riser. The composite buoyancy module may include a vessel with a composite vessel wall. The buoyancy module or vessel may have a non-circular cross-section defining an area which is greater than approximately 79 percent of an area defined by a square with sides tangent to the vessel wall to maximize buoyancy. A second buoyancy module may be directly coupled to the first buoyancy module to achieve a desired buoyancy.
    • 用于深水浮动平台的浮力系统包括至少一个复合浮力模块,其耦合到具有大于1000英尺的长度和相关重量的提升管。 复合浮力模块的尺寸设计成具有至少与提升管的重量一样大的浮力的体积。 复合浮力模块可以包括具有复合容器壁的容器。 浮力模块或容器可以具有非圆形横截面,该横截面限定了大于面积约79%的面积,该区域由具有与血管壁相切的侧面的方形限定,以最大化浮力。 第二浮力模块可以直接耦合到第一浮力模块以实现期望的浮力。
    • 5. 发明授权
    • Buoyancy can for offshore oil and gas riser
    • 浮力可用于海上石油和天然气立管
    • US07059416B2
    • 2006-06-13
    • US10719780
    • 2003-11-21
    • James Elvin DaileyMetin Karayaka
    • James Elvin DaileyMetin Karayaka
    • E21B29/12
    • E21B17/012
    • A buoyancy can for supporting an offshore oil and gas riser includes an axial bore through which the riser extends coaxially, and a radio-axial slot extending through a side of the can and into the axial bore. A pair of spaced-apart support features are disposed coaxially on the riser, and the can includes a pair of corresponding sockets in the axial bore thereof. The sockets are adapted to receive and vertically support respective ones of the support features in a complementary, axial engagement. The can is placed in the water and moved laterally relative to a fully assembled, vertically supported riser such that the riser passes through the radio-axial slot of the can and into the axial bore thereof without the need for disassembly of the upper portion of the riser. The relative vertical positions of the can and riser are then adjusted such that the support features engage and seat within respective ones of their complementary sockets.
    • 用于支撑近海油气提升管的浮力可包括轴向孔,提升管同轴地延伸穿过该轴向孔,以及延伸穿过罐的侧面并进入轴向孔的无线轴向槽。 一对间隔开的支撑特征同轴地布置在提升管上,并且罐在其轴向孔中包括一对相应的插座。 插座适于以互补的轴向接合接收和垂直地支撑相应的一个支撑特征。 罐被放置在水中并相对于完全组装的垂直支撑的立管横向移动,使得立管穿过罐的射线轴向槽并进入其轴向孔,而不需要拆卸 冒口 然后调整罐和立管的相对垂直位置,使得支撑特征接合并位于其互补插座中的相应的一个中。
    • 8. 发明申请
    • Buoyancy can for offshore oil and gas riser
    • 浮力可用于海上石油和天然气立管
    • US20050109513A1
    • 2005-05-26
    • US10719780
    • 2003-11-21
    • James DaileyMetin Karayaka
    • James DaileyMetin Karayaka
    • E21B17/01E21B7/12
    • E21B17/012
    • A buoyancy can for supporting an offshore oil and gas riser includes an axial bore through which the riser extends coaxially, and a radio-axial slot extending through a side of the can and into the axial bore. A pair of spaced-apart support features are disposed coaxially on the riser, and the can includes a pair of corresponding sockets in the axial bore thereof. The sockets are adapted to receive and vertically support respective ones of the support features in a complementary, axial engagement. The can is placed in the water and moved laterally relative to a fully assembled, vertically supported riser such that the riser passes through the radio-axial slot of the can and into the axial bore thereof without the need for disassembly of the upper portion of the riser. The relative vertical positions of the can and riser are then adjusted such that the support features engage and seat within respective ones of their complementary sockets.
    • 用于支撑近海油气提升管的浮力可包括轴向孔,提升管同轴地延伸穿过该轴向孔,以及延伸穿过罐的侧面并进入轴向孔的无线轴向槽。 一对间隔开的支撑特征同轴地布置在提升管上,并且罐在其轴向孔中包括一对相应的插座。 插座适于以互补的轴向接合接收和垂直地支撑相应的一个支撑特征。 罐被放置在水中并相对于完全组装的垂直支撑的立管横向移动,使得立管穿过罐的射线轴向槽并进入其轴向孔,而不需要拆卸 冒口 然后调整罐和立管的相对垂直位置,使得支撑特征接合并位于其互补插座中的相应的一个中。
    • 9. 发明授权
    • Method and apparatus for air can vent systems
    • 空气排气系统的方法和装置
    • US06579040B2
    • 2003-06-17
    • US09917564
    • 2001-07-26
    • Metin Karayaka
    • Metin Karayaka
    • F16L112
    • E21B19/002E21B17/012
    • An air-can riser tensioning device for use in the production of oil and gas at offshore locations includes at least one air-can used to place a vertical force on the riser. The air-can includes an open port that extends into the water toward the sea floor to a depth sufficient to prevent water from entering or air from leaving the air-can during its upward and downward vertical movements while in use. A manufacturing method includes fabricating the air-cans out of one material and fabricating the open port out of another material, and in particular making the open port from a material that is more corrosion resistant than the material the air-can is fabricated from. The manufacturing method further includes fabricating a passage in one soft tank for fluid communication with a second soft tank, and connecting the second soft tank with the passage.
    • 用于在海上位置生产油和气的空气罐立管张紧装置包括至少一个用于在立管上施加垂直力的空气罐。 空气罐包括一个开放的端口,其在水中向海底延伸到足以防止水在其使用期间的向上和向下垂直运动期间进入或空气离开空气罐的深度。 一种制造方法包括通过一种材料制造空气罐并且从另一种材料制造开放端口,并且特别地使得开口通过比由空气罐制造的材料更耐腐蚀的材料制成。 该制造方法还包括在一个软罐中制造通道,用于与第二软罐流体连通,并将第二软罐与通道连接。
    • 10. 发明授权
    • Compliant buoyancy can guide
    • 符合浮力可引导
    • US07096958B2
    • 2006-08-29
    • US10760807
    • 2004-01-20
    • Metin KarayakaJohn Montague
    • Metin KarayakaJohn Montague
    • E21B17/01
    • B63B35/613B63B35/4413B63B59/02
    • A floating offshore platform, of the type having a buoyancy can disposed within a support structure, includes a can guide assembly that has at least two compliant compression pads that are configured and arranged to provide a non-linear load-versus-deflection characteristic in response to impact loads generated by the impact of the can against the guide assembly. At least one of the compression pads is substantially stiffer (less compliant) than the other pad. The pads are arranged so that the relatively soft pad absorbs the impact load before the relatively stiff pad is engaged. In one embodiment, first, second, and third compression pads are arranged vertically, the upper and lower pads being softer (more compliant) than the middle pad. In another embodiment, a first, relatively soft, compression pad coaxially surrounds a second, relatively stiff compression pad.
    • 具有浮力的类型的浮动海上平台可以设置在支撑结构内,包括具有至少两个顺应压缩垫的罐导向组件,所述至少两个柔性压缩垫构造和布置成提供响应中的非线性负载 - 挠度特性 以冲击由罐撞击导向组件产生的负载。 压缩垫中的至少一个与其他垫相比基本上更硬(更柔顺)。 垫被布置成使得相对较软的垫在相对刚性的垫接合之前吸收冲击载荷。 在一个实施例中,第一,第二和第三压缩垫垂直布置,上垫和下垫比中间垫更柔软(更柔顺)。 在另一个实施例中,第一相对较软的压缩垫同轴地围绕第二相对刚性的压缩垫。