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    • 1. 发明授权
    • Side-by-side hydrocarbon transfer system
    • 并排烃转运系统
    • US07793605B2
    • 2010-09-14
    • US11587672
    • 2005-04-29
    • Leendert PoldervaartJack PollackHein WilleHein Oomen
    • Leendert PoldervaartJack PollackHein WilleHein Oomen
    • B63B3/24
    • B63B21/50B63B21/04B63B27/24
    • The invention relates to a mooring system with a first vessel for containing hydrocarbons having at its bow and/or stern a transverse arm and a fluid transfer mechanism of a duct connected to a tank on the first vessel and a coupling end for connecting to a second vessel. The second vessel is moored alongside the first vessel and is attached via at least one cable, extending from its bow in the length direction of the vessel, to a mooring end of the arm. The mooring end of the arm is situated at or near a longitudinal centerline of the second vessel. The arm, during use, is in a fixed position and a pulling force element is attached to the cable for applying a pulling force on the cable upon relative movement of the second vessel with respect to the arm. The force element allows a predetermined maximum displacement of the second vessel.
    • 本发明涉及一种具有第一容器的系泊系统,该第一容器用于容纳在其弓和/或尾部具有横向臂的碳氢化合物和连接到第一容器上的罐的管道的流体传递机构,以及用于连接到第二容器 船只。 第二个船舶停泊在第一个船舶的旁边,并通过至少一根从船只的长度方向的船弓延伸到缆绳系泊端的缆索。 臂的系泊端位于第二容器的纵向中心线处或附近。 臂在使用期间处于固定位置,并且牵引力元件附接到电缆,用于在第二容器相对于臂相对运动时在电缆上施加拉力。 力元件允许第二容器的预定的最大位移。
    • 2. 发明申请
    • Side-By-Side Hydrocarbon Transfer System
    • 并排烃转运系统
    • US20070289517A1
    • 2007-12-20
    • US11587672
    • 2005-04-29
    • Leendert PoldervaartJack PollackHein WilleHein Oomen
    • Leendert PoldervaartJack PollackHein WilleHein Oomen
    • E02B3/24
    • B63B21/50B63B21/04B63B27/24
    • The invention relates to a mooring system with a first vessel for containing hydrocarbons having at its bow and/or stem a transverse arm and a fluid transfer mechanism of a duct connected to a tank on the first vessel and a coupling end for connecting to a second vessel. The second vessel is moored alongside the first vessel and is attached via at least one cable, extending from its bow in the length direction of the vessel, to a mooring end of the arm. The mooring end of the arm is situated at or near a longitudinal centerline of the second vessel. The arm, during use, is in a fixed position and a pulling force element is attached to the cable for applying a pulling force on the cable upon relative movement of the second vessel with respect to the arm. The force element allows a predetermined maximum displacement of the second vessel.
    • 本发明涉及一种具有第一容器的系泊系统,所述第一容器用于容纳在其弓和/或杆处具有横向臂的碳氢化合物和连接到第一容器上的罐的管道的流体传递机构,以及用于连接到第二容器 船只。 第二个船舶停泊在第一个船舶的旁边,并通过至少一根从船只的长度方向的船弓延伸到缆绳系泊端的缆索。 臂的系泊端位于第二容器的纵向中心线处或附近。 臂在使用期间处于固定位置,并且牵引力元件附接到电缆,用于在第二容器相对于臂相对运动时在电缆上施加拉力。 力元件允许第二容器的预定的最大位移。
    • 3. 发明申请
    • Subsea pipeline system
    • 海底管线系统
    • US20060153639A1
    • 2006-07-13
    • US10543738
    • 2004-01-29
    • Jack PollackHein WilleLeendert Poldervaart
    • Jack PollackHein WilleLeendert Poldervaart
    • F16L1/12
    • F16L1/14B63B27/24
    • The invention relates to a subsea pipeline system for connecting two hydrocarbon production, storage and/or processing structures. The subsea pipeline has a first duct section supported on the seabed, a bridging duct section extending across a lower seabed part, at a distance from the sea bed, and a second duct section supported on the sea bed. The first and second duct sections are connected to the bridging duct section via an articulation joint allowing movement of the bridging duct section in a length direction of the first and second duct sections. A first tensioning element exerts an upward force on the bridge duct sections and a second tensioning element exerts a downward force on the bridge duct section. The first and second tensioning elements include a mutual angle to exert a horizontal pulling force on the bridging duct section.
    • 本发明涉及一种用于连接两个碳氢化合物生产,储存和/或加工结构的海底管道系统。 海底管道具有支撑在海床上的第一管道段,跨越与海床相距一定距离的下海底部分延伸的桥接管段,以及支撑在海床上的第二管道段。 第一和第二管道部分经由铰接接头连接到桥接管段,允许桥接管段在第一和第二管道段的长度方向上移动。 第一张紧元件在桥梁管道部分上施加向上的力,并且第二张紧元件在桥梁管道部分上施加向下的力。 第一和第二张紧元件包括相互角度以在桥接管部分上施加水平拉力。
    • 4. 发明授权
    • Subsea pipeline system
    • 海底管线系统
    • US07416366B2
    • 2008-08-26
    • US10543738
    • 2004-01-29
    • Jack PollackHein WilleLeendert Poldervaart
    • Jack PollackHein WilleLeendert Poldervaart
    • F16L1/12
    • F16L1/14B63B27/24
    • The invention relates to a subsea pipeline system for connecting two hydrocarbon production, storage and/or processing structures. The subsea pipeline has a first duct section supported on the seabed, a bridging duct section extending across a lower seabed part, at a distance from the sea bed, and a second duct section supported on the sea bed. The first and second duct sections are connected to the bridging duct section via an articulation joint allowing movement of the bridging duct section in a length direction of the first and second duct sections. A first tensioning element exerts an upward force on the bridge duct sections and a second tensioning element exerts a downward force on the bridge duct section. The first and second tensioning elements include a mutual angle to exert a horizontal pulling force on the bridging duct section.
    • 本发明涉及一种用于连接两个碳氢化合物生产,储存和/或加工结构的海底管道系统。 海底管道具有支撑在海床上的第一管道段,跨越与海床相距一定距离的下海底部分延伸的桥接管段,以及支撑在海床上的第二管道段。 第一和第二管道部分经由铰接接头连接到桥接管段,允许桥接管段在第一和第二管道段的长度方向上移动。 第一张紧元件在桥梁管道部分上施加向上的力,并且第二张紧元件在桥梁管道部分上施加向下的力。 第一和第二张紧元件包括相互角度以在桥接管部分上施加水平拉力。
    • 6. 发明申请
    • Enhanced side-by-side mooring construction
    • 增强的并排系泊结构
    • US20090078185A1
    • 2009-03-26
    • US11887008
    • 2006-03-20
    • Leendert PoldervaartHein OomenHein Wille
    • Leendert PoldervaartHein OomenHein Wille
    • B65D88/78B63B21/00
    • B63B21/50B63B27/24
    • The invention relates to a floating offshore structure anchored to the sea bed. The floating offshore structure comprises a hull having longitudinal sides and transverse sides, bow and stern anchoring points for mooring a tanker vessel alongside the offshore structure, a deck at a predetermined hight above sea level, hydrocarbon storage and/or processing devices being placed on the deck, a spacer member attached to the structure and projecting transversely from the sides for contacting a tanker vessel moored alongside the structure. The anchoring points of the structure comprise of quick release members, wherein the bow and/or stern anchoring points of the structure are situated on a deck which projects transversely from the hull of the structure substantially at the heights of anchoring points of the tanker vessel.
    • 本发明涉及一种锚定在海床上的浮式海上结构。 浮式海上结构包括具有纵向侧面和横向侧面的船体,用于在岸边结构旁边系泊油船的弓形和船尾锚固点,海平面以上预定高度的甲板,放置在船上的碳氢化合物储存和/或处理装置 甲板,连接到结构上的间隔件,并从侧面横向突出,用于接合在结构上停泊的油船。 结构的锚定点包括快速释放构件,其中,结构的弓形和/或船尾锚定点位于从结构体的船体横向突出的甲板上,该甲板基​​本上在油罐船的锚固点的高度处。
    • 8. 发明授权
    • Floating power generation system
    • 浮式发电系统
    • US07119460B2
    • 2006-10-10
    • US11059171
    • 2005-02-16
    • Leendert PoldervaartBram Van CannHein WilleLeon D. Rosen
    • Leendert PoldervaartBram Van CannHein WilleLeon D. Rosen
    • H05K7/14
    • F25J1/0284F17C7/04F17C2221/033F17C2223/0161F17C2225/0123F17C2227/01F17C2227/0302F17C2260/048F17C2265/05F17C2265/07F17C2270/0105F17C2270/011F17C2270/0126F17C2270/0155F17C2270/0163F25J1/0022F25J1/0278F25J2240/80
    • A system for using natural gas to safely provide large amounts (at least 30 megawatts) of electricity to consumers. The system includes a floating generating vessel (110) that lies offshore and carries one or more turbine-generator sets (114, 116) that use natural gas as fuel and whose electricity output is delivered though a power line (138) that extends at least partially in the sea to a consumer. One consumer is a process vessel (112) that processes natural gas and that has transfer facilities (68) that transfer liquified gas to or from a tanker (106) that holds over 10,000 tons of liquified gas. Some of the gas is transferred from the process vessel through a conduit (136) in the sea to the generating vessel (110) to provide fuel. Another consumer is an onshore facility (52). The generating and process vessels (110, 112) are widely separated (e.g. at least 0.2 kilometer) to protect personnel in the event of a gas explosion or fire. The separate generating and process vessels enable rapid acquisition of the vessels, which is especially useful to quickly supply large quantities of electricity in newly developed areas.
    • 使用天然气安全提供大量​​(至少30兆瓦)电力给消费者的系统。 该系统包括位于海上的浮动发电容器(110),并承载使用天然气作为燃料的一个或多个涡轮发电机组(114,116),并且其电力输出通过至少延伸的电力线(138) 部分在海上给消费者。 一个消费者是处理天然气的处理容器(112),并且具有将液化气体转移到储存超过10,000吨液化气体的罐车(106)的转移设施(68)。 一些气体从处理容器通过海中的导管(136)传送到发电容器(110)以提供燃料。 另一个消费者是陆上设施(52)。 发生和处理容器(110,112)被广泛分离(例如至少0.2公里),以在气体爆炸或火灾的情况下保护人员。 单独的生成和处理容器可快速获取容器,这对于在新开发区域快速供应大量电力尤其有用。
    • 10. 发明申请
    • Floating power generation system
    • 浮式发电系统
    • US20050206239A1
    • 2005-09-22
    • US11059171
    • 2005-02-16
    • Leendert PoldervaartBram CannHein WilleLeon Rosen
    • Leendert PoldervaartBram CannHein WilleLeon Rosen
    • B60L1/00F25J1/02
    • F25J1/0284F17C7/04F17C2221/033F17C2223/0161F17C2225/0123F17C2227/01F17C2227/0302F17C2260/048F17C2265/05F17C2265/07F17C2270/0105F17C2270/011F17C2270/0126F17C2270/0155F17C2270/0163F25J1/0022F25J1/0278F25J2240/80
    • A system for using natural gas to safely provide large amounts (at least 30 megawatts) of electricity to consumers. The system includes a floating generating vessel (110) that lies offshore and carries one or more turbine-generator sets (114, 116) that use natural gas as fuel and whose electricity output is delivered though a power line (138) that extends at least partially in the sea to a consumer. One consumer is a process vessel (112) that processes natural gas and that has transfer facilities (68) that transfer liquified gas to or from a tanker (106) that holds over 10,000 tons of liquified gas. Some of the gas is transferred from the process vessel through a conduit (136) in the sea to the generating vessel (110) to provide fuel. Another consumer is an onshore facility (52). The generating and process vessels (110, 112) are widely separated (e.g. at least 0.2 kilometer) to protect personnel in the event of a gas explosion or fire. The separate generating and process vessels enable rapid acquisition of the vessels, which is especially useful to quickly supply large quantities of electricity in newly developed areas.
    • 使用天然气安全提供大量​​(至少30兆瓦)电力给消费者的系统。 该系统包括位于海上的浮动发电容器(110),并承载使用天然气作为燃料的一个或多个涡轮发电机组(114,116),并且其电力输出通过至少延伸的电力线(138) 部分在海上给消费者。 一个消费者是处理天然气的处理容器(112),并且具有将液化气体转移到储存超过10,000吨液化气体的罐车(106)的转移设施(68)。 一些气体从处理容器通过海中的导管(136)传送到发电容器(110)以提供燃料。 另一个消费者是陆上设施(52)。 发生和处理容器(110,112)被广泛分离(例如至少0.2公里),以在气体爆炸或火灾的情况下保护人员。 单独的生成和处理容器可快速获取容器,这对于在新开发区域快速供应大量电力尤其有用。