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公开(公告)号:WO2022231477A1
公开(公告)日:2022-11-03
申请号:PCT/RU2022/050133
申请日:2022-04-20
Inventor: ГЕОРГИЕВ, Александр , НЕМИРОВСКИЙ, Петр , ЖОГОЛЬ, Алиса , КАТАЕВ, Алексей , ЧВАЛА, Иван
Abstract: Изобретение относится к области подъемно-транспортного машиностроения. Гидравлически управляемая телескопическая стрела включает корневую секцию, выдвижные секции, телескопически установленные друг в друге внутри корневой секции и гидравлический контур для рабочей жидкости, включающий бак для рабочей жидкости, трубопровод выдвижения и трубопровод втягивания. Гидроцилиндры выдвижных секций выполнены с полым штоком и снабжены встроенным телескопическим трубопроводом. Одна из двух труб выполнена стационарно в корпусе гидроцилиндра, вторая труба выполнена стационарно в штоке гидроцилиндра, и одна из них имеет в концевой области выемку в боковой поверхности. В состав гидравлического контура для рабочей жидкости введены блоки регулирования потока рабочей жидкости, каждый из этих блоков имеет напорный канал, в котором выполнен обратный клапан, имеет канал свободного слива, в котором выполнен обратный клапан и имеет канал регулируемого слива, в котором выполнен предохранительный напорный клапан. Настройка предохранительных напорных клапанов во всех блоках регулирования потока рабочей жидкости выполнена с возможностью определения последовательности заданных значений давления, начиная с ближайшего к корневой секции блока. Достигается повышение надежности и долговечности гидроприводной телескопической стрелы судового крана.
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公开(公告)号:WO2022230561A1
公开(公告)日:2022-11-03
申请号:PCT/JP2022/015498
申请日:2022-03-29
Applicant: キョーラク株式会社
Abstract: 環境温度変化による内部の気体の膨張又は収縮に伴うフロート本体の変形を抑制するための通気孔の設置場所の自由度がより高いフロートを提供する。 本発明によれば、フロートであって、内部に中空部を有するフロート本体を備え、前記フロート本体は、表面に貫通孔が設けられ、前記貫通孔は、前記フロートの外部に露出しているか、又は前記貫通孔に通気部材の少なくとも一部が挿入されており、前記貫通孔が前記フロートの外部に露出している場合において、前記中空部は前記貫通孔を介して前記フロートの外部の大気と連通し、前記貫通孔に前記通気部材の前記少なくとも一部が挿入されている場合において、前記中空部は前記通気部材を介して前記大気と連通する、フロートが提供される。
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公开(公告)号:WO2022229998A1
公开(公告)日:2022-11-03
申请号:PCT/IT2022/050110
申请日:2022-04-27
Applicant: NEWPOWER SRL
Inventor: POLONIO, Raffaele , GIOIA, Flavio , DEL BELLO, Alberto
Abstract: Modular system for the recovery and collection of polluted sludge from the seabed to be reclaimed with a simultaneous process for the generation of syngas and subsequent transformation into electricity for self-consumption of the system and extraction of hydrogen, nitrogen and heavy metals. This new system has been studied to carry out fast, efficient and effective remediation with significant savings being a modular sludge collection plant using a robotic system with a subsequent procedure for the generation of a synthesis gas, capable of accepting as input a solid organic material having variable size, format, content of humidity and calorific power value, in order to be able to manage the widest bulk and type of incoming materials at the lowest possible cost and with an environmental impact close to zero.
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公开(公告)号:WO2022229366A1
公开(公告)日:2022-11-03
申请号:PCT/EP2022/061433
申请日:2022-04-29
Applicant: A.P. MØLLER - MÆRSK A/S
Inventor: VEJLGAARD-LAURSEN, Morten
Abstract: Disclosed is a battery system for a marine vessel, the marine vessel comprising a hull. The battery system comprises a flow battery comprising an ion exchange element, and a first ballast tank for location in the hull and defining a first ballast tank chamber for storing electrolyte for the flow battery.
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公开(公告)号:WO2022229191A2
公开(公告)日:2022-11-03
申请号:PCT/EP2022/061060
申请日:2022-04-26
Applicant: PROPELWIND S.A.S.
Inventor: ENGLEBERT, Patrick
IPC: B63B1/12 , B63B17/00 , B63H9/04 , B63H21/20 , B63B1/125 , B63B11/04 , B63B17/0027 , B63B17/0036 , B63H9/0621
Abstract: A trimaran sailing vessel, e.g. a cargo vessel, has a hull structure comprising a central main hull as well as port and starboard outer hulls along opposite lateral sides of the main hull. The hull structure further comprises port and starboard crossbeam structures rigidly connecting the respective outer hull to the main hull, each crossbeam structure comprising, or consists of, a forward crossbeam and a rearward crossbeam spaced from one another in longitudinal direction of the outer hull, with an opening in between crossbeams. The main hull is provided with a sailing system erected on the main hull, e.g. comprising one or more wing sails. The main hull is provided with a mechanical propulsion drive system comprising a drive train including a motor driving a mechanical propulsion device, which motor is powered directly or indirectly by a fuel. The hull structure of the vessel is provided with one or more compartments accommodating main fuel tanks for storage of said fuel, which one or more compartments are located in one or both of the outer hulls.
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公开(公告)号:WO2022227795A1
公开(公告)日:2022-11-03
申请号:PCT/CN2022/076344
申请日:2022-04-12
Applicant: 江苏大学
Abstract: 一种可跨塘的农用两栖投饵船及控制方法,该投饵船包括船本体,船本体一端固定投饵装置,船本体另一端固定推进装置。船本体包括泡沫浮体(1)、泡沫固定碳杆(4)、横向碳杆(6)、管箍固定组件、T型三通(5);泡沫浮体(1)为两个,泡沫浮体(1)上方平行设有泡沫固定碳杆(4),泡沫浮体(1)和泡沫固定碳杆(4)通过管箍固定组件固定;横向碳杆(6)通过T型三通(5)与泡沫固定碳杆(4)相连。该投饵船可通过手动遥控规划航行轨迹,彻底代替耗时耗力的人工投饵作业。
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公开(公告)号:WO2022225457A1
公开(公告)日:2022-10-27
申请号:PCT/SG2022/050233
申请日:2022-04-20
Applicant: SEMBCORP MARINE INTEGRATED YARD PTE. LTD.
Abstract: According to embodiments of the present invention, a floating structure is provided. The floating structure includes an open top end; an open bottom end opposite the open top end; an annular wall extending between the open top end and the open bottom end; and a cylindrical structure arranged off center of the floating structure and configured to support a tower. The annular wall forms a circumferential peripheral of the floating structure to provide a central moonpool. At least part of the cylindrical structure extends alongside and coupled to the annular wall. According to further embodiments, an apparatus including the floating structure and a tower supported by a cylindrical structure of the floating structure is also provided.
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88.
公开(公告)号:WO2022225403A1
公开(公告)日:2022-10-27
申请号:PCT/NO2022/050090
申请日:2022-04-22
Applicant: STATIONMAR AS
Inventor: VATNE, Per Andreas
Abstract: A semi-submersible floating platform (1) is configured for supporting and transporting a column structure (2), and comprises a plurality of buoyant columns (4a-c) interconnected by a support structure (5) having an adaptive opening (7) for axial and radial fastening of the column structure (2). Each column (4) comprises ballasting means (16, 17) whereby the draft may be controlled, and each column (4) comprises an active heave motion neutralization system that may be operated independently, such that the platform (1) may be maintained stable and level when handling the structure (2), for example during transit, separation and docking. A method of operating the platform involves the operation of valves (20, 22) to control the pressure inside a reservoir (12) in order to control the water level (11) in a rise canister (30) in one or more of the columns (4a-c).
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公开(公告)号:WO2022223452A1
公开(公告)日:2022-10-27
申请号:PCT/EP2022/060074
申请日:2022-04-14
Applicant: CURCIO, Mario
Inventor: CURCIO, Mario
Abstract: The present disclosure refers to a wind-powered energy generation system (100) for a multi-hull marine vessel (200) comprising at least two hulls (201), (202) and a bridge deck (203) connecting the at least two hulls (201), (202), where the energy generation system (100) comprises at least one wind turbine (101) located aft under the bridge deck (203) such as to be powered by airflow (150) passing under the bridge deck (203) from bow (204) to stern (205) of the vessel (200). A multi-hull marine vessel (200) comprising such an energy generation system (100) is herein also disclosed. A method of generating energy by wind-power for a multi-hull marine vessel (200) by such energy generation system (100) is herein also disclosed.
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公开(公告)号:WO2022222704A1
公开(公告)日:2022-10-27
申请号:PCT/CN2022/083639
申请日:2022-03-29
Applicant: 黄均贤
Inventor: 黄均贤 HUANG, Junxian
Abstract: 本发明涉及一种具有内切圆的三角形的组合筋条的板材,包括基板,所述基板的一面设置有加强筋条组,所述加强筋条组固定连接基板;所述加强筋条组包括多个加强单元,所述加强单元组合铺满基板的一面,所述加强单元包括闭合的三角形筋条,且闭合的三角形筋条内部内切的设置有环形筋条,所述环形筋条相切处固定连接闭合的三角形筋条。本技术方案提供的一种具有内切圆的三角形的组合筋条的板材通过三角形与圆形的交替组合,形成了独特的力学模型,对来自各个方向的应力都可以在力学模型中相互抵消一大部分。
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