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公开(公告)号:US20240359808A1
公开(公告)日:2024-10-31
申请号:US18646087
申请日:2024-04-25
发明人: Peter LINDE , Matthias HEGENBART
CPC分类号: B64D37/06 , B64D37/04 , F17C13/06 , F17C2201/0109 , F17C2221/012 , F17C2260/016 , F17C2265/066 , F17C2270/0189
摘要: A tank comprising one or several anti-sloshing wall arrangements, with a frame portion and a door portion wherein the frame portion is fixed to a tank wall of the tank, and it edges an opening, and wherein the door portion is configured to selectively close or unclose the opening. Also an aircraft comprising such tank and at least one engine, the engine being configured to be fed with fuel, in particular with liquid hydrogen, contained in the tank.
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2.
公开(公告)号:US20240353063A1
公开(公告)日:2024-10-24
申请号:US18742939
申请日:2024-06-13
CPC分类号: F17C1/14 , B64G1/4021 , F17C2201/0128 , F17C2201/0133 , F17C2201/0142 , F17C2203/0643 , F17C2270/0197
摘要: A semi-ellipsoidal, semi-toroidal, or toroidal shell includes an annular sheet metal wall that is longitudinally segmented so as to include a plurality of annular wall segments. Each of the plurality of annular wall segments is joined to an adjacent wall segment by a respective latitudinal wall weld. Also disclosed is a tank including the shell, a vehicle including the shell, a multi-conic preform used to manufacture the shell, a method for assembling the preform, and a method for manufacturing the shell using the preform.
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公开(公告)号:US12125003B2
公开(公告)日:2024-10-22
申请号:US18422260
申请日:2024-01-25
发明人: Zehua Shao , Yaqiang Quan , Xiaojun Wei , Feng Wang
IPC分类号: G06Q10/20 , F17D5/02 , G05D1/617 , G06Q10/0635 , G16Y10/35 , G16Y40/10 , F16L55/26 , G05D101/15 , G05D105/45 , G05D107/50 , G06Q50/06
CPC分类号: G06Q10/20 , F17D5/02 , G05D1/617 , G06Q10/0635 , G16Y10/35 , G16Y40/10 , F16L55/26 , G05D2101/15 , G05D2105/47 , G05D2107/50 , G06Q50/06
摘要: Methods and Internet of Things (IOT) systems for smart gas pipeline maintenance based on human-machine linkage are provided. The IoT system includes a smart gas user platform, a smart gas service platform, a smart gas pipeline network safety management platform, a smart gas pipeline network sensor network platform, and a smart gas pipeline network object platform. The method includes determining a first cycle based on data of a pipeline to be maintained, a feature of a maintainer, and/or a feature of a maintenance robot, obtaining, through a maintainer terminal and/or the maintenance robot, first feedback data based on the first cycle, determining, based on the first feedback data and the data of the pipeline to be maintained, a maintenance parameter and sending the maintenance parameter to the maintainer terminal, and generating, based on the maintenance parameter, a control instruction and sending the control instruction to the maintenance robot.
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4.
公开(公告)号:US20240344668A1
公开(公告)日:2024-10-17
申请号:US18134664
申请日:2023-04-14
发明人: Robert H. Dietze, JR. , Christopher Brady , Dmitriy Bruder , Megan E. McGovern , Robin James , Ryan Gergely
CPC分类号: F17D1/14 , B67D99/00 , B67D2210/00102 , B67D2210/00163 , H04R17/00
摘要: A system for transporting a non-Newtonian material. The system includes a storage container configured to store the non-Newtonian material and a dispensing system configured to dispense the non-Newtonian material. A conduit connects the storage container to the dispensing system. The conduit is configured to transport the non-Newtonian material from the storage container to the dispensing system. A pump is configured to pump the non-Newtonian material out of the storage container and through the conduit to the dispensing system. A hanger is configured to support the conduit from a support structure. An acoustic wave generator is along the conduit configured to impart acoustical shear agitation to the non-Newtonian material to reduce viscosity of the non-Newtonian material.
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5.
公开(公告)号:US20240344663A1
公开(公告)日:2024-10-17
申请号:US18633409
申请日:2024-04-11
发明人: Bruno ALBAN , Dominique BRAS
IPC分类号: F17C7/02
CPC分类号: F17C7/02 , F17C2221/013 , F17C2223/035 , F17C2227/0337
摘要: An installation for supplying a user station with pure or substantially pure liquid CO2 at high pressure, preferably in the range 50-60 bar, from a liquid CO2 source, the installation comprising means for compressing the liquid CO2 that are positioned between the source and the user station, wherein a liquefier for the fluid flowing between the source and the compression means is positioned at the inlet of the compression means.
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公开(公告)号:US20240344661A1
公开(公告)日:2024-10-17
申请号:US18292690
申请日:2022-07-27
申请人: ARKEMA FRANCE
IPC分类号: F17C1/06 , B29C70/08 , B29C70/34 , B29C70/52 , B29K77/00 , B29K105/08 , B29K307/04 , B29K309/08 , B29K705/02 , B29L31/00
CPC分类号: F17C1/06 , B29C70/08 , B29C70/347 , B29C70/521 , B29K2077/10 , B29K2105/08 , B29K2307/04 , B29K2309/08 , B29K2705/02 , B29L2031/7156 , F17C2201/0104 , F17C2203/012 , F17C2203/0604 , F17C2203/0629 , F17C2203/067 , F17C2203/0673 , F17C2205/0311 , F17C2209/2154 , F17C2209/232 , F17C2221/011 , F17C2221/012 , F17C2221/014 , F17C2221/031 , F17C2221/033 , F17C2221/035 , F17C2223/0161
摘要: A tank for containing a pressurized fluid, including at least one cylindrical element made of a pultruded fibrous material impregnated with a thermoplastic matrix, a first cap placed at one end of at least one cylindrical element closing it, a second cap placed at the other end of at least one cylindrical element, fitted with an orifice intended to make possible the entry and the exit of the fluid, and at least one additional fibrous reinforcement, partially or completely surrounding the cylindrical element(s) and optionally the caps, the fibers contained in the additional fibrous reinforcement being positioned along a different axis from the longitudinal axis of the cylindrical element, the total content of fibers of the tank being of between 40% and 70% by volume, with respect to the volume of the matrix and of the fibers contained in the tank.
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公开(公告)号:US12117360B2
公开(公告)日:2024-10-15
申请号:US18660801
申请日:2024-05-10
申请人: CHINA CONSTRUCTION INDUSTRIAL & ENERGY ENGINEERING GROUP CO., LTD. , CHINA CONSTRUCTION EQUIPMENT & ENGINEERING CO., LTD.
发明人: Jun Jiang , Fanming Shang , Huali Wei , Yiping Huang , Xiangchao Wang , Shibin Lv , Lei Fan , Feng Liang , Jingting Sun , Jie Liu , Yumao Lin , Changsha Liu , Haoji Deng , Xiaorong Chen
CPC分类号: G01M11/085 , F17C13/025 , F17C13/026 , G01K1/143 , G01K11/324 , G01L1/246 , G01L11/025
摘要: In a system for intelligent monitoring strain and temperature of a bullet tank, distributed strain fiber optic cables and distributed temperature fiber optic cables are laid on a surface of a bullet tank body, and pressure gauges are arranged in a soil layer below the bullet tank body, so that the surface and surrounding states of the bullet tank body are monitored. Detected data is gathered by collectors and then transmitted to a field control system. The field control system respectively performs data communication with a numerical simulation system and a central control display screen. The numerical simulation system uses finite element software to simulate the bullet tank body and the soil layer below, determines a corresponding temperature and stress change range, and transmits the temperature and stress change range to the field control system for comparison with the detected data.
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公开(公告)号:US12117128B2
公开(公告)日:2024-10-15
申请号:US17904756
申请日:2021-02-23
发明人: Ronan Bellec , Nicolas Hubatzeck , Ammar Aryan , Bjorn Criel
IPC分类号: F17C13/04
CPC分类号: F17C13/04 , F17C2205/0142 , F17C2205/0146 , F17C2205/0311 , F17C2205/0326 , F17C2205/0332 , F17C2205/0335 , F17C2205/0385 , F17C2221/012 , F17C2221/033 , F17C2223/0123 , F17C2223/036 , F17C2225/0123 , F17C2225/036 , F17C2227/04 , F17C2250/032 , F17C2250/034 , F17C2250/0408 , F17C2250/043 , F17C2250/0439 , F17C2250/0469 , F17C2250/0473 , F17C2250/0478 , F17C2250/0482 , F17C2250/0491 , F17C2260/028 , F17C2260/042 , F17C2265/065 , F17C2265/066 , F17C2270/0105 , F17C2270/0173 , F17C2270/0189 , F17C2270/0194
摘要: A valve for a fluid reservoir includes an inner portion configured to be arranged inside the reservoir, the inner portion including at least one portion of a sensor for measuring at least one parameter characterizing the fluid, the valve being capable of receiving information from a computer, external to the valve, the valve also includes an outer portion configured to be arranged outside the reservoir, the outer portion having an internal computer that acquires data from the at least one sensor, communicates bidirectionally with the external computer, takes into account information received from the external computer and data from the at least one sensor for controlling at least one actuator of the valve, and measures at least one current parameter in the electrical connection.
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公开(公告)号:US12117127B2
公开(公告)日:2024-10-15
申请号:US17763830
申请日:2020-09-08
发明人: Antoine Frenal
CPC分类号: F17C13/04 , F17C5/00 , F17C2205/0326 , F17C2205/0329 , F17C2205/037 , F17C2205/0385 , F17C2223/0123
摘要: A conditioning device for engaging with a filling and/or tapping connector of a pressurized-fluid container cock, including a body bearing at least one coupling member arranged about a longitudinal axis, a locking member which is movable with respect to the body and with respect to the coupling member, a valve pusher which is movable in a gas transfer duct, and a blocking member, wherein the upstream face of the blocking member includes a tightness seal arranged about the longitudinal axis to form sealing between the gas transfer duct and an internal circuit of a filling connector.
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公开(公告)号:US12117126B2
公开(公告)日:2024-10-15
申请号:US18377047
申请日:2023-10-05
申请人: SEAONE HOLDINGS, LLC
发明人: Ian Morris , Bruce Hall , Tolulope O. Okikiolu
CPC分类号: F17C11/007 , B63B2025/087 , F17C2205/0107 , F17C2205/013 , F17C2223/0123 , F17C2270/0105
摘要: Systems and methods to create and store a liquid phase mix of natural gas absorbed in light-hydrocarbon solvents under temperatures and pressures that facilitate improved volumetric ratios of the stored natural gas as compared to CNG and PLNG at the same temperatures and pressures of less than −80° to about −120° F. and about 300 psig to about 900 psig. Preferred solvents include ethane, propane and butane, and natural gas liquid (NGL) and liquid pressurized gas (LPG) solvents. Systems and methods for receiving raw production or semi-conditioned natural gas, conditioning the gas, producing a liquid phase mix of natural gas absorbed in a light-hydrocarbon solvent, and transporting the mix to a market where pipeline quality gas or fractionated products are delivered in a manner utilizing less energy than CNG, PLNG or LNG systems with better cargo-mass to containment-mass ratio for the natural gas component than CNG systems.
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