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1.
公开(公告)号:US20240353068A1
公开(公告)日:2024-10-24
申请号:US18683004
申请日:2022-08-09
Applicant: EBARA CORPORATION
Inventor: Shuichiro HONDA , Tetsuji KASATANI , Hayato IKEDA , Mitsutaka IWAMI
IPC: F17C9/00
CPC classification number: F17C9/00 , F17C2201/0104 , F17C2201/032 , F17C2201/052 , F17C2205/0323 , F17C2221/012 , F17C2223/0153 , F17C2223/046 , F17C2227/0142 , F17C2227/0178 , F17C2227/044 , F17C2250/0439 , F17C2250/0491
Abstract: An integrally-transportable purge container capable of preventing entry of air when a submersible pump is carried into a pump column, and capable of warming the submersible pump when it is removed from the pump column to prevent components of the air from being liquefied is provided. The integrally-transportable purge container includes: a container body having an interior space for accommodating a submersible pump therein; an upper lid configured to cover an upper opening of the container body; a lower lid configured to cover a lower opening of the container body; and a purge-gas inlet port and a purge-gas outlet port communicating with the interior space of the container body. The integrally-transportable purge container is detachably coupled to an upper portion of a pump column in which the submersible pump is to be installed. The integrally-transportable purge container is configured to be transportable together with the submersible pump.
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公开(公告)号:US20240310001A1
公开(公告)日:2024-09-19
申请号:US18123237
申请日:2023-03-17
Applicant: Steelhead Composites, Inc.
Inventor: Andrew Coors , John Cronin , Alexis Dubois , Christopher Schumacher , Camilla Voll , Ryan Lee Kabbes , Shohei Shibata , Jude Hueber
CPC classification number: F17C13/08 , F17C1/02 , F17C2201/0109 , F17C2201/032 , F17C2205/0107 , F17C2205/018 , F17C2221/012
Abstract: The present invention provides a modular pressure vessel mounting apparatus and methods for using the same in transporting or storing pressure vessels. In particular, the module pressure vessel mounting apparatus comprises:
a plurality of top sleeves (200A);
a plurality of bottom sleeves (200B);
a top-plate (300A) configured to fit said plurality of said top sleeves (200A);
a bottom-plate (300B) configured to fit said plurality of said bottom sleeves (200B); and
a restraining device (400) configured to hold each of the pressure gas vessels between each of said top sleeves (200A) and each of said bottom sleeves (200B).
Typically, a plurality of pressure vessels are placed between the top-plate (300A) and the bottom-plate (300B) by placing a top sleeve (200A) and a bottom sleeve (200B) between the neck of the pressure vessel and the top-plate (300A) and the bottom of the pressure vessel and the bottom-plate (300B), respectively. The pressure vessels are then held in place using the restraining device (400), which prevents movement of pressure vessels within the module pressure vessel mounting apparatus (10).-
公开(公告)号:US12078295B2
公开(公告)日:2024-09-03
申请号:US17714339
申请日:2022-04-06
Inventor: Alexis Mary , Bertrand Morin , Valerie Pateau
CPC classification number: F17C13/025 , F17C1/00 , F17C13/026 , F17C13/04 , G01F22/02 , F17C2201/0119 , F17C2201/032 , F17C2201/058 , F17C2205/0323 , F17C2205/0394 , F17C2221/011 , F17C2250/032 , F17C2250/043 , F17C2250/0439 , F17C2250/0443 , F17C2270/02
Abstract: The invention relates to a container (1) for pressurized fluid, in particular a gas cylinder, having a given internal volume (2), having a fluid distribution valve (3) having a member for selecting the flow rate (12) able to adopt a plurality of distinct positions each corresponding to a given fluid flow rate, and an electronic device (7) having means for measuring pressure, microprocessor (15)-based data processing means (5) for processing the pressure measurements, and display means (6) for displaying the remaining fluid calculated by the data processing means (5).
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公开(公告)号:US12000536B2
公开(公告)日:2024-06-04
申请号:US17655369
申请日:2022-03-18
Applicant: CPSI Holdings LLC
Inventor: John M. Baust , Joshua T. Smith , Anthony T. Robilotto , Jennie F. McKain
CPC classification number: F17C1/00 , A61B18/02 , F17C3/00 , F17C5/02 , A61B2018/00714 , A61B2018/00744 , A61B2018/00791 , A61B2018/0293 , A61B2090/064 , F17C2201/0109 , F17C2201/032 , F17C2201/056 , F17C2203/0329 , F17C2203/0391 , F17C2203/0643 , F17C2205/0107 , F17C2205/0161 , F17C2205/0367 , F17C2221/011 , F17C2221/012 , F17C2221/014 , F17C2221/016 , F17C2221/017 , F17C2221/035 , F17C2223/0169 , F17C2223/035 , F17C2223/036 , F17C2227/0341 , F17C2227/0353 , F17C2227/0374 , F17C2250/032 , F17C2250/0408 , F17C2250/0439 , F17C2270/02 , F17C2270/0509
Abstract: A method of generating a pressurized, sub-cooled mixed-phase cryogen is disclosed, including providing a cryogenic system including a reservoir containing a liquid cryogen; and a heat exchange coil immersed in the liquid cryogen, the heat exchange coil having an input end and an output end not immersed in the liquid cryogen; introducing a pressurized gas cryogen to the input end of the heat exchange coil; cooling the pressurized gas cryogen within the heat exchange coil; and collecting the pressurized gas cryogen at an output end of the heat exchange coil.
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公开(公告)号:US20240167627A1
公开(公告)日:2024-05-23
申请号:US18198855
申请日:2023-05-18
Applicant: ENERGY FUTURE INC
Inventor: Brian Raine
IPC: F17C3/00
CPC classification number: F17C3/005 , F17C2201/032 , F17C2203/0604 , F17C2203/0678
Abstract: Underground facilities built for storing electric energy in the form of gravity and buoyant energy are described herein. In one embodiment, the facility is disposed in a thixotropic fluid beneath the ground surface and houses water to maintain a positive buoyancy and a piston having a bulk density greater than the water. In another embodiment, the underground facility is configured as a buoyant capsule arranged in a cylinder filled with water, where the cylinder is sealed except for openings in a bottom half of the cylinder to allow near unimpeded water flow from a location inside to a location outside of the cylinder. In another embodiment, the underground facility is configured as a negatively buoyant capsule.
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公开(公告)号:US20240084973A1
公开(公告)日:2024-03-14
申请号:US18515132
申请日:2023-11-20
Applicant: Quantum Fuel Systems LLC
Inventor: Hans VanOyen
IPC: F17C13/08
CPC classification number: F17C13/083 , F17C2201/032 , F17C2205/0107 , F17C2205/013 , F17C2205/0192 , F17C2270/0171
Abstract: The present disclosure provides mounting plates having a mounting portion adjacent to a plurality of fastening regions and a flexing portion adjacent to a mounting feature. The fastening regions can be connected to a frame system. The mounting feature can be connected to an end of a pressurized tank. The end of the pressurized tank can move relative to the frame system and the mounting plate can flex such that the flexing portion moves out of the plane of the fastening region to accommodate the motion of the end of the pressurized tank. Connection to the end of the pressurized tank can be provided at a tank collar than can be bonded or threadably connected to the mounting plate via a connection mechanism. The connection mechanism can be an expandable plug or a sleeve that connects to the tank collar.
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7.
公开(公告)号:US20240084968A1
公开(公告)日:2024-03-14
申请号:US18282360
申请日:2022-03-24
Applicant: GAZTRANSPORT ET TECHNIGAZ
Inventor: Mikaël VOLUT , Michael COURTOT , Othman LAMDOUAR , Vincent FRAYSSE , Vincent DORY
CPC classification number: F17C3/022 , F17C3/027 , G06F30/10 , F17C2201/0104 , F17C2201/032 , F17C2201/052 , F17C2203/0329 , F17C2203/0358 , F17C2221/033 , F17C2223/0161 , F17C2223/033 , F17C2250/0478 , F17C2250/0678 , F17C2260/013 , G06F2111/10
Abstract: The invention relates to a tracing method (2000) for constructing a liquefied gas storage facility (1). The facility (1) comprises a sealed and thermally-insulating tank (20). A bottom wall (21) of the tank (20) includes a plurality of angular sectors (25) which are images of each other through rotation by a predetermined angle about a vertical axis, the predetermined angle being equal to k.360°/N, where k is a positive integer. A vertical wall (22) of the tank (20) comprises a vertical row (120) of planar insulating wall modules (131, 131A) disposed on each vertical load-bearing section (14) of a load-bearing structure of the tank. The tracing method ensures that an azimuthal angular deviation with respect to said vertical axis between two rows (120) of planar insulating wall modules (131, 131A, 171) disposed on two adjacent vertical load-bearing sections (14) is equal to 360°/N, preferably with an accuracy better than 5 mm.
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公开(公告)号:US20240017035A1
公开(公告)日:2024-01-18
申请号:US18368769
申请日:2023-09-15
Inventor: Frederick J. Montgomery , Duncan P. Bathe , Daniel J. Lee , Scott I. Biba , Todd J. Bakken
CPC classification number: A61M16/14 , A61M16/12 , A61M16/20 , A61B90/94 , A61B90/98 , A61M16/209 , F17C13/04 , F17C13/003 , A61B90/90 , A61M2202/0208 , A61M2202/0233 , A61M2202/0266 , A61M2202/0275 , A61M2205/6045 , A61M2205/6054 , F17C2270/025 , F17C2270/02 , F17C2221/031 , F17C2205/0153 , F17C2201/058 , F17C2223/013 , F17C2205/0382 , F17C2205/058 , F17C2223/0123 , F17C2201/0104 , F17C2201/032 , F17C2205/0188 , F17C2221/014 , F17C2205/0323 , F17C2260/028 , F17C2201/0109
Abstract: A valve assembly comprising a housing and a valve, the valve being disposed within the housing, a first indexed member integral to the housing, the first indexed member adapted to be complementary to a second indexed member, and a radio frequency identification device adapted to communicate with a radio frequency receiver, the valve being configured to align with a canister, seal the canister and open in a single movement. A drug containment device having said valve assembly is also disclosed.
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公开(公告)号:US11712510B2
公开(公告)日:2023-08-01
申请号:US17823441
申请日:2022-08-30
Applicant: Frank Levy , Kimberley Levy
Inventor: Frank Levy , Kimberley Levy
IPC: A61M5/00 , A61M39/22 , A61B5/00 , A61M5/14 , A61M5/145 , A61M5/168 , A61M5/178 , A61J1/20 , A61J1/22 , A61M5/36 , A61M39/10 , F17C13/00 , A61M25/10 , A61B8/08 , A61K9/00 , A61M13/00 , A61M15/08
CPC classification number: A61M5/007 , A61B5/00 , A61J1/2037 , A61J1/2062 , A61J1/2096 , A61J1/22 , A61M5/1407 , A61M5/1452 , A61M5/16827 , A61M5/16881 , A61M5/178 , A61M5/36 , A61M25/10185 , A61M39/105 , A61M39/22 , A61M39/223 , F17C13/00 , F17C13/002 , A61B8/481 , A61J1/2051 , A61J1/2089 , A61J2200/70 , A61K9/0019 , A61M13/003 , A61M15/08 , A61M25/10186 , A61M25/10187 , A61M2005/006 , A61M2025/102 , A61M2202/0225 , F17C2201/032 , F17C2201/058 , F17C2205/0308 , F17C2205/0329 , F17C2205/0394 , F17C2221/013 , F17C2223/0123 , F17C2223/035 , F17C2250/043 , F17C2270/02
Abstract: A method for performing a medical procedure requiring effective, reliable and foolproof delivery of controlled amounts of a medical grade gas to a patient includes providing a compressed gas cylinder having a weight with medical grade gas sealed therein of at least twelve grams and not greater than fifty grams. The method also includes connecting the compressed gas cylinder to an integrated compressed gas unit including a regulator valve assembly positioned between an outlet port and an inlet port, wherein the regulator valve assembly includes a press button actuator and regulator adjustment dial. A flow control system is secured to the compressed gas unit and the medical grade gas is delivered in precisely controlled amounts by actuating the compressed gas unit and operating the flow control system to deliver the medical grade gas to vasculature of the patient.
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公开(公告)号:US20190186164A1
公开(公告)日:2019-06-20
申请号:US16211373
申请日:2018-12-06
Applicant: PRELOAD CRYOGENICS, LLC
Inventor: Sanjay Mehta , Eric T. Reaman
CPC classification number: E04H7/20 , F17C3/00 , F17C2201/0119 , F17C2201/032 , F17C2203/012 , F17C2203/0624 , F17C2203/0678 , F17C2209/22
Abstract: A precast, prestressed concrete tank and method that facilitates construction of a primary inner tank within a secondary outer tank, and which permits for the construction of the primary inner tank after the secondary outer tank has been erected, but without requiring insertion through a top of the secondary outer tank, or by tunneling underneath the secondary outer tank, is disclosed. The primary inner tank has an inner wall and the secondary outer tank has an outer wall (precast, prestressed concrete) and wire windings. The primary inner tank is disposed inside of the secondary outer tank. The secondary outer tank has a plurality of first precast outer wall panels, and a temporary construction opening frame. The temporary construction opening frame defines an access doorway during construction of the tank. The temporary construction opening frame is disposed on a foundation base slab.
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