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公开(公告)号:US1895747A
公开(公告)日:1933-01-31
申请号:US50920931
申请日:1931-01-16
Applicant: ALEXANDER BELDIMANO
Inventor: ALEXANDER BELDIMANO
CPC classification number: F17C1/02 , B01J3/04 , E02D31/04 , E02D31/06 , F17C2201/0119 , F17C2201/0157 , F17C2201/052 , F17C2203/0362 , F17C2203/0631 , F17C2203/0636 , F17C2203/0678 , F17C2223/0123 , F17C2223/035 , F17C2270/0147 , F17C2270/0149 , F17C2270/016
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公开(公告)号:US1817226A
公开(公告)日:1931-08-04
申请号:US37194829
申请日:1929-06-18
Applicant: ALEXANDER BELDIMANO
Inventor: ALEXANDER BELDIMANO
CPC classification number: F17C1/04 , E21F17/16 , F17C1/007 , F17C2201/0119 , F17C2201/0157 , F17C2201/052 , F17C2201/054 , F17C2203/012 , F17C2203/013 , F17C2203/0304 , F17C2203/0362 , F17C2203/0619 , F17C2203/0636 , F17C2203/0678 , F17C2223/0123 , F17C2223/036 , F17C2260/011 , F17C2270/0147
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公开(公告)号:US12122104B2
公开(公告)日:2024-10-22
申请号:US17927590
申请日:2021-05-20
Applicant: Bayerische Motoren Werke Aktiengesellschaft
Inventor: Alexander Horoschenkoff , Martin Huber , Alexander Hupfeld , Michael Ruf
CPC classification number: B29C70/24 , B29C37/0082 , B29C70/085 , B29C70/205 , D05C17/02 , F17C1/16 , B29L2031/7156 , B32B2038/008 , F17C2201/0157 , F17C2201/056 , F17C2201/058 , F17C2203/013 , F17C2203/0604 , F17C2203/0617 , F17C2203/0619 , F17C2203/066 , F17C2203/0663 , F17C2221/012 , F17C2221/033 , F17C2223/0123 , F17C2223/0161 , F17C2223/033 , F17C2223/036 , F17C2260/011
Abstract: A method is provided for forming connections from reinforcing fibers between faces of a wall for a pressure container. The reinforcing fibers are gripped by tufting needles and are pushed through the faces, and loops are formed through which support elements are introduced. A corresponding method produces a pressure container.
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184.
公开(公告)号:US20240117931A1
公开(公告)日:2024-04-11
申请号:US18375623
申请日:2023-10-02
Applicant: FAURECIA SYSTEMES D'ECHAPPEMENT
Inventor: Christophe BAVEREL , Dorian HERNANDEZ , David FARALDI , Marc MORET , Thomas BRANGER
IPC: F17C1/08
CPC classification number: F17C1/08 , F17C2201/0157 , F17C2203/012 , F17C2203/013 , F17C2203/0604 , F17C2209/221
Abstract: A pressurized gas containment liner includes a first part comprising a first shell, a second part comprising a second shell, and at least one intermediate part, arranged between the first part and the second part, in an assembly direction. The intermediate part is rigidly connected to the first and second parts. The first part, the second part, and the at least one intermediate part together delimit an interior volume. The or at least one of the intermediate parts comprises an intermediate shell and at least one pillar elongated in an elongation direction and connecting two opposite portions of the intermediate shell, and passing through the interior volume perpendicular to the assembly direction. The pillar and the intermediate shell are integral.
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公开(公告)号:US20240019081A1
公开(公告)日:2024-01-18
申请号:US18036887
申请日:2021-07-22
Applicant: KOREA GAS CORPORATION
Inventor: Ki Ho YIM , Hae Chul HAN , Young Chul YANG , Heung Seok SEO , Youngkyun KIM , Kyo Kook JIN , Youngkeun YOON
CPC classification number: F17C3/06 , F17C3/027 , B63B25/16 , F17C2223/0161 , F17C2260/044 , F17C2203/0333 , F17C2270/0107 , F17C2203/0636 , F17C2201/0157 , F17C2203/0624 , F17C2221/033
Abstract: Disclosed is a corner structure (100) of a liquefied gas storage tank, wherein the corner structure is installed at a corner of a storage tank for loading liquefied gas and supports sealing walls (51, 52) that prevent leakage of the liquefied gas. The corner structure (100) may include: two insulation members (110) arranged on the inner surface of a hull structure so as to be oriented in different directions; and mobile members (130) which are installed on the respective insulation members (110) and to which the sealing walls (51, 52) are joined. The mobile members (130) may be slidably coupled to the insulation members 110, and a plurality of the mobile members (130) may be arranged spaced apart from each other in a straight line on one of the insulation members.
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186.
公开(公告)号:US11870253B2
公开(公告)日:2024-01-09
申请号:US17777516
申请日:2022-05-16
Applicant: POWER8 TECH INC.
Inventor: Lien Chun Ding , Qiu Shui Su , Song Yuan Lin , Chih Cheng Tai
CPC classification number: H02J15/006 , F17C5/06 , F05B2260/422 , F17C2201/0104 , F17C2201/0157 , F17C2201/0161 , F17C2223/0123
Abstract: An energy storage system includes at least one heterogeneous pressure media and interactive actuation module (“module”), a liquid source, a pump, a converter, a first pipeline, and a second pipeline. The module includes a first container storing an initial gas and a second container storing an initial liquid. The liquid source stores a working liquid. The pump regulates the working liquid from the liquid source into the module. The initial liquid is driven by the working liquid to continuously compress the initial gas so that the first container stores a first pressure energy, and the initial gas is continuously expanded to drive the initial liquid to convert the first pressure energy into a second pressure energy. The second pressure energy through the first pipe drives the converter to generate an electrical energy, and the working liquid after driving the converter is returned to the liquid source through the second pipeline.
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公开(公告)号:US11828421B2
公开(公告)日:2023-11-28
申请号:US17059699
申请日:2019-05-28
Applicant: Gaztransport Et Technigaz
Inventor: Romain Pasquier , Eric Gervaise , Nicolas Leroux , Bruno Robillart
CPC classification number: F17C6/00 , F17C13/02 , F17C2201/0157 , F17C2201/052 , F17C2205/0134 , F17C2221/033 , F17C2223/0161 , F17C2227/0135 , F17C2250/032 , F17C2250/036 , F17C2250/0408 , F17C2250/0439 , F17C2250/0473 , F17C2250/0482 , F17C2250/061 , F17C2250/0636 , F17C2250/0694 , F17C2260/016 , F17C2270/0105
Abstract: A method for managing the filling levels of a plurality of tanks arranged in a ship, said tanks being connected in such a way as to allow liquid to be transferred between said tanks, the method comprising
providing an initial state (7) of the tanks,
determining a target state (8) defining respective final filling levels of said tanks,
determining a liquid transfer scenario (9), the transfer scenario defining one or more flows of liquid to be transferred between the tanks during a transfer period in order to shift from the initial state to the target state of the tanks,
calculating a probability of damage to the tanks (10) during the course of said transfer scenario, as a function of successive filling levels of the tanks during the transfer period,
if the probability of damage to the tanks satisfies an acceptance criterion, transferring (13) the liquid between the tanks in accordance with said transfer scenario.-
公开(公告)号:US20230258299A1
公开(公告)日:2023-08-17
申请号:US18005164
申请日:2021-07-13
Applicant: GAZTRANSPORT ET TECHNIGAZ
Inventor: Thomas KRUMNOW , Erwan MICHAUT , Catherine BOUCARD , Camille GOURMELEN , Fabien PESQUET
CPC classification number: F17C3/027 , F17C13/06 , F17C2201/0157 , F17C2203/0358 , F17C2203/0643 , F17C2203/0651 , F17C2223/0161
Abstract: A sealed and thermally insulating tank for transporting and/or storing liquefied natural gas includes a load-bearing structure and a storage structure surrounded by the load-bearing structure. The storage structure includes a first portion and a second portion that are sealed with respect to one another, the first portion and the second portion extending in one and the same plane which is parallel to the load-bearing structure. The tank includes a closure device arranged in the thickness of the storage structure. The closure device includes a first closure member and a second closure member that cooperate with one another to separate the first portion from second portion. One of the closure members includes a first part and a second part that extend in intersecting planes. One of the parts is connected to one of the portions by a fastening device that is arranged in the thickness of the storage structure.
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公开(公告)号:US20230228380A1
公开(公告)日:2023-07-20
申请号:US18007986
申请日:2021-05-27
Applicant: CryoVac AS
Inventor: Stein FOSS , Sverre ØIEN , Aage Bjorn ANDERSEN , Terje PAULSEN
CPC classification number: F17C3/08 , F17C3/025 , F17C2201/052 , F17C2201/0157 , F17C2203/066 , F17C2203/0358 , F17C2203/0391 , F17C2203/0629 , F17C2203/0643 , F17C2203/0646 , F17C2205/018 , F17C2209/221 , F17C2221/012 , F17C2221/033 , F17C2223/033 , F17C2223/0161 , F17C2250/043 , F17C2250/0439 , F17C2260/011 , F17C2260/013 , F17C2270/0107
Abstract: An insulation arrangement for an ocean-going ship comprising a modular arrangement of panels, each panel comprising a first cold layer and an opposing ambient layer and a volume therebetween arranged in use to be evacuated to create a vacuum.
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公开(公告)号:US20230184385A1
公开(公告)日:2023-06-15
申请号:US17969384
申请日:2022-10-19
Applicant: KONTAK LLC
Inventor: Bart Norton , David O'Connor , Damien Wilson
CPC classification number: F17C5/06 , F17C13/04 , F17C2201/0157 , F17C2201/018 , F17C2201/035 , F17C2203/012 , F17C2205/0364 , F17C2205/0376 , F17C2221/012 , F17C2225/036 , F17C2227/0157 , F17C2227/0192 , F17C2265/065 , F17C2270/0139
Abstract: A fueling station can include an outer housing comprising a housing volume, a first fluid bladder positioned within the housing volume and configured to hold a first fluid, a second fluid bladder positioned within the housing volume and configured to hold a second fluid, a first fluid conduit in fluid communication with the first fluid bladder, a second fluid conduit in fluid communication with the second bladder, a first hose positioned at least partially outside the outer housing and in fluid communication with both the first and second fluid conduits, and a bi-directional first nozzle connected to an end of the first hose opposite the first and second fluid conduits. The bi-directional first nozzle can be configured to simultaneously release fluid from the first hose and to collect fluid into the first hose. The first fluid bladder can be configured to release fluid through the first conduit in response to introduction of fluid into the second fluid bladder via the second conduit. The second fluid bladder can be configured to release fluid through the second conduit in response to introduction of fluid into the first fluid bladder via the first conduit.
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