Abstract:
Réservoir métallique tubulaire pour fluides à haute pression comportant à l'une au moins de ses deux extrémités un moyen de fermeture vissé. Ce moyen de fermeture comporte un élément de serrage amovible (5) ayant un filetage tronconique (6) en prise sur un filetage correspondant (4) à une extrémité du tube (2). Un disque d'obturation (7) est poussé par l'élément de serrage (5) en direction du tube (2) de façon à réaliser une liaison étanche entre une butée (10) et une portée (9), l'un des deux composants de cette liaison étant solidaire du tube et l'autre du disque d'obturation. Ce réservoir s'applique au stockage de tous fluides sous haute pression en particulier dans les cas où on souhaite avoir une possibilité d'ouverture et aussi dans les cas où on souhaite élever au maximun le rapport entre la masse du fluide emmagasiné et celle du réservoir vide.
Abstract:
A system for storing natural gas comprises a plurality of straight sections of tube. The plurality of straight sections of tube are dense packed. The plurality of straight sections of tube are configured to fill a designated volume.
Abstract:
A high-pressure pressure vessel for storing natural gas comprises a plurality of first vessel regions of first diameters, a plurality of couplers, and a fiber layer. A three dimensional volume is filled using at least in part the plurality of first vessel regions. Each coupler of the plurality of couplers couples each pair of first vessel regions of the plurality of first vessel regions. Each coupler of the plurality of couplers comprises a second vessel region of a second diameter and two third vessel regions that transition diameters between the first diameter and the second diameter. The three dimensional volume is filled using at least in part the plurality of couplers. The first vessel regions and the couplers comprise a material with low permeability to natural gas. The fiber layer surrounds the plurality of first vessel regions and the plurality of couplers.
Abstract:
- La présente invention concerne un système de stockage d'énergie sous forme d'air comprimé, caractérisé en ce qu'il est constitué par un ensemble de tubes aciers (1), droits ou enroulés, assemblés pour former un volume de stockage disposé en surface, ou en sub-surface, l'assemblage étant enfermé dans une enveloppe isolante thermiquement (2).
Abstract:
A LNG storage container (50) includes: an inner shell (51) made of a metal withstanding a low temperature of the LNG and configured to store the LNG inside; an outer shell (52) made of a steel withstanding an internal pressure of the inner shell (51) and configured to enclosing the outside of the inner shell such that a space is formed between the inner shell (51) and the outer shell (52); and a heat insulation layer part (53) installed in the space between the inner shell (51) and the outer shell (52) and configured to reduce a heat transfer. Accordingly, it is possible to efficiently store LNG or PLNG pressurized at a predetermined pressure and supply the LNG or PLNG to a consumption place, to reduce manufacturing costs by minimizing the use of a metal having excellent low temperature characteristic, to reduce a thickness of an inner container by minimizing a difference between the internal pressure and external pressure of the inner container, thereby manufacturing the container (50) at low cost, to satisfy consumer's various demands, and to ensure diversity in kinds and sizes of container carriers. Furthermore, it is possible to endure various utilizations according to characteristics of cargos, such as pre-processed natural gas, non-pre-processed natural gas, and refined natural gas. Due to the reduction of the liquefaction process, equipment costs and processing costs may be reduced. Sloshing load, which may occur during transportation of liquid goods, is reduced or negligible.
Abstract:
The reinforcement device (1) for containment tanks of a pressurized gas in industrial filter cleaning systems comprises supporting means (2, 2') associable with a valve device (E) suitable for being fitted at least partially inside a containment tank (B) of a pressurized gas, and at least a reinforcement element (3) associated with the supporting means (2, 2') and having at least a first and a second extremity which can be positioned in proximity of two substantially opposite portions of the inner surface of the tank (B).
Abstract:
An integrated ship mounted system for loading a gas stream, separating heavier hydrocarbons, compressing the gas, cooling the gas, mixing the gas with a desiccant, blending it with a liquid carrier or solvent, and then cooling the mix to processing, storage and transportation conditions. After transporting the product to its destination, a hydrocarbon processing train and liquid displacement is provided to unload the liquid from the pipeline and storage system, separate the liquid carrier, and transfer the gas stream to a storage or transmission system.