Abstract:
The present disclosure provides a tank for containing fluids. The tank includes an elongated hollow body having an interior and an exterior, and an integrated internal support structure disposed on the interior of the elongated hollow body. The tank includes at least one feature formed along the exterior of the elongated hollow body that is adapted to receive an external component.
Abstract:
Described herein is a portable storage device that stores a hydrogen fuel source. The storage device includes a bladder that contains the hydrogen fuel source and conforms to the volume of the hydrogen fuel source. A housing provides mechanical protection for the bladder. The storage device also includes a connector that interfaces with a mating connector to permit transfer of the fuel source between the bladder and a device that includes the mating connector.
Abstract:
A gas storage system that stores a gas by cryo-adsorption on high surface materials. The gas storage system includes an outer container having insulated walls and a plurality of pressure vessels disposed therein. Each of the pressure vessels includes a high surface material. A manifold assembly distributes the gas under pressure to the pressure vessels where the gas is adsorbed by cryo-adsorption using the high surface materials. A cooling fluid is provided within voids between the pressure vessels to remove heat as the pressure vessels are being filled with the gas.
Abstract:
Disclosed is a liquid container adapted to store liquefied natural gas (LNG). The LNG storage container include a sealing wall directly contacting liquid contained in the tank and a structural wall, which is an exterior wall or inner structure integrated with the exterior wall. The container further includes a plurality of connectors mechanically connecting the sealing wall and the structural wall and an intermediate wall structure positioned between the structural wall and the interior wall. The intermediate wall structure is configured to move relative to at least one of the interior wall and the structural wall.
Abstract:
Disclosed is a liquefied natural gas storage tank having an insulation structure which comprises an insulation wall installed on an inner wall of the tank. The tank has interior wall installed over the insulation wall. The interior wall has a first layer which directly contacts with liquefied natural gas and a second layer disposed between the first layer and the insulation wall. A plurality of anchor structures are installed on the inner wall of the tank through the insulation wall to support the interior wall.
Abstract:
A cryogenic propellant storage tank system and method are disclosed that thermally couple LO2 and LCH4 tanks together by using either a single tank compartmentalized by a common tank wall or two separate tanks that are coupled together with one or more thermal couplers having high thermal conductivity. Cryogenic cooling equipment may be located only in the LO2 tank while the LCH4 is cooled by the LO2 tank interface. Embodiments of the invention may employ both LO2 and LCH4 liquid acquisition devices (LADs) for low-gravity use. In further embodiments, only the LO2 LADs may be integrated with thermal cooling equipment.
Abstract:
A liquid container arrangement for controlling the level of liquid in a container is disclosed. The liquid container arrangement includes a first compartment open to atmosphere and to which evaporative loss of liquid occurs and a second compartment that is closed to atmosphere and in liquid communication with the first compartment. The liquid container arrangement also includes adjustment means for adjusting the level of the liquid in the second compartment to vary the level of the liquid in the first compartment.
Abstract:
A mobile machine, in particular a counterweighted fork lift truck, has at least one pressurized tank, in particular to carry fuel that is in a gaseous state under normal conditions. The tank has an at least approximately rectangular external contour in at least one cross-sectional plane.
Abstract:
Disclosed is a liquid container adapted to store liquefied natural gas (LNG). The LNG storage container include a sealing wall directly contacting liquid contained in the tank and a structural wall, which is an exterior wall or inner structure integrated with the exterior wall. The container further includes a plurality of connectors mechanically connecting the sealing wall and the structural wall and an intermediate wall structure positioned between the structural wall and the interior wall. The intermediate wall structure is configured to move relative to at least one of the interior wall and the structural wall
Abstract:
A method and an installation for alternating storage of CO2 and natural gas in a way that ensures minimal mixture of the gases, is described. CO2 and natural gas are alternately stored in a tank installation comprising a plurality of tanks connected in series, where CO2 is always filled and emptied through a first tank in the series of tanks, and where natural gas always is filled and emptied through a last tank in the series of tanks.
Abstract translation:描述了以确保气体的最小混合的方式交替储存CO 2 2和天然气的方法和装置。 CO 2和天然气交替地存储在包括串联连接的多个罐的罐装置中,其中CO 2 2总是通过串联的第一罐被填充和排空 的坦克,天然气总是通过一系列坦克中的最后一个坦克充满和清空。