Abstract:
An embodiment of the invention comprises an apparatus or system for withdrawing a cryogenic liquid from a container wherein the liquid may be drawn from the container independent of the orientation of the container. The apparatus comprises a conduit having a flexible metallic hose portion and a metallic head. The flexible hose portion has a first end in fluid communication with an outlet portal of the container and a second end to which the head is attached.
Abstract:
Methods of covering a horizontally orientated substantially cylindrical propane tank supported on a surface, with the propane tank having a longest dimension parallel to the surface. One method comprises providing a cover having at least one closure mechanism, surrounding the propane tank with the cover, and closing the closure mechanism, wherein the cover can only be removed from the propane tank by opening the closure mechanism. Another method comprises providing a cover comprising a covering portion and a skirt extending downwardly from the covering portion, positioning the covering portion of the cover over the horizontally orientated cylindrical propane tank, and vertically hanging the skirt from the covering portion.
Abstract:
A hydrogen tank filling station includes a high-pressure hydrogen storage tank, a hydrogen supply nozzle for filling a hydrogen tank mounted on a vehicle with hydrogen from the high-pressure hydrogen storage tank, a hydrogen supply pipe, a holder stand for holding the hydrogen supply nozzle, a limit switch for detecting whether the hydrogen supply nozzle is held on the holder stand or not, a cooling system for cooling the hydrogen tank, and a valve controller for controlling a cooling operation performed by the cooling system on the hydrogen tank.
Abstract:
A mobile self-contained self-powered station having a plurality of vessels delivers a pressurized fluid to a receiving tank (e.g., a fuel tank of a hydrogen-powered vehicle) without using mechanical compression, external electric power, or other external utilities. The station includes first and second vessels, a conduit in fluid communication with the receiving tank and each of the first and second vessels, means for transferring at least a portion of a quantity of the pressurized fluid from the first vessel to the receiving tank, means for measuring continuously a pressure differential between the increasing pressure in the receiving tank and the decreasing pressure in the first vessel, means for discontinuing the transfer from the first vessel when a predetermined limit value is reached, and means for transferring at least a portion of a quantity of the pressurized fluid from the second vessel to the receiving tank.
Abstract:
A support structure for a container (1) provided with neck portions (47, 49) on both ends of a longitudinal direction thereof which includes; a first support member (5) for supporting one of the neck portions (47, 49) of the container (1); a second support member (7) for supporting the other of the neck portions (47, 49) of the container (1), and elastically pressing the container (1) in the longitudinal direction thereof; and a frame (3) to which the first and second support members (5, 7) are fixed.
Abstract:
A fluid supply system is provided which includes a filling station operable to provide a fluid to a fuel storage vessel. The fluid supply system is operable in a first mode to provide a fluid in a liquid phase from the filling station to the storage vessel and is operable in a second mode to prevent the supply of the fluid to the storage vessel. The storage vessel is in fluid communication with the fluid supply system and is operable to receive the fluid in the liquid phase when the fluid supply system is in the first mode and discharge the fluid in a gaseous phase to the filling station. At least one sensor is in communication with the discharge passage and the fluid supply, and operates to cause the fluid supply to operate in the second mode in response to a detected pressure drop.
Abstract:
Substantially rectangular-shaped tanks are provided for storing liquefied gas, which tanks are especially adapted for use on land or in combination with bottom-supported offshore structure such as gravity-based structures (GBS). A tank according to this invention is capable of storing fluids at substantially atmospheric pressure and has a plate cover adapted to contain fluids and to transfer local loads caused by contact of said plate cover with said contained fluids to a grillage of stiffeners and stringers, which in turn is adapted to transfer the local loads to an internal truss frame structure. Methods of constructing these tanks are also provided.
Abstract:
Safe filling is provided by a housing (8) controlling the pump (6) of the mobile tank (1) receiving, via a secondary hose (10), the pressure prevailing in the container (2) to be filled, a programmable logic enabling the pump to operate when the pressure measured in the container is within a predetermined range, adaptable according to the type of container. The invention is applicable in particular to gas containers.
Abstract:
There is provided a hydrogen storage system having one or more hydrogen storage containers disposed in a confined area with a vent line extending from the one or more storage containers to a location outside of the confined area. One or more sensors are disposed in the confined area for detecting one or more pre-determined unsafe conditions relating to the storage of hydrogen in the contained area and at least one actuator is provided for actuating an operable valve of the vent line to release the hydrogen from the hydrogen storage container to a location outside the confined area at a pre-determined release rate in response to a signal from the sensor indicating an unsafe condition. A power system incorporating a hydrogen storage system as described above is also provided.
Abstract:
An arrangement and associated method for moving and filling multiple storage containers with pressurized contents. The arrangement includes a movable rack for receiving the multiple containers. The rack includes ground-engaging movable members for permitting the rack and the multiple containers received thereon to be moved. The arrangement includes a fixed filling station that has a plurality of dispensing devices. Each dispensing device is engagable with a storage container to provide the pressurized contents to the containers. The rack and the filling station are arranged such that the rack is movable into proximity with the filling station and the rack is movable away from the filling station. The dispensing devices are arranged within the filling station such that each container is in proximity to a respective device when the rack and the filling station are in proximity. Also, an arrangement and method for moving and filling different types of storage containers.