System and method for the transfer of cryogenic fluids
A system and method for the transfer of cryogenic fluid fuel includes a nozzle positionable with respect to fuel tank inlet, e.g., of an unmanned aerial vehicle (UAV), a seal to seal the area where the nozzle and inlet are connected, a collapsible and expandable bellows providing an isolation volume where the fluid is transferred from the nozzle into the inlet; a vacuum is provided in the volume to avoid accumulation of fuel or other species in the volume.
1. A refueling system for aircraft, comprising
a cryogenic fuel storage container mounted on a support platform,
the support platform positionable above a refueling station providing space for an aircraft beneath the support platform to permit positioning of the aircraft beneath the support platform for refueling with cryogenic fuel, and
a connection system comprising a refueling coupling assembly fluidly connectable to the cryogenic fuel storage container, the refueling coupling assembly including a nozzle vacuum jacketed through the use of expandable and contractible bellows and configured to move from a disengaged position in which the bellows are extended and the refueling coupling assembly is above a fuel tank inlet of the aircraft to an engaged position in which the bellows are contracted and the refueling coupling assembly engages the fuel tank inlet of the aircraft vertically to supply cryogenic fuel from the storage container to the aircraft located in the space.
2. The system of claim 1 , further comprising a sensor system configured to align the fuel tank inlet of the aircraft with the connection system for supplying cryogenic fuel to the aircraft.
3. The system of claim 1 , further comprising a cryogenic fuel generator on the support platform and a power source and control panel configured to control operation of (a) the cryogenic fuel generator to generate the cryogenic fuel and (b) the connection system for connection to the aircraft's fuel system.
4. The system of claim 1 , further comprising an isolating system configured to provide an isolation space in which at least part of the connection system is located during the coupling of cryogenic fuel from the fuel storage container to the aircraft, the isolating system including the bellows.
5. The system of claim 4 , further comprising a vacuum source configured to provide a controlled vacuum in the isolation space.
6. The system of claim 4 , further comprising a species sensor configured to sense fuel in the isolation space.
7. The system of claim 1 , the support platform is movable on wheels.
8. The system of claim 1 , wherein the connection system includes a coupling system that comprises a cryogenic fuel transfer system with insulation to minimize thermal conduction, the nozzle, an isolation space, and a seal to connect with the fuel tank inlet of the aircraft.
9. The system of claim 8 , further comprising
positioned on the support platform an electrolyzer configured to convert water to its constituent components hydrogen and oxygen, and
a refrigeration apparatus configured to refrigerate the hydrogen to cryogenic liquid hydrogen.
10. The system of claim 8 , further comprising an alignment system including sensors to facilitate aligning the fuel tank inlet of the aircraft with the coupling system for transferring the cryogenic fuel to the aircraft.