Energy Transmission Apparatus For A Vehicle
The present disclosure relates to vehicles. Various embodiments of the teachings thereof may include energy transmission apparatus for transmitting energy within a vehicle, in particular an aircraft. For example, an energy transmission apparatus may include: a superconducting cable run having a superconducting conductor element. The superconducting cable system transmits electrical energy with a power of at least 1 MW. The superconducting cable system has a weight per unit length of at most 2 kg/m.
1 . An energy transmission apparatus for transmitting energy within a vehicle having a cable system, the apparatus comprising:
a superconducting cable run having a superconducting conductor element;
wherein the cable system transmits electrical energy with a power of at least 1 MW; and
the cable system has a weight per unit length of at most 2 kg/m.
2 . The energy transmission apparatus as claimed in claim 1 , wherein the superconducting cable run has a weight per unit length of at most 0.7 kg/m; and
the cable system has a weight per unit length of at most 1 kg/m.
3 . The energy transmission apparatus as claimed in claim 1 ,
wherein the cable system has a current-carrying capacity of at least 500 A; and
the cable system operates at a transmission voltage below 10 kV.
4 . The energy transmission apparatus as claimed in claim 1 , wherein the cable system comprises a double-walled cryostat for the cooling of the superconducting conductor element,
wherein both cryostat walls, over a major proportion of a longitudinal extension of the cable system comprise smooth-walled tubes.
5 . The energy transmission apparatus as claimed in claim 1 , wherein the cable system is configured for the transmission of alternating current and comprises a plurality of superconducting conductor elements, each of which is assigned to one phase of the alternating current.
6 . The energy transmission apparatus as claimed in claim 5 , wherein the conductor elements for a plurality of phases are arranged within a common double-walled cryostat.
7 . The energy transmission apparatus as claimed in claim 1 , wherein each cable run comprises at least two and at most six separate superconducting conductor elements routed in pairs in an adjoining and mutually parallel arrangement.
8 . The energy transmission apparatus as claimed in claim 1 , wherein the superconducting conductor element is carried by a supporting element and/or is enclosed in one or more electrical insulating elements,
wherein the overall weight of supporting elements and insulating elements in each cable run is at most 0.1 kg/m.
9 . The energy transmission apparatus as claimed in claim 1 , wherein the superconducting conductor element is arranged within a coolant duct such that, during the operation, it can be surrounded by a stream of liquid coolant.
10 . The energy transmission apparatus as claimed in claim 1 , wherein an end of the superconducting conductor element is connected to a superconducting coil winding.
11 . The energy transmission apparatus as claimed in claim 10 , wherein the superconducting coil winding comprises a winding of a transformer or a stator winding of a motor or of a generator.
12 . The energy transmission apparatus as claimed in claim 1 , further comprising a transformer at each end of the cable system, for the transformation of the current generated by a current source from an original voltage (U G ) into a lower voltage (U T ) for transmission in the cable system, and for the transformation of the current transmitted back to a higher voltage (U M ) required for the supply of a load.
13 . A vehicle comprising:
a current source;
a load; and
a superconducting cable run having a superconducting conductor element;
wherein the cable system transmits electrical energy with a power of at least 1 MW; and
the cable system has a weight per unit length of at most 2 kg/m;
wherein the superconducting cable transmits electrical energy within the vehicle from the current source to the load.
14 . The vehicle as claimed in claim 13 , wherein the load comprises an electric motor for the propulsion of the vehicle.
15 . A method for the transmission of energy in a vehicle, the method comprising
generating an electric current with a current source arranged in the vehicle; and
transmitting the electric current from the current source to a load with a superconducting cable run having a superconducting conductor element;
wherein the cable system transmits electrical energy with a power of at least 1 MW; and
the cable system has a weight per unit length of at most 2 kg/m.