Claims
- 1. A superconducting magnetic energy storage system comprising:
- an annular vessel having inner and outer walls and containing a cryogenic fluid;
- external support means reacting against readily inward and outward forces acting on said inner and outer walls of said vessel respectively;
- a solenoid coil immersed in said cryogenic fluid in said vessel and having at least first and second winding layers each comprising conductor means forming multiple axially aligned turns, said conductor means of said at least first and second winding layers of said solenoid coil producing a net inward radial force and relative axial movement between said solenoid coil and vessel as said conducting means are cooled down by said cryogenic fluid in said vessel without current applied to the conductor means, and with current applied to said solenoid coil generating a net outward radial force and axial forces tending to axially compress said turns of each layer of the solenoid coil;
- a plurality of first finger plates interleaved with and engaging the conductor means of said first winding layer of said solenoid coil;
- a plurality of second finger plates interleaved with and engaging the conductor means of said second winding layer of said solenoid coil;
- first mounting means mounting each of the first finger plates at one end to the inner wall of said vessel with the other the end of the first finger plates extending radially outward and interleaving with said conductor means of said first winding layer of said coil;
- second mounting means mounting each of the second finger plates at one end to the outer wall of said vessel with the other end of said second finger plates extending radially inward and interleaving with said conductor means of said conductor means of said second winding layer of said solenoid coil; and
- electrically insulating spacer means between said conductor means of said at least first and second winding layers of said solenoid coil;
- said first finger plates transmitting said net inward radial force from said conductor means to said external support means through said inner vessel wall when said conductor means are cooled down without current applied to said solenoid coil, and said second finger plates transmitting said net outward radial force from said conductor means to said external support means through said outer vessel wall when current is applied to said solenoid coil, and both said first and second elongated finger plates bending in response to said axial forces and relative axial movement between said solenoid coil and vessel.
- 2. The system of claim 1 including clamping means clamping said conductor means forming the axially aligned turns of each layer of said solenoid coil together.
- 3. The system of claim 2 wherein said conductor means include a superconducting cable and a support member coextensive with said superconducting cable, said finger plates engaging said support member of the conductor means.
- 4. The system of claim 3 wherein said support members include a radially extending slot in which a finger plate is received and clamped by said clamping means.
- 5. The system of claim 4 wherein said support member of said conductor means is electrically conductive, and including layers of insulation between the turns formed by said conductor means.
- 6. The system of claim 5 wherein said finger plates are electrically nonconductive.
- 7. The system of claim 1 wherein each of said first and second winding layers of said solenoid coil comprise first and second axially spaced sections with each section comprising conductor means forming axially aligned turns, and including first and second elongated finger plates angularly spaced around and associated with each said section, and first and second mounting means for the finger plates associated with each section mounting first ends of the finger plates of each section to the inner and outer vessel walls respectively with second ends of said finger plates extending toward and engaging the conductor means of the associated section of the first and second winding layers, respectively.
- 8. The system of claim 7 including clamping means clamping the conductor means in each section of each winding layer together.
- 9. The system of claim 8 wherein said clamping means include means clamping the conductor means in the first section of each winding layer to the conductor means in the second section of the winding layer.
- 10. The system of claim 1 wherein said solenoid coil includes third and fourth winding layers each comprising conductor means forming multiple axially aligned turns, said third and fourth winding layers of said solenoid coil being located radially between said first and second winding layers of said solenoid coil, said conductor means of said third and fourth winding layers of said solenoid coil adding to the net inward radial force when said solenoid coil is cooled down without current flowing through said solenoid coil and adding to said net radially outward force and to said axial compressing forces when current flows through said solenoid coil, said insulating spacer means including loading bars between conductor means of each layer of said solenoid coil.
- 11. The system of claim 10 including first clamping means simultaneously clamping the conductor means of the first and third layers of said solenoid coil, and second clamping means simultaneously clamping the conductor means of said second and fourth layers of said solenoid coil.
- 12. The system of claim 11 wherein each of said winding layers of said solenoid coil comprises first and second axially spaced sections with each section comprising conductor means forming axially aligned turn, and including first and second elongated finger plates angularly spaced around and engaging conductor means of each section, and mounting means mounting the first elongated finger plates of each section to said inner wall of the vessel and mounting the second elongated finger plates of each section to the outer vessel wall.
- 13. The system of claim 12 including first clamping means for said first and second sections of said solenoid coil clamping together the conductor means of the first and third winding layer in the section together for each section of said solenoid coil and second clamping means for said first and second sections of said solenoid coil clamping the conductor means of the second and fourth winding layers in the section together.
- 14. The system of claim 13 including means clamping said first clamping means for said first and second sections of the solenoid coil together and means clamping the second clamping means for said first and second sections of the solenoid coil together.
- 15. Apparatus for bearing radial and axial forces developed by a superconducting solenoid coil comprising conductor means forming a plurality of axially aligned turns and immersed in a bath of cryogenic fluid in an annular vessel having inner and outer annular side walls, said apparatus comprising:
- a plurality of elongated finger plates interleaved with the conductor means; and
- mounting means mounting first ends of said elongated finger plates to a side wall of said vessel, with the other ends of said finger plates engaging the turns of said conductor means, said elongated finger plates taking said radial forces longitudinally and acting to said axial forces in bending.
- 16. The apparatus of claim 15 including clamping means clamping the axially aligned turns formed by said conductor means together.
- 17. The apparatus of claim 16 wherein said conductor means include a superconducting cable and a support member coextensive with said superconducting cable and wherein the second ends of said elongated finger plates are interleaved with said support members.
- 18. The apparatus of claim 17 wherein said mounting means includes hanger means fixed to said side wall of the vessel, spacers between the first ends of said finger plates and clamping means clamping the first ends of said elongated finger plates with said spacers between said hanger means.
- 19. The apparatus of claim 18 wherein said support members of said conductor means are electrically conductive and wherein said elongated finger plates are electrically nonconductive.
- 20. The apparatus of claim 19 wherein said support members of said conductor means are provided with a radially extending slot in one face thereof in which the second end of one of said elongated finger plates is seated and including electrically insulating layers between said support members of said axially aligned turns of said solenoid coil.
Government Interests
The U.S. government has a paid-up license in this invention and the right in limited circumstances to require the patent owner to license others on reasonable terms as provided for by the terms of Contract No. DNA 001-88-C-0027 awarded by the Defense Nuclear Agency.
US Referenced Citations (5)