CA2425232A1

Pumping or mixing system using a levitating bearing

Abstract

A system (10) for pumping or mixing a fluid using a levitating, rotating magnetic bearing (14) and various other components for use in a pumping or mixing system are disclosed. The magnetic bearing (14) is placed in a fluid- containing vessel (16) in close proximity to a superconducting element (16). A separate cooling source (24) thermally linked to the superconducting element provides the necessary cooling to induce levitation in the magnetic bearing. The superconducting element (20) may be thermally isolated, such that the bearing, the vessel, and any fluid contained therein are not exposed to the cold temperatures required to produce the desired superconductive effects an d the resulting levitation. By using means external to the vessel to rotate and/or stabilize the magnetic bearing levitation in the fluid, including possibly rotating the superconducting element itself or moving it relative t o the vessel, the desired effective pumping or mixing action may be provided.< /SDOAB>

CA2425232A1, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 12 January 2021, 5.7 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

124 claims: 29 independent, 95 dependent

  1. 1
    CA 02425232 2003-04-08 WO 02/31372 PCT/US0i/01080 In the Claims 1. A system for pumping or mixing a fluid in a vessel, comprising:a magnetic bearing for placement in the vessel;at least one superconducting element for levitating said magnetic bearing;5 a wall defining a chamber around the superconducting element, said chamber thermally isolating the superconducting element from the vessel;a separate cooling source thermally linked to said superconducting element;a motive device for rotating said magnetic bearing or said 10 superconducting element.
  2. 26
    The system for pumping or mixing a fluid accordingto claim 25, wherein the rods are pinned together and are thus capable of rotating about a common center, wherein the rods can be rotated to a partially folded position for insertion through a narrow opening in a container. CA 02425232 2003-04-08 WO 02/31372 PCT/US01/01080
  3. 50
    A system for mixing a fluid, comprising:a vessel for holding the fluid;a magnetic bearing for positioning in said vessel;a superconducting element;5 a housing defining a chamber around said superconducting element for thermally isolating said superconducting element from said vessel;a cooling source thermally linked to said superconducting element;and a motive device for rotating said magnetic bearing or said 10 superconducting element.
  4. 55
    A system for pumping or mixing a fluid in a vessel positioned on a stable support structure, comprising:a magnetic bearing for placement in the vessel;at least one superconducting element for levitating said magnetic 5 bearing;a cooling source thermally linked to said superconducting element in said chamber;a motive device for rotating said superconducting element.
  5. 64
    The system forpumping or mixing a fluid accordingto claim 55, wherein the magnetic bearing includes first and second magnets having different polarities to create a non-symmetrical magnetic field with respect to an axis of rotation of said superconducting element.
  6. 66
    The system for pumping or mixing a fluid accordingto claim 55, wherein the magnetic bearing includes at least one low-profile rod carrying first and second magnets having the different polarities, said rod being capable of insertion in a relatively narrow opening in the vessel.
  7. 67
    The system forpumping or mixing a fluid accordingto claim 55, wherein the magnetic bearing includes a pair of interconnected rods that are substantially orthogonal to each other in a nominal position, each carrying first and second magnets having the same polarity.
  8. 68
    The system for pumping or mixing a fluid accordingto claim 67, wherein the rods are pinned together and are thus capable of rotating about a WO 02/31372 PCT/USOl/01080 CA 02425232 2003-04-08 common center, wherein the rods can be rotated to a partially folded position for insertion through a narrow opening in a container.
  9. 69
    The system for pumping or mixing a fluid accordingto claim 67, wherein at least one of the rods is formed of a flexible material and is thus capable of deforming for insertion in the relatively narrow opening in the . vessel.
  10. 70
    A system for pumping or mixing a fluid in a vessel, comprising:a magnetic bearing for placement in the vessel;a superconducting element for levitating said magnetic bearing;a wall defining a chamber around the superconducting element, 5 said chamber thermally isolating the superconducting element from the vessel;a separate cooling source thermally linked to said superconducting element;a motive device for rotating said magnetic bearing, wherein at least a portion of said motive device is positioned adjacent to and concentric 10 with the superconducting element.
  11. 83
    A system for pumping or mixing a fluid in a vessel, comprising:a magnetic bearing for placement in the vessel;at least one superconducting element for levitating said magnetic bearing;5 a wall defining a chamber around the superconducting element, said chamber thermally isolating the superconducting element from the vessel;a separate cooling source thermally linked to said superconducting element;a first motive device for rotating said magnetic bearing or said 10 superconducting element;a second motive device for moving the superconducting element relative to the vessel, whereby moving the superconducting element ensures that effective, non-localized pumping or mixing action is afforded by the levitating, 15 rotating bearing.
  12. 86
    An assembly for use in containing a fluid undergoing a pumping or mixing operation, comprising:a vessel formed of a flexible disposable material capable of holding the fluid;and 5 a levitating magnetic bearing positioned in said vessel, whereby said magnetic bearing is levitated in the vessel and can be disposed of along with said vessel when said pumping or mixing operation is complete.
  13. 90
    A system for pumping or mixing a fluid, comprising:a vessel capable of holding the fluid;a levitating magnetic bearing positioned in the vessel, said bearing capable of being rotated in a non-contact fashion to create the pumping 5 or mixing action;a controller for controlling the rotation of said magnetic bearing;a transmitter for generating a signal;and a receiver for receiving the signal generated by the transmitter;wherein one of said vessel or said bearing carries the transmitter 10 for generating the signal or the receiver for receiving the signal generated by the transmitter, and wherein said controller prevents said bearing from rotating until an appropriate signal is received by the receiver.
  14. 91
    A kit for assisting in the set-up of a fluid pumping or mixing system wherein a magnetic bearing including at least one levitation magnet is levitated in a vessel by a superconducting element in communication with a cooling source for cooling the superconducting element to a transition 5 temperature during a field cooling process, comprising:WO 02/31372 PCT/USOl/01080 CA 02425232 2003-04-08 at least one charging magnet substantially corresponding in size, shape, and magnetic field distribution to the at least one levitation magnet of the magnetic bearing, wherein the charging magnet is placed over the superconducting element during cooling to create a magnetic field, whereby 10 the presence of the magnetic field during cooling serves to charge the superconducting element for levitating the magnetic bearing in the vessel.
  15. 94
    A system for pumping or mixing a fluid in a vessel, comprising:a magnetic bearing for placement in the vessel;at least one superconducting element for levitating said magnetic bearing;5 a separate cooling source thermally linked to said superconducting element;a motive device for rotating one of said magnetic bearing or said WO 02/31372 PCT/USOl/01080 CA 02425232 2003-04-08 superconducting element, wherein said bearing includes at least one levitation-assist 10 chamber for holding a substance that is lighter than the fluid in said vessel, whereby the chamber assists in levitating the magnetic bearing in the fluid.
  16. 98
    A cryostat for keeping an annular superconducting element thermally isolated from the ambient environment, comprising:an outer wall defining an annular chamber for housing the annular superconducting element, said annular chamber being evacuated or WO 02/31372 PCT/USOl/01080 CA 02425232 2003-04-08 5 insulated to thermally isolate the superconducting element from the wall.
  17. 103
    A magnetic bearing for use in a pumping or mixing system having an annular superconducting element and a concentric motive device including a plurality of driving magnets, comprising:an annular levitation magnet for positioning adjacent to and in 5 substantial alignment with the annular superconducting element;a plurality of permanent driven magnets positioned in the WO 02/31372 PCT/USOl/01080 CA 02425232 2003-04-08 opening in said annular levitation magnet, whereby said driven magnets align and magnetically couple with the driving magnets of said motive device.
  18. 104
    A magnetic bearing for levitating and rotating adjacent to a superconducting element to pump or mix a fluid held in a vessel having a relatively narrow opening, comprising:at least one elongated rod carrying first and second levitation 5 magnets, said rod having a length that exceeds a major dimension of the opening in the vessel, wherein said rod is capable of being inserted in the relatively narrow opening in the vessel and moving to a position where the magnets are in substantial alignment with the superconducting element.
  19. 106
    A magnetic bearing for levitating and rotating above a superconducting element to pump or mix a fluid held in a vessel having a relatively narrow opening, comprising:a pair of interconnected, elongated rods positioned substantially 5 orthogonal to each other in a nominal position, each carrying first and second levitation magnets having the same polarity, each said rod having a length that exceeds a major dimension of said opening;wherein at least one of said rods is capable of being folded for WO 02/31372 PCT/USOi/01080 CA 02425232 2003-04-08 passing through the relatively narrow opening in the vessel and moving to a 10 position where the levitation magnets are in substantial alignment with the superconducting element.
  20. 109
    A system for levitating a magnet, comprising:at least one superconducting element;a cooling source thermally linked to the superconducting element, said cooling source cooling the superconducting element to a 5 transition temperature in the presence of a magnetic field to induce levitation in the magnet;a heater for warming said superconducting element to above the transition temperature such that the superconducting element may again be cooled in the presence of the same or a different magnetic field to induce 10 levitation in the same or a different magnet. WO 02/31372 PCT/USOl/01080 CA 02425232 2003-04-08
  21. 111
    A method of levitating and rotating a magnetic bearing for pumping or mixing a fluid, comprising:placing the magnetic bearing in the vessel;levitating the magnetic bearing above a superconducting element 5 positioned in an evacuated or insulated chamber adjacent to the vessel and thermally linked to a separate cooling source;and rotating the magnetic bearing in the vessel.
  22. 116
    A method of levitating and rotating a magnetic bearing for pumping dr mixing a fluid, comprising:placing a magnetic bearing carrying first and second magnets having different polarities to create a non-symmetrical magnetic field in a 5 vessel;levitating the magnetic bearing in the vessel using a superconducting element;rotating the superconducting element to induce rotation in the bearing.
  23. 117
    A method of levitating and rotating a magnetic bearing for pumping or mixing a fluid, comprising:placing a magnetic bearing in the vessel;levitating the magnetic bearing in the vessel using a 5 superconducting element;rotating the magnetic bearing using a driving magnet positioned adjacent to and concentric with the superconducting element.
  24. 118
    A method of charging a superconducting element for levitating a magnetic bearing in a vessel, comprising the steps of:WO 02/31372 PCT/USOl/01080 CA 02425232 2003-04-08 placing a charging magnet corresponding to the magnetic bearing in size, shape, and magnetic field distribution adjacent to the superconducting element;cooling the superconducting element to below a transition 5 temperature;removing the charging magnet;positioning the magnetic bearing in the vessel over the superconducting element.
  25. 119
    Themethodaccordingtoclaimll8,furtherincludingspacingthe charging magnet a preselected distance from the superconducting element during cooling, whereby the preselected distance corresponds to the levitation height of the magnetic bearing.
  26. 121
    A method of levitating and rotating a magnetic bearing in a fluid containing vessel, comprising:placing a magnetic bearing having at least one chamber WO 02/31372 PCT/USOi/01080 CA 02425232 2003-04-08 containing a substance that is lighter than the fluid held in the vessel;levitating the magnetic bearing above a superconducting element positioned in an evacuated or insulated chamber adjacent to the vessel and thermally linked to a separate cooling source;and 5 rotating the magnetic bearing in the vessel, whereby the substance in the chamber assists in levitating the magnetic bearing in the fluid.
  27. 122
    A method of ensuring that a levitating magnetic bearing for pumping or mixing a fluid corresponds to an adjacent pumping or mixing system, comprising:providing a transmitter on or adjacent to one of the magnetic 5 bearing or the pumping or mixing system for transmitting a signal;providing a receiver on or adjacent to the opposite of the magnetic bearing or the pumping or mixing system for receiving the signal generated by the transmitter;preventing the operation of the system until the signal is received 10 by the receiver.
  28. 123
    A method of levitating and rotating a magnetic bearing for pumping or mixing a fluid in a vessel, comprising:placing the magnetic bearing in the vessel;levitating the magnetic bearing above a superconducting element 5 positioned in an evacuated or insulated chamber adjacent to the vessel and thermally linked to a separate cooling source;CA 02425232 2003-04-08 WO 02/31372 PCT/USOl/01080 rotating the magnetic bearing in the vessel;moving the superconducting element relative to the vessel, whereby the rotating magnetic bearing follows the movement of the superconducting element to ensure that effective, non-localized pumping 5 or mixing action is provided.
  29. 124
    The method accordingto claim 123, wherein the step ofrotating the magnetic bearing includes rotating the superconducting element, and wherein the step of moving the superconducting element includes moving the superconducting element to and fro relative to the vessel in a linear fashion.
Independent claims29