Claims
- 1. A magnetohydrodynamic fluidic system for mixing a first substance and a second substance, comprising:
a first substrate section having a first flow channel and a first plurality of MHD pumps operatively connected to said first flow channel, a second substrate section having a second flow channel and a second plurality of MHD pumps operatively connected to said second flow channel, a third substrate section having a third flow channel and a third plurality of MHD pumps operatively connected to said third flow channel, and a control section, said first substrate section, said second substrate section, said third substrate section, said first plurality of MHD pumps, said second plurality of MHD pumps, said third plurality of MHD pumps, and said control section being operatively connected to move said first substance through said first flow channel, said second substance through said second flow channel, and both said first substance and said second substance into said third flow channel where they are mixed.
- 2. The magnetohydrodynamic fluidic system for mixing a first substance and a second substance of claim 1, wherein said first substrate section, said second substrate section, and said third substrate section are connected at an angle to each other.
- 3. The magnetohydrodynamic fluidic system for mixing a first substance and a second substance of claim 1, wherein said first substrate section, said second substrate section, and said third substrate section are connected at a right angle to each other.
- 4. The magnetohydrodynamic fluidic system for mixing a first substance and a second substance of claim 1, wherein said first substrate section, said second substrate section, and said third substrate section are in a common plane.
- 5. The magnetohydrodynamic fluidic system for mixing a first substance and a second substance of claim 1, wherein said first substrate section, and said second substrate section are in a first common plane, and said third substrate section is in a second plane at an angle to said first common plane.
- 6. The magnetohydrodynamic fluidic system for mixing a first substance and a second substance of claim 1, wherein said first substrate section, and said second substrate section are in a first common plane, and said third substrate section is in a second plane at a right angle to said first common plane.
- 7. The magnetohydrodynamic fluidic system for mixing a first substance and a second substance of claim 1, wherein said first flow channel and said second flow channel are covered by glass.
- 8. The magnetohydrodynamic fluidic system for mixing a first substance and a second substance of claim 1, wherein said first plurality of MHD pumps, said second plurality of MHD pumps, and said third plurality of MHD pumps include at least one pair of spaced electrodes and a magnetic section.
- 9. A magnetohydrodynamic fluidic system for mixing a first sample and a second sample, comprising:
first magnetohydrodynamic substrate means having a first flow channel and a first plurality of pairs of spaced electrodes operatively connected to said first flow channel for moving said first sample through said first flow channel, second magnetohydrodynamic substrate means having a second flow channel and a second plurality of pairs of spaced electrodes operatively connected to said second flow channel for moving said second sample through said second flow channel, third magnetohydrodynamic substrate means having a third flow channel and a third plurality of pairs of spaced electrodes operatively connected to said third flow channel for moving both said first sample and said second sample through said third flow channel, magnetic means operatively connected to said first magnetohydrodynamic substrate means, said second magnetohydrodynamic substrate means, and said third magnetohydrodynamic substrate means for providing a magnetohydrodynamic force to said first sample and said second sample, control means for selectively controlling said first plurality of pairs of spaced electrodes, said second plurality of pairs of spaced electrodes, and said third plurality of pairs of spaced electrodes to move said first sample through said first flow channel, to move said second sample through said second flow channel, and to move both said first sample and said second sample into said third flow channel where they are mixed.
- 10. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 9, wherein said first magnetohydrodynamic substrate means, said second magnetohydrodynamic substrate means, and said third magnetohydrodynamic substrate means are connected at an angle to each other.
- 11. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 9, wherein said first magnetohydrodynamic substrate means, said second magnetohydrodynamic substrate means, and said third magnetohydrodynamic substrate means are connected at a right angle to each other.
- 12. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 9, wherein said first magnetohydrodynamic substrate means, said second magnetohydrodynamic substrate means, and said third magnetohydrodynamic substrate means are in a common plane.
- 13. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 9, wherein said first magnetohydrodynamic substrate means and said second magnetohydrodynamic substrate means are in a first common plane, and said third magnetohydrodynamic substrate means is in a second plane at an angle to said first common plane.
- 14. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 9, wherein said first magnetohydrodynamic substrate means and said second magnetohydrodynamic substrate means are in a first common plane, and said third magnetohydrodynamic substrate means is in a second plane at a right angle to said first common plane.
- 15. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 9, wherein said first flow channel and said second flow channel are covered by glass.
- 16. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 9, wherein said first flow channel, said second flow channel, and said third flow channel are covered by glass.
- 17. A magnetohydrodynamic fluidic system for mixing chemicals and/or materials comprising:
a first channel for directing a first droplet of a chemical and/or material, a first channel for directing a second droplet of a chemical and/or material, a mixing area operatively connected to said first channel and said second channel, a third channel operatively connected to said mixing area, a first plurality of pairs of spaced electrodes operatively connected to said first channel for moving said first droplet along said first channel into said mixing area by creating a magnetohydrodynamic force, a second plurality of pairs of spaced electrodes operatively connected to said second channel for moving said second droplet along said second channel into said mixing area by creating a magnetohydrodynamic force, and a third plurality of pairs of spaced electrodes operatively connected to said third channel for moving said mixed chemical and/or material along said third channel by creating a magnetohydrodynamic force.
- 18. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 17, wherein said first channel, said second channel, and said third channel are connected at an angle to each other.
- 19. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 17, wherein said first channel, said second channel, and said third channel are connected at a right angle to each other.
- 20. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 17, wherein said first channel, said second channel, and said third channel are in a common plane.
- 21. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 17, wherein said first channel, and said second channel are in a first common plane, and said third channel is in a second plane at an angle to said first common plane.
- 22. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 17, wherein said first channel, and said channel section are in a first common plane, and said third channel is in a second plane at a right angle to said first common plane.
- 23. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 17, wherein said first channel and said second channel are covered by glass.
- 24. The magnetohydrodynamic fluidic system for mixing a first sample and a second sample of claim 17, wherein said first channel, said second channel, and said third channel are covered by glass.
- 25. A magnetohydrodynamic fluidic method for mixing a first sample and a second sample, comprising the steps of:
using a first magnetohydrodynamic unit with a first flow channel and a first plurality of pairs of spaced electrodes operatively connected to said first flow channel to move said first sample through said first flow channel, using a second magnetohydrodynamic unit with a second flow channel and a second plurality of pairs of spaced electrodes operatively connected to said second flow channel to move said second sample through said second flow channel, and mixing said first sample and said second sample by using said first magnetohydrodynamic unit and said second magnetohydrodynamic unit to bring said first sample and said second sample together causing the samples to be mixed.
- 26. The magnetohydrodynamic fluidic method of claim 25, wherein said first sample consists of a single droplet.
- 27. The magnetohydrodynamic fluidic method of claim 25, wherein said second sample consists of a single droplet.
- 28. The magnetohydrodynamic fluidic method of claim 25, wherein said first sample consists of a single droplet and said second sample consists of a single droplet.
- 29. The magnetohydrodynamic fluidic method of claim 25, wherein said first sample consists of a multiplicity of droplets.
- 30. The magnetohydrodynamic fluidic method of claim 25, wherein said second sample consists of a multiplicity of droplets.
- 31. The magnetohydrodynamic fluidic method of claim 25, wherein said first sample consists of a multiplicity of droplets and said second sample consists of a multiplicity of droplets.
- 32. The magnetohydrodynamic fluidic method of claim 25, including a third magnetohydrodynamic unit with a third flow channel and a third plurality of pairs of spaced electrodes operatively connected to said first flow channel and said second flow channel to move the mixed said first sample and said second sample through said third flow channel.
- 33. The magnetohydrodynamic fluidic method of claim 25, wherein said first sample is separated into a first droplet and a second droplet in said first flow channel by selectively activating and controlling said first plurality of pairs of spaced electrodes to stretch and divide said first sample to separate said first sample into a first droplet and a second droplet.
- 34. The magnetohydrodynamic fluidic method of claim 25, including a third magnetohydrodynamic unit with a third flow channel and a third plurality of pairs of spaced electrodes operatively connected to said first flow channel and said second flow channel to move the mixed said first sample and said second sample through said third flow channel wherein said mixed said first sample and said second sample is separated into a first droplet and a second droplet in said third flow channel by selectively activating and controlling said third plurality of pairs of spaced electrodes to stretch and divide said mixed said first sample and said second sample into a first droplet and a second droplet.
- 35. The magnetohydrodynamic fluidic method of claim 25, wherein said first sample is stretched to separate said first sample into a first main portion and a second main portion and said second sample is moved and mixed with said first sample by delivering said second sample into contact with said first main portion and said second main portion of said first sample by selectively activating and controlling said first plurality of pairs of spaced electrodes and said second plurality of pairs of spaced electrodes.
- 36. The magnetohydrodynamic fluidic method of claim 25, wherein said first sample and said second sample are mixed by a spiraling centrifuge.
- 37. A method of mixing a first substance and a second substance, the steps of:
providing a first droplet of said first substance in a first channel, providing a second droplet of said second substance in a second channel, providing a mixing area operatively connected to said first channel and said second channel, moving said first droplet along said first channel into said mixing area using a magnetohydrodynamic force, moving said second droplet along said second channel into said mixing area using a magnetohydrodynamic force, and mixing said first droplet and said second droplet in said mixing area to provide a mixture of said first substance and said second substance.
- 38. The method of mixing a first substance and a second substance of claim 37, including the steps of providing a third channel operatively connected to said mixing area and moving said mixture of said first substance and said second substance from said mixing area through said third channel using a magnetohydrodynamic force.
- 39. The method of mixing a first substance and a second substance of claim 37, including the steps of providing an additional droplet of said first substance in said first channel and mixing said first droplet, said additional droplet, and said second droplet in said mixing area to provide a mixture of said first substance and said second substance.
- 40. The method of mixing a first substance and a second substance of claim 37, including the steps of providing an additional droplet of a third substance in said first channel and mixing said first droplet, said additional droplet of a third substance, and said second droplet in said mixing area to provide a mixture of said first substance, said third substance, and said second substance.
- 41. A method of mixing chemicals and/or materials comprising the steps of:
providing a first chemical and/or material in a first channel, providing a second chemical and/or material in a second channel, providing a mixing area operatively connected to said first channel and said second channel, providing a third channel operatively connected to said mixing area, moving said first chemical and/or material along said first channel into said mixing area using a magnetohydrodynamic force, moving said second chemical and/or material along said second channel into said mixing area using a magnetohydrodynamic force, mixing said first chemical and/or material and said second chemical and/or material in said mixing area to provide a mixed chemical and/or material, and moving the mixed chemical and/or material from said mixing area through said third channel using a magnetohydrodynamic force.
- 42. The method of mixing chemicals and/or materials of claim 41, wherein said first chemical and/or material consists of a single droplet.
- 43. The method of mixing chemicals and/or materials of claim 41, wherein said second chemical and/or material consists of a single droplet.
- 44. The method of mixing chemicals and/or materials of claim 41, wherein said first chemical and/or material consists of a single droplet and said second chemical and/or material consists of a single droplet.
- 45. The method of mixing chemicals and/or materials of claim 41, wherein said first chemical and/or material consists of a multiplicity of droplets.
- 46. The method of mixing chemicals and/or materials of claim 41, wherein said second chemical and/or material consists of a multiplicity of droplets.
- 47. The magnetohydrodynamic fluidic method of claim 25, wherein said first chemical and/or material consists of a multiplicity of droplets and said second chemical and/or material consists of a multiplicity of droplets.
- 48. The method of mixing chemicals and/or materials of claim 41, including using a magnetohydrodynamic unit with a flow channel to move the mixed said first chemical and/or material and said second chemical and/or material through said third flow channel from said mixing area.
- 49. The method of mixing chemicals and/or materials of claim 41, wherein said first chemical and/or material and said second chemical and/or material are mixed by a spiraling centrifuge.
Government Interests
[0001] The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the United States Department of Energy and the University of California for the operation of Lawrence Livermore National Laboratory.