Claims
- 1. A fluid separation and delivery apparatus for filtering a fluid from a source and delivering a filtrate derived said fluid from said source to a first destination, and delivering a decantate derived said fluid from said source to a second destination comprising
a) a filter device having an inlet port for connecting to a fluid source, a first outlet port for directing said filtrate to said first destination, and a second outlet port for directing said decantate to said second destination; b) an inlet pump connected between said inlet port of said filter device and said fluid source for pumping fluid at a flow rate of Qin into said filter device; and c) an outlet pump connected between said second outlet port of said filter device and said second destination for pumping said decantate at a flow rate of Qout out of said filter device to said second destination, wherein said outlet pump and said inlet pump are sized and controlled so that Qout is less than Qin, and so that said filtrate flows from said first outlet port of said filter device to said first destination at a flow rate Qr equal to Qin−Qout.
- 2. The fluid separation and delivery apparatus as recited in claim 1, wherein said inlet pump and said outlet pump are reciprocating pumps.
- 3. The fluid separation and delivery apparatus as recited in claim 1, wherein said inlet pump and said outlet pump are gear pumps.
- 4. The fluid separation and delivery apparatus as recited in claim 1, wherein said inlet pump and said outlet pump are driven by a single motor.
- 5. The fluid separation and delivery apparatus as recited in claim 1, wherein said inlet pump and said outlet pump are operated by a common shared controller.
- 6. The fluid separation and delivery apparatus as recited in claim 5, wherein said shared common controller is connected to a data acquisition and control interface.
- 7. The fluid separation and delivery apparatus as recited in claim 5, wherein each of said inlet pump and said outlet pump comprises an input shaft, and wherein said shared common controller is set such that said flow rate Qr of said filtrate out of said first outlet port is equal to RPM×(Cin−Cout), said RPM being the pump speed in revolutions per minute; said Cin being the capacity of said inlet pump in cubic centimeters of liquid per revolution of said inlet pump shaft; and Cout is the capacity said outlet pump in cubic centimeters of liquid per revolution of said outlet pump shaft.
- 8. The fluid separation and delivery apparatus as recited in claim 1, wherein said second destination is said fluid source.
- 9. The fluid separation and delivery apparatus as recited in claim 1, further comprising a diverter valve having an inlet connected to said first outlet port of said filter device, a first outlet connected to said first destination, and a second outlet connected to said second destination.
- 10. The fluid separation and delivery apparatus as recited in claim 9, wherein said second destination is said fluid source.
- 11. The fluid separation and delivery apparatus as recited in claim 9, further comprising means for switching flow out of said diverter valve between said first outlet of said diverter valve and said second outlet of said diverter valve.
- 12. The fluid separation and delivery apparatus as recited in claim 1, wherein said inlet pump and said outlet pump are located in a first operating area, said filter device is located in a second operating area, and said first destination is located in said second operating area.
- 13. The fluid separation and delivery apparatus as recited in claim 1, wherein said filter device is a crossflow filter.
- 14. The fluid separation and delivery apparatus as recited in claim 13, wherein said crossflow filter comprises a housing, a porous filter medium contained within said housing and including a first surface and a second surface, a first passageway through said housing contiguous with at least a portion of said first surface of said porous filter medium, and a second passageway through said housing contiguous with at least a portion of said second surface of said porous filter medium.
- 15. The fluid separation and delivery apparatus as recited in claim 13, wherein said crossflow filter comprises:
a) a housing comprising a first inlet port, a first outlet port, a second outlet port, and a channel; b) a porous filter medium disposed within said housing, said filter medium partitioning said channel into a first passageway between said first inlet port of said housing and said second outlet port of said housing, and a second passageway in communication with said first outlet port of said housing.
- 16. The fluid separation and delivery apparatus as recited in claim 15, wherein said porous filter medium consists essentially of a magnetic material.
- 17. The fluid separation and delivery apparatus as recited in claim 15, wherein said housing is tubular, and said filter medium disposed within said housing is tubular.
- 18. The fluid separation and delivery apparatus as recited in claim 17, wherein said housing of said crossflow filter comprises an exterior surface, and said crossflow filter further comprises a wire coil wound around said exterior surface of said filter housing, said wire coil comprising a first lead and a second lead.
- 19. The fluid separation and delivery apparatus as recited in claim 18, wherein said apparatus further comprises a power supply connected to said first lead and said second lead of said coil.
- 20. A method of producing and delivering a filtrate from a fluid source to a filtrate destination comprising the steps of:
a) pumping fluid from said fluid source at a flow rate of Qin into a filter device having a filter medium, an inlet port, a first outlet port connected to said filtrate destination, and a second outlet port connected to a decantate destination; b) pumping a fluid decantate at a flow rate of Qout from said second outlet port of said filter device to said decantate destination, wherein said flow rate Qout is less than said flow rate Qin; c) directing fluid to flow through said filter medium of said filter device at a flow rate of Qout−Qin, thereby producing a filtrate at a flow rate of Qout−Qin; and d) directing said filtrate to flow through said first outlet port to said filtrate destination at a flow rate of QoutQin.
- 21. The method as recited in claim 20, wherein said decantate destination is said fluid source.
- 22. The method as recited in claim 21, wherein said fluid source is a vessel.
- 23. The method as recited in claim 22, wherein said filtrate destination is a coating process.
- 24. The method as recited in claim 23, wherein said coating process is a web coating process.
- 25. The method as recited in claim 23, wherein said coating process is a die coating process.
- 26. The method as recited in claim 21, wherein said coating process is a spin coating process.
- 27. The method as recited in claim 22 wherein said first destination is a magnetorheological finishing process.
- 28. The method as recited in claim 20, wherein said fluid source is a slurry manufacturing process, and said first destination is a surface finishing process.
- 29. The method as recited in claim 20 wherein said first destination is a packaging process.
- 30. The method as recited in claim 29 wherein said second destination is a packaging process.
- 31. The method as recited in claim 30 wherein said fluid source is a food manufacturing process.
- 32. The method as recited in claim 20 wherein a single drive motor is used to perform said pumping fluid from a fluid source and said pumping a fluid decantate.
- 33. The method as recited in claim 20, wherein a shared controller is used to control said pumping fluid from a fluid source and said pumping a fluid decantate.
- 34. The method as recited in claim 20, wherein said filter device is a crossflow filter.
- 35. The method as recited in claim 20, wherein said pumping fluid from a fluid source and said pumping a fluid decantate are performed by gear pumps.
CROSS-REFERENCE TO RELATED PATENT APPLICATIONS
[0001] This application claims the benefit of the filing date of U.S. provisional patent application Serial No. 60/398,025 filed Jul. 22, 2002.