A variety of mixing devices, and methods of use, exist today for mixing one or more fluids. For instance, one existing mixing device utilizes turning of the flow at bends to mix fluids. Another mixing device utilizes fixed-in-place obstructions on the walls to induce mixing. Yet another mixing device utilizes pulsing of the flow to cause instabilities which lead to mixing. However, many of these devices have a lack of control over the mixing rates, and/or other type of problem.
A mixing device, and/or method of controllably mixing at least one fluid within fluid mixing device, is needed to decrease one or more problems associated with one or more of the existing mixing devices and/or methods.
In one aspect of the disclosure, a fluid mixing device comprises a flow duct comprising a wall having an inner surface, and at least one deployable and retractable projection for controllably generating at least one secondary flow adjacent the inner surface. The inner surface defines a fluid flow path for a primary flow within the flow duct.
In another aspect of the disclosure, a method is provided for controllably mix at least one fluid within a fluid mixing device. In one step, a fluid mixing device is provided comprising a duct and at least one deployable and retractable projection. In another step, a primary flow of least one fluid is formed within the duct. In still another step, the at least one deployable and retractable projection is deployed to form at least one secondary flow within the duct in order to controllably mix the at least one fluid within the duct.
These and other features, aspects and advantages of the disclosure will become better understood with reference to the following drawings, description and claims.
The following detailed description is of the best currently contemplated modes of carrying out the disclosure. The description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating the general principles of the disclosure, since the scope of the disclosure is best defined by the appended claims.
The secondary fluid flows 30 provide a significant advantage in that they promote mixing of the fluid flowing within the flow duct 12. Essentially, each secondary fluid flow vortex 30 operates to constantly bring fluid from the inner surface 16 of the wall 14 of the duct 12 to inner portion 28 of the flow duct 12 along one bi-sector, and from the inner portion 28 of the flow duct 12 towards the wall 14 of the duct 12 along the other bi-sector. Thus, fluid in each of the lobes 32 is well-mixed because of the secondary fluid flow vortices 30, which supplement the mixing of fluid provided by the primary fluid flow 26. The larger the size of the projections 18, and the farther they are each deployed out from the inner surface 16 of wall 14 towards the inner portion 28 of the flow duct 12, the more mixing of fluid will result.
One or more of a number, type, material, size, pitch, orientation, and configuration of the deployable and retractable projections 18 may be pre-determined based on a desired amount of fluid mixing within the duct 12. At different stages of a mixing process, the projections 18 may be deployed out towards the inner portion 28 of the flow duct 12 more than at other times of the mixing process in order to provide varying mixing of the fluid at different times. At other stages of a mixing process, some of the projections 18 in some of the lobes 32 of the duct 12 may be deployed varying amounts than other projections 18 in other lobes 32 of the duct 12 in order to provide stronger secondary flows 30 and more fluid mixing in some lobes 32 than in other lobes 32. At further stages of a mixing process, the projections 18 in the lobes 32 of the duct 12 may be deployed uniformly in the same amounts out towards the inner portion 28 of the flow duct 12.
At other stages of a mixing process, the projections 18 may be retracted only part-way within the gaps 20 of the inner surface 16 in order to provide an intermediary amount of secondary fluid flow 30 within the flow duct 12, in order to provide an intermediary amount of fluid mixing. In such manner, the amount of mixing of fluid within the flow duct 12 may be further controlled. In other stages of a mixing process, some of the projections 18 may be completely retracted within some of the gaps 20 of the lobes 32, while other of the projections 18 may be completely deployed, or only partly retracted, in other lobes 32 in order to provide varied secondary flows 30 and mixing within different lobes 32 of the clover-leaf shaped duct 12. For instance,
The fluid mixing device 10, duct 12, and projections 18 may comprise any of the embodiments disclosed in this specification. In another step 258, the at least one projection 18 may be retracted to at least one of reduce and eliminate at least one secondary flow 30 within the duct 12. This may be achieved by retracting the at least one projection 18 into a gap 20 in the inner surface 16 of the duct 12. In one embodiment, one projection 18 may be retracted to reduce and/or eliminate one secondary flow 30. In another embodiment, a plurality of projections 18 may be retracted to reduce and/or eliminate a plurality of secondary flows 30. In still another embodiment, a plurality of projections 18 may be retracted varying amounts in order to produce a plurality of varying strength secondary flows 30 at varying locations within the duct 12. In yet another embodiment, during the steps of deploying 256 and retracting 258 the at least one projection 18, the amounts of deployment and/or retraction may be determined based on a desired amount of fluid mixing within the duct 12.
In another embodiment, a mixed fluid may be provided. The mixed fluid may have been mixed by forming a primary flow 26 of one or more fluids within a flow duct 12, and by deploying one or more deployable and retractable projections 18, of uniform or varying amounts, within the duct 12. In such manner, one or more uniform Or varying strength secondary flows 30 may have been created within the duct 12 during the mixing. Any of the embodiments disclosed herein may have been used during the mixing of the fluid.
It should be understood, of course, that the foregoing relates to exemplary embodiments of the disclosure and that modifications may be made without departing from the spirit and scope of the disclosure as set forth in the following claims.
This application claims priority to and is a divisional of U.S. patent application Ser. No. 11/745,363 entitled Fluidic Mixer With Controllable Mixing and filed May 7, 2007, which is hereby incorporated by reference in its entirety.
Number | Name | Date | Kind |
---|---|---|---|
2117944 | Cochrane | May 1938 | A |
2307273 | Hughes | Jan 1943 | A |
2321336 | Tondreau | Jun 1943 | A |
2361150 | Petroe | Oct 1944 | A |
2649272 | Barbato | Aug 1953 | A |
2735664 | Gamble | Feb 1956 | A |
2918933 | Boitnott | Dec 1959 | A |
2934892 | Hurlbert et al. | May 1960 | A |
2968919 | Hughes et al. | Jan 1961 | A |
4079718 | Holzbaur | Mar 1978 | A |
4094492 | Beeman et al. | Jun 1978 | A |
4180041 | Miyazaki et al. | Dec 1979 | A |
4228772 | Bakonyi | Oct 1980 | A |
4398511 | Nemazi | Aug 1983 | A |
4459922 | Chadshay | Jul 1984 | A |
4487510 | Buurman et al. | Dec 1984 | A |
4577602 | Showalter | Mar 1986 | A |
4981368 | Smith | Jan 1991 | A |
5370578 | Yi | Dec 1994 | A |
5593131 | Briggs et al. | Jan 1997 | A |
5758692 | Crane | Jun 1998 | A |
5829464 | Aalto et al. | Nov 1998 | A |
5947157 | Kindersley | Sep 1999 | A |
6048089 | Andrews et al. | Apr 2000 | A |
6443609 | Short | Sep 2002 | B2 |
6606975 | Caliskan et al. | Aug 2003 | B1 |
6623155 | Baron | Sep 2003 | B1 |
6751944 | Lair | Jun 2004 | B2 |
6779786 | Ruscheweyh et al. | Aug 2004 | B2 |
6997214 | Kuo | Feb 2006 | B2 |
7281844 | Glanville | Oct 2007 | B2 |
7341007 | Vatsky | Mar 2008 | B2 |
8015794 | Winkler et al. | Sep 2011 | B2 |
8196610 | Murakami et al. | Jun 2012 | B2 |
20080092518 | Winkler et al. | Apr 2008 | A1 |
Number | Date | Country | |
---|---|---|---|
20120320709 A1 | Dec 2012 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 11745363 | May 2007 | US |
Child | 13595320 | US |