Claims
- 1. A turbocharger, comprising an impeller, a fluid inlet to the impeller, and an outlet from the impeller, and a flow laminarizing device disposed within at least one of the inlet to the impeller or the outlet from the impeller, the flow laminarizing device comprising:
a plurality of walls defining a plurality of passageways, the passageways being substantially mutually parallel and configured to permit fluid flow there through.
- 2. The turbocharger of claim 1, and wherein the plurality of walls comprises at least one of a plurality of tubes, an extruded material, a molded material, a composite material, a synthetic material, a metallic material, a material defining an array of cells, or a single piece entity.
- 3. The turbocharger of claim 1, and wherein the flow laminarizing device further comprises at least one retaining element configured to support the flow laminarizing element in a substantially fixed position relative to the turbocharger.
- 4. The turbocharger of claim 3, and wherein the at least one retaining element comprises a ring.
- 5. A diesel engine, comprising:
a plurality of combustion chambers, each combustion chamber configured to receive ambient air and to discharge combustion gases; a turbocharger configured to receive the ambient air, compress the ambient air, and provide the compressed ambient air to the plurality of combustion chambers, the turbocharger being further configured to receive and be driven by the discharged combustion gasses; and a flow laminarizing device configured to laminarize a flow of one of the ambient air to the turbocharger or the combustion gasses to the turbocharger.
- 6. The diesel engine of claim 5, and wherein the flow laminarizing device comprises a plurality of walls defining a plurality of passageways, each passageway configured to permit fluid flow there through.
- 7. The diesel engine of claim 6, and wherein the plurality of walls comprises at least one of a plurality of tubes, an extruded material, a molded material, a composite material, a synthetic material, a metallic material, a material defining an array of cells, or a single piece entity.
- 8. The diesel engine of claim 5, and wherein the flow laminarizing device comprises a retaining element configured to support the flow laminarizing device in a substantially fixed position relative to the turbocharger, and wherein the retaining element is optionally defined by a ring.
- 9. A flow laminarizing device, comprising:
a first plurality of first walls defining a plurality of passageways, the plurality of passageways being substantially mutually parallel and disposed as an array, each of the passageways including open opposite ends and configured to permit fluid flow there through; a second plurality of second walls defining a plurality of channels, the plurality of channels being substantially parallel with each other and the plurality of passageways, each channel including at least one open side and open opposite ends and configured to permit fluid flow there through; and a retainer configured to support the flow laminarizing device in a substantially fixed position with respect to a location of use, and wherein the retainer optionally comprises a ring.
- 10. The flow laminarizing device of claim 9, and wherein the flow laminarizing device is at least partially defined by a molded entity, an extruded entity, a cast entity, a composite entity, or a single piece entity.
- 11. The flow laminarizing device of claim 9, and wherein the flow laminarizing device comprises at least one of a composite material, a synthetic material, a material defining an array of cells, or a metallic material.
- 12. The flow laminarizing device of claim 9, and wherein each of the plurality of second walls is configured such that the flow laminarizing device includes a taper from a fluid entrance end to a fluid exit end.
- 13. A flow laminarizing device, comprising:
a plurality of walls each including a wall length and a wall width and a wall area, the plurality of walls configured to define a plurality of passageways, the plurality of passageways being substantially mutually parallel, each of the passageways including a passage length corresponding to the wall lengths defining the passageway, each of the passageways including an internal wall area corresponding to the sum of the wall areas of the walls defining the passageway, each of the passageways including a cross-sectional area corresponding to the wall widths of the walls defining the passageway, each of the passageways including an open entrance end and an open exit end and configured to permit a fluid flow there through, each of the passageways configured to generally laminarize the fluid flowing there through, wherein an increase of the passage length of a particular passageway generally increases both the laminarizing of, and a drag effect on, the fluid flowing there through, and wherein an increase of the internal wall area of a particular passageway generally increases the drag effect on the fluid flowing there through, and wherein an increase of the cross-sectional area of a particular passageway generally decreases both the laminarizing of, and the drag effect on, the fluid flowing there through, and wherein an increase of a surface smoothness of the walls defining a particular passageway generally decreases the drag effect on the fluid flowing there through.
- 14. The flow laminarizing device of claim 13, and wherein the plurality of walls are further configured to substantially optimize a ratio of the laminarizing of, to the drag effect on, the fluid flowing through the plurality of passageways.
- 15. The flow laminarizing device of claim 13, and wherein flow laminarizing device is configured to be used in fluid communication with a fluid impelling device, and wherein the plurality of walls are further configured to substantially optimize a ratio of an output pressure to an input pressure of a fluid impelled by the fluid impelling device.
- 16. The flow laminarizing device of claim 13, and wherein the plurality of walls are further configured to define a central passageway, and wherein the plurality of passageways are generally distributed about the periphery of the central passageway.
- 17. The flow laminarizing device of claim 16, and wherein the flow laminarizing device is further configured to be used in substantially fixed, close, non-contacting proximity to an impeller of a fluid impelling device.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present invention claims priority under 35 U.S.C. § 120 to U.S. Provisional Patent Application Serial No. 60/408,838, filed Sep. 6, 2002 and hereby incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60408838 |
Sep 2002 |
US |