Turbomachine and method of assembly
US-2024295224-A1 · Sep 5, 2024 · US
US9618010B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9618010-B2 |
| Application number | US-201313867461-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 22, 2013 |
| Priority date | Apr 22, 2013 |
| Publication date | Apr 11, 2017 |
| Grant date | Apr 11, 2017 |
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A fan system may generate an air flow during use. In various implementations, a fan system may include a fan and an orifice. The orifice may include a converging section, a diverging section, and a minimum radius section disposed between the converging section and the diverging section.
Opening claim text (preview).
The invention claimed is: 1. A fan system comprising: an orifice having an inner surface, the inner surface comprising: a converging section; a diverging section; and a minimum radius section disposed between the converging section and the diverging section; a fan disposed at least partially in the fan orifice, the fan comprising: a top tip; a bottom tip; a curved edge between the top tip and the bottom tip; and a fan diameter; a minimum clearance comprising a first radial distance between a portion of the minimum radius section of the inner surface of the orifice and the top tip of the fan, wherein the minimum clearance is approximately 0.0075 times the fan diameter to approximately 0.0125 times the fan diameter; and a maximum clearance comprising a second radial distance between a portion of the converging section of the inner surface of the orifice and the bottom tip of the fan, wherein the maximum clearance is approximately 0.04 times the fan diameter to approximately 0.05 times the fan diameter; wherein an axial distance between the top tip of the fan and a bottom of the orifice is approximately 0.85 times the fan height to approximately 0.95 times a fan height. 2. The fan system of claim 1 wherein the orifice further comprises an outer surface with an approximately similar shape to the inner surface. 3. The fan system of claim 1 wherein an axial distance between the top tip of the fan and the minimum radius section is approximately 0 to approximately 0.3 times a fan height. 4. The fan system of claim 1 wherein at least a portion of the diverging section of the orifice slopes, and wherein at least a portion of the converging section of the orifice slopes. 5. A fan system comprising: an orifice having an inner surface, the inner surface comprising: a converging section disposed proximate a bottom of the orifice; a diverging section; and a minimum radius section disposed between the converging section and the diverging section, wherein the minimum radius section comprises a minimum diameter point; and a fan comprising: a top tip; a bottom tip at a different radius than the top tip; and a fan height comprising the distance between the top tip and the bottom tip; wherein the fan is disposed in the orifice such that an axial distance between the top tip of the fan and the minimum diameter point is approximately 0 to approximately 0.3 times the fan height and wherein the fan is disposed in the orifice such that the top tip is approximately 0.85 times the fan height to approximately 0.95 times the fan height from the bottom of the orifice along the axial direction. 6. The fan system of claim 5 wherein the orifice further comprises an outer surface, and wherein at least a portion of the outer surface comprises an approximately similar shape to at least a portion of the inner surface. 7. The fan system of claim 5 further comprising a minimum clearance comprising a radial distance between at least a portion of the minimum radius section of the inner surface of the orifice and the top tip of the fan, wherein the minimum clearance is approximately 0.0075 times a fan diameter to approximately 0.0125 times the fan diameter. 8. The fan system of claim 5 further comprising a maximum clearance comprising a radial distance between at least a portion of the converging section of the inner surface of the orifice and the bottom tip of the fan, wherein the maximum clearance is approximately 0.04 times a fan diameter to approximately 0.05 times the fan diameter. 9. A fan system comprising: an orifice having an inner surface, the inner surface comprising: a converging section; a diverging section; and a minimum radius section disposed between the converging section and the diverging section; a fan disposed in the fan orifice such that a first clearance between a top tip of the fan and a first part of the inner surface of the orifice is less than a second clearance between a bottom tip of the fan and a second part of the inner surface of the orifice, wherein the top tip and the bottom tip are joined by a curved edge, and wherein the fan is disposed in the orifice such that the top tip is approximately 0.85 times a fan height to approximately 0.95 times the fan height from a bottom of the orifice along the axial direction. 10. The fan system of claim 9 further comprising: a minimum clearance comprising a radial distance between at least a portion of the minimum radius section of the inner surface of the orifice and the top tip of the fan, wherein the minimum clearance is approximately 0 to approximately 0.0125 times the fan diameter. 11. The fan system of claim 9 further comprising: a maximum clearance comprising a radial distance between at least a portion of the converging section of the inner surface of the orifice and the bottom tip of the fan, wherein the maximum clearance is approximately 0.04 times a fan diameter to approximately 0.05 times the fan diameter. 12. The fan system of claim 9 wherein the converging section comprises: a first end proximate a bottom of the orifice; and a second end proximate the minimum radius section; wherein the first end is approximately 0.04 times a fan diameter to approximately 0.05 times the fan diameter from the bottom tip of the fan along a radial direction; and wherein the top tip of the fan is approximately 0 to approximately 0.3 times a fan height along the axial direction from a minimum diameter point of the minimum radius section of the inner surface of the orifice. 13. The fan system of claim 12 wherein the converging section slopes from the first end to the second end. 14. The fan system of claim 9 wherein at least a portion of the converging section comprises a linearly sloped part, and wherein at least a portion of the diverging section comprises a linearly sloped part. 15. The fan system of claim 9 wherein a radius of the orifice proximate a top end of the orifice is less than a radius of the orifice proximate a bottom end of the orifice. 16. The fan system of claim 9 wherein the fan orifice comprises an approximately circular cross-section.
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