IP Library Granted Patent US 10,072,503
Granted Patent B2
US 10,072,503 · App. 13/966,732 · Granted Sep 11, 2018

Dual element turbine blade

Inventors: Kenneth G. Caldeira (Redwood City, CA); William David Duncan (Kirkland, WA); Bran Ferren (Beverly Hills, CA); William Gates (Redmond, WA); W. Daniel Hillis (Encino, CA); Roderick A. Hyde (Redmond, WA); Muriel Y. Ishikawa (Livermore, CA); Edward K. Y. Jung (Las Vegas, NV); Jordin T. Kare (Seattle, WA); John Latham (Boulder, CO); Nathan P. Myhrvold (Bellevue, WA); Stephen H. Salter (Edinburgh, GB); Clarence T. Tegreene (Mercer Island, WA); David B. Tuckerman (Lafayette, CA); Thomas Allan Weaver (San Mateo, CA); Charles Whitmer (North Bend, WA); Lowell L. Wood, Jr. (Bellevue, WA); Victoria Y. H. Wood (Livermore, CA)
Assignee: Elwha LLC
F01D5/147F01D5/282F05D2300/603Y02T50/672Y10T29/49339
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Quick Facts
Patent No.
US 10,072,503
App. No.
13/966,732
Granted
Sep 11, 2018
Kind
B2
Abstract

A turbine blade includes a core element having a base portion, a tip portion, and an intermediate portion extending between the base portion and the tip portion. The intermediate portion includes a non-uniform cross-section and is a high-strength fiber material. The turbine blade further includes a shell disposed around the core element, and the volume between the core element and the shell forms a void.

Claims (9)

1. A turbine blade, comprising:

a core element including a base portion, a tip portion, and an intermediate portion extending between the base portion and the tip portion, the intermediate portion having a non-uniform cross section and comprising a fiber material;

a shell disposed around the core element, the volume between the core element and the shell forming a void, wherein the shell includes an outer surface, an inner surface, and a wall, the inner surface and the outer surface disposed on opposite sides of the wall; and

a cooling element including a plurality of heat sinks extending laterally inward into the void from the shell and configured to increase the maximum operating temperature of the turbine blade, wherein the plurality of heat sinks each include an end fixed directly to the inner surface of the shell.

2. The turbine blade of claim 1 , wherein the fiber material includes a plurality of individual fibers disposed alongside one another and each extending from the base portion to the tip portion in a direction defined by a length of the core element.

3. The turbine blade of claim 2 , wherein the plurality of individual fibers are arranged in at least one of a twisted, woven, and spun bundle.

4. The turbine blade of claim 2 , wherein the plurality of heat sinks each comprise flexible fibers and include a second, free end configured to move relative to the first end.

5. The turbine blade of claim 4 , wherein the flexible fibers comprise carbon nanotubes, and wherein the carbon nanotubes have one or more chilarities configured to facilitate heat transfer.

6. The turbine blade of claim 2 , wherein the plurality of heat sinks comprise rigid elements.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2016
From: CALDEIRA, KENNETH G.; DUNCAN, WILLIAM DAVID; FERREN, BRAN; GATES, WILLIAM; HILLIS, W. DANIEL; HYDE, RODERICK A.; ISHIKAWA, MURIEL Y.; JUNG, EDWARD K.Y.; KARE, JORDIN T.; LATHAM, JOHN; MYHRVOLD, NATHAN P.; SALTER, STEPHEN H.; TEGREENE, CLARENCE T.; TUCKERMAN, DAVID B.; WEAVER, THOMAS ALLAN; WHITMER, CHARLES; WOOD, LOWELL L., JR.; WOOD, VICTORIA Y.H.
To: ELWHA LLC
Reel/Frame 038430/0298 →
Continuity (1)
Related Publication 20150050159A1 · Feb 19, 2015