IP Library Granted Patent US 9,646,723
Granted Patent B2
US 9,646,723 · App. 13/968,936 · Granted May 9, 2017

Thermoacoustic enhancements for nuclear fuel rods and other high temperature applications

Inventors: Steven L. Garrett (State College, PA); James A. Smith (Idaho Falls, ID); Dale K. Kotter (Shelley, ID)
Assignee: The Penn State Research Foundation
G21C3/16G01K11/22G21C17/102G21F5/005G21F5/06G21F9/28Y02E30/40
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Quick Facts
Patent No.
US 9,646,723
App. No.
13/968,936
Granted
May 9, 2017
Kind
B2
Abstract

A nuclear thermoacoustic device includes a housing defining an interior chamber and a portion of nuclear fuel disposed in the interior chamber. A stack is disposed in the interior chamber and has a hot end and a cold end. The stack is spaced from the portion of nuclear fuel with the hot end directed toward the portion of nuclear fuel. The stack and portion of nuclear fuel are positioned such that an acoustic standing wave is produced in the interior chamber. A frequency of the acoustic standing wave depends on a temperature in the interior chamber.

Claims (13)

1. A nuclear thermoacoustic device for remotely monitoring a fuel assembly in a nuclear reactor, comprising:

a housing defining an interior chamber;

a nuclear heat source comprising a portion of nuclear fuel disposed in the interior chamber of the housing;

a stack having a hot end and a cold end, the stack disposed in a mid portion of the interior chamber of the housing with the hot end directed toward the nuclear heat source; and

a volume of gas or gas mixture disposed in the interior chamber;

wherein the stack is configured to receive heat energy directly from the nuclear heat source, to convert the received heat energy into an acoustic standing wave within the volume of gas or gas mixture in the interior chamber, and to provide a frequency of the acoustic standing wave corresponding to an effective temperature of gas or gas mixture in the interior chamber such that the effective temperature of the volume of gas or gas mixture in the interior chamber is capable of being monitored remotely from outside the interior chamber by measuring the frequency of the acoustic energy radiated from the housing caused by the acoustic standing wave.

2. A device in accordance with claim 1 , wherein:

the stack is a ceramic element having an array of parallel channels.

3. A device in accordance with claim 1 , wherein:

the thermoacoustic device lacks heat exchangers.

4. A device in accordance with claim 1 , wherein the stack is further configured to provide an amplitude of the acoustic standing wave for monitoring information related to the volume of gas or gas mixture in the interior chamber.

5. A device in accordance with claim 1 , wherein the hot end of the stack is spaced from the nuclear heat source.

6. A device in accordance with claim 1 , wherein the nuclear heat source is in one end of the interior chamber.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2018
From: SMITH, JAMES A.; KOTTER, DALE K.
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 047755/0256 →
CONFIRMATORY LICENSE Recorded Aug 8, 2014
From: PENNSYLVANIA STATE UNIVERSITY, THE
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 033503/0448 →
CONFIRMATORY LICENSE Recorded Jul 2, 2014
From: PENNSYLVANIA STATE UNIVERSITY, THE
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 033268/0156 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2013
From: GARRETT, STEVEN L.
To: THE PENN STATE RESEARCH FOUNDATION
Reel/Frame 031027/0118 →
Continuity (2)
Provisional Application 61683992 · Aug 16, 2012
Related Publication 20140050293A1 · Feb 20, 2014