SBIR-STTR Award

In-Situ Structural Monitoring of Light Water Reactors
Award last edited on: 12/16/2013

Sponsored Program
SBIR
Awarding Agency
DOE
Total Award Amount
$149,607
Award Phase
1
Solicitation Topic Code
20 c
Principal Investigator
Jon A Greene

Company Information

Lambda Instruments Inc

840 University City Boulevard Suite 4
Blacksburg, VA 24060
   (540) 953-1796
   info@lambdainc.com
   www.lambdainc.com
Location: Single
Congr. District: 09
County: Montgomery

Phase I

Contract Number: DE-FG02-11ER90105
Start Date: 6/17/2011    Completed: 5/16/2012
Phase I year
2011
Phase I Amount
$149,607
The primary challenges associated with Light Water reactors stem from the degradation of stainless steel structural components during long reactor lifetimes. One problem in particular is the in-situ measurement of swelling and changes in modulus over the core lifetime. Lambda Instruments, Inc. proposes to develop extremely high-temperature, radiation-hardened fiber optic sensors based on their unique sapphire waveguide technology. Sapphire is an inherently high-temperature material and has been shown to retain acceptable transmission properties in moderate radiation environments. Project Outline: (Phase I) This is a feasibility study that will address sensor survivability in high radiation environments. Specifically, initial tests at the OSU TRIGA reactor will be designed to simulate future testing at the ATR facility at INL; (Phase II) This phase will be focused on finalizing test plans and procedures with the goal of completing initial testing in the ATR by the conclusion of Phase II. Sensor designs will continue to be improved and ruggedized; (Phase III) We will leverage commercial contacts with General Atomics, Westinghouse and others developed during the first two phases to generate/solicit commercial funding to continue work. Commercial Applications and Other

Benefits:
Beyond the nuclear reactor market, there is a significant commercial market in conventional power production. Initial target markets will focus on industries such as fossil fuel energy where there is a similar need for high-temperature instrumentation.

Phase II

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Start Date: 00/00/00    Completed: 00/00/00
Phase II year
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