LUNA INNOVATIONS INCORPORATED — Department of Energy SBIR Phase II: 29a

LUNA INNOVATIONS INCORPORATED — SBIR Phase II award from Department of Energy.

Amount
$1,009,996
Agency
Department of Energy
Program / Phase
SBIR · Phase II
Topic
29a
Solicitation
DE-FOA-0001795
NAICS
Place of performance
VA
Period
2018-08-27 → 2020-08-26

Description

Continued use of nuclear power is critical to meeting carbon emission goals and ensuring national security. Nuclear power production will rely on both current generation (LWR and PWR) as well as next generation designs including very-high-temperature, molten-salt, supercritical- water-cooled, gas-cooled, sodium-cooled, and/or lead-cooled reactors. The development and deployment of these high temperature and harsh environment reactors will require advanced sensors capable of operating in these environments. Luna’s core technology lies in Optical Frequency Domain Reflectometry (OFDR) utilizing the Rayleigh backscatter and/or Fiber Bragg Gratings within optical fiber to make temperature measurements. By adding a structure to the end of the fiber creating a Fabry-Perot Interferometer pressure can be measured using the same data system. Materials would be selected such that they are compatible with the anticipated environment and packaged into a deployable unit that could be installed into research and commercial facilities. This technology will provide for enhanced methods of measuring temperature and pressure in the same fiber simultaneously. During the Phase II effort, Luna will build on the success of the Phase I project. The key PhaseII efforts will be to advance sensor analysis algorithms; fabricate sensors using multiple promising fiber types; package sensors to withstand molten salt, molten metal, high-temperature steam, and high-temperature water environments; and finally sensor operation in a research reactor for a duration that provides a total fluence on the order of 1019n/cm2. Throughout the Phase II effort, Luna will stay in contact with its industry partners towards defining and developing a final deployment package that best meets the needs of our future customers. Commercial applications and other benefits: Simultaneous temperature and pressure measurement instrumentation will enable safe operation of Gen-IV reactor designs and PWR (pressurized water reactors) and other Gen-III reactor designs already in operation with a reduction of pressure vessel feedthrough per sensor required. Since the developed sensors will be radiation tolerant and high-temperature capable, they will also find application in space probes, rocket engine monitoring, rocket engine development and in gas turbine health monitoring.