Updated Application of Spatial Data Modeling and Geographical Information Systems (GIS) for Identification of Potential Siting Options for Small Modular Reactors (open access)

Updated Application of Spatial Data Modeling and Geographical Information Systems (GIS) for Identification of Potential Siting Options for Small Modular Reactors

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Date: September 1, 2012
Creator: Belles, Randy; Mays, Gary T; Omitaomu, Olufemi A & Poore, Willis P., III
Object Type: Report
System: The UNT Digital Library
On Techniques to Characterize and Correlate Grain Size, Grain Boundary Orientation and the Strength of the SiC Layer of TRISO Coated Particles: A Preliminary Study (open access)

On Techniques to Characterize and Correlate Grain Size, Grain Boundary Orientation and the Strength of the SiC Layer of TRISO Coated Particles: A Preliminary Study

The mechanical properties of the silicon carbide (SiC) layer of the TRi-ISOtropic (TRISO) coated particle (CP) for high temperature gas reactors (HTGR) are performance parameters that have not yet been standardized by the international HTR community. Presented in this paper are the results of characterizing coated particles to reveal the effect of annealing temperature (1000 to 2100°C) on the strength and grain size of unirradiated coated particles. This work was further expanded to include possible relationships between the grain size and strength values. The comparative results of two strength measurement techniques and grain size measured by the Lineal intercept method are included. Preliminary grain boundary characterization results determined by electron backscatter diffraction (EBSD) are included. These results are also important for future fission product transport studies, as grain boundary diffusion is identified as a possible mechanism by which 110mAg, one of the fission activation products, might be released through intact SiC layers. Temperature is a parameter known to influence the grain size of SiC and therefore it is important to investigate the effect of high temperature annealing on the SiC grain size. Recommendations and future work will also be briefly discussed.
Date: October 1, 2012
Creator: van Rooyen, I. J.; Gougar, J.L. Dunzik; Trowbridge, T. & Rooyen, Philip M van
Object Type: Article
System: The UNT Digital Library
Electron microscopic evaluation and fission product identification of irradiated TRISO coated particles from the AGR-1 experiment: A preliminary Study (open access)

Electron microscopic evaluation and fission product identification of irradiated TRISO coated particles from the AGR-1 experiment: A preliminary Study

ABSTRACT Post-irradiation examination of coated particle fuel from the AGR-1 experiment is in progress at Idaho National Laboratory and Oak Ridge National Laboratory. In this presentation a brief summary of results from characterization of microstructures in the coating layers of selected irradiated fuel particles with burnup of 11.3% and 19.3% FIMA will be given. The main objective of the characterization were to study irradiation effects, fuel kernel porosity, layer debonding, layer degradation or corrosion, fission-product precipitation, grain sizes, and transport of fission products from the kernels across the TRISO layers. Characterization techniques such as scanning electron microscopy, transmission electron microscopy, energy dispersive spectroscopy, and wavelength dispersive spectroscopy were used. A new approach to microscopic quantification of fission-product precipitates is also briefly demonstrated. The characterization emphasized fission-product precipitates in the SiC-IPyC interface, SiC layer and the fuel-buffer interlayer, and provided significant new insights into mechanisms of fission-product transport. Although Pd-rich precipitates were identified at the SiC-IPyC interlayer, no significant SiC-layer thinning was observed for the particles investigated. Characterization of these precipitates highlighted the difficulty of measuring low concentration Ag in precipitates with significantly higher concentrations of contain Pd and U. Different approaches to resolving this problem are discussed. Possible microstructural differences …
Date: October 1, 2012
Creator: van Rooyen, I. J.; Janney, D. E.; Miller, B. D.; Riesterer, J. L. & Demkowicz, P. A.
Object Type: Article
System: The UNT Digital Library
Business Plan Competitions and Technology Transfer (open access)

Business Plan Competitions and Technology Transfer

An evaluation of business plan competitions, with a focus on the NREL-hosted Industry Growth Forum, and how it helps cleantech startups secure funding and transfer their technology to market.
Date: September 1, 2012
Creator: Worley, C. M. & Perry, T. D., IV
Object Type: Report
System: The UNT Digital Library
Vortex Diode Analysis and Testing for Fluoride Salt-Cooled High-Temperature Reactors (open access)

Vortex Diode Analysis and Testing for Fluoride Salt-Cooled High-Temperature Reactors

Fluidic diodes are presently being considered for use in several fluoride salt-cooled high-temperature reactor designs. A fluidic diode is a passive device that acts as a leaky check valve. These devices are installed in emergency heat removal systems that are designed to passively remove reactor decay heat using natural circulation. The direct reactor auxiliary cooling system (DRACS) uses DRACS salt-to-salt heat exchangers (DHXs) that operate in a path parallel to the core flow. Because of this geometry, under normal operating conditions some flow bypasses the core and flows through the DHX. A flow diode, operating in reverse direction, is-used to minimize this flow when the primary coolant pumps are in operation, while allowing forward flow through the DHX under natural circulation conditions. The DRACSs reject the core decay heat to the environment under loss-of-flow accident conditions and as such are a reactor safety feature. Fluidic diodes have not previously been used in an operating reactor system, and therefore their characteristics must be quantified to ensure successful operation. This report parametrically examines multiple design parameters of a vortex-type fluidic diode to determine the size of diode needed to reject a particular amount of decay heat. Additional calculations were performed to size …
Date: February 1, 2012
Creator: Yoder, Graydon L., Jr.; Elkassabgi, Yousri M.; De Leon, Gerardo I.; Fetterly, Caitlin N.; Ramos, Jorge A. & Cunningham, Richard Burns
Object Type: Report
System: The UNT Digital Library
Removal of Biodiesel Precipitates via Ultrasound (open access)

Removal of Biodiesel Precipitates via Ultrasound

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Date: October 1, 2012
Creator: Kass, Michael D.; Connatser, Raynella M. & Lewis, Samuel Arthur, Sr.
Object Type: Report
System: The UNT Digital Library
Intelligence Authorization Legislation: Status and Challenges (open access)

Intelligence Authorization Legislation: Status and Challenges

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Date: June 1, 2012
Creator: Grimmett, Richard F.
Object Type: Report
System: The UNT Digital Library
Religious Exemptions for Mandatory Health Care Programs: A Legal Analysis (open access)

Religious Exemptions for Mandatory Health Care Programs: A Legal Analysis

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Date: March 1, 2012
Creator: Brougher, Cynthia
Object Type: Report
System: The UNT Digital Library