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Advanced Photovoltaic Inverter Functionality using 500 kW Power Hardware-in-Loop Complete System Laboratory Testing: Preprint (open access)

Advanced Photovoltaic Inverter Functionality using 500 kW Power Hardware-in-Loop Complete System Laboratory Testing: Preprint

With the increasing penetration of distribution connected photovoltaic (PV) systems, more and more PV developers and utilities are interested in easing future PV interconnection concerns by mitigating some of the impacts of PV integration using advanced PV inverter controls and functions. This paper describes the testing of a 500 kW PV inverter using Power Hardware-in-Loop (PHIL) testing techniques. The test setup is described and the results from testing the inverter in advanced functionality modes, not commonly used in currently interconnected PV systems, are presented. PV inverter operation under PHIL evaluation that emulated both the DC PV array connection and the AC distribution level grid connection are shown for constant power factor (PF) and constant reactive power (VAr) control modes. The evaluation of these modes was completed under varying degrees of modeled PV variability.
Date: January 1, 2013
Creator: Mather, B. A.; Kromer, M. A. & Casey, L.
System: The UNT Digital Library
Advanced Platform for Development and Evaluation of Grid Interconnection Systems Using Hardware-in-the-Loop: Part III -- Grid Interconnection System Evaluator: Preprint (open access)

Advanced Platform for Development and Evaluation of Grid Interconnection Systems Using Hardware-in-the-Loop: Part III -- Grid Interconnection System Evaluator: Preprint

This paper, presented at the IEEE Green Technologies Conference 2013, describes a Grid Interconnection System Evaluator (GISE) that leverages hardware-in-the-loop (HIL) simulation techniques to rapidly evaluate the grid interconnection standard conformance of an ICS according to the procedures in IEEE Std 1547.1 (TM). The architecture and test sequencing of this evaluation tool, along with a set of representative ICS test results from three different photovoltaic (PV) inverters, are presented. The GISE adds to the National Renewable Energy Laboratory's (NREL) evaluation platform that now allows for rapid development of ICS control algorithms using controller HIL (CHIL) techniques, the ability to test the dc input characteristics of PV-based ICSs through the use of a PV simulator capable of simulating real-world dynamics using power HIL (PHIL), and evaluation of ICS grid interconnection conformance.
Date: January 1, 2013
Creator: Lundstrom, B.; Shirazi, M.; Coddington, M. & Kroposki, B.
System: The UNT Digital Library
Advanced Platform for Development and Evaluation of Grid Interconnection Systems Using Hardware-in-the-Loop (Poster) (open access)

Advanced Platform for Development and Evaluation of Grid Interconnection Systems Using Hardware-in-the-Loop (Poster)

This poster describes a Grid Interconnection System Evaluator (GISE) that leverages hardware-in-the-loop (HIL) simulation techniques to rapidly evaluate the grid interconnection standard conformance of an ICS according to the procedures in IEEE Std 1547.1TM. The architecture and test sequencing of this evaluation tool, along with a set of representative ICS test results from three different photovoltaic (PV) inverters, are presented. The GISE adds to the National Renewable Energy Laboratory's (NREL) evaluation platform that now allows for rapid development of ICS control algorithms using controller HIL (CHIL) techniques, the ability to test the dc input characteristics of PV-based ICSs through the use of a PV simulator capable of simulating real-world dynamics using power HIL (PHIL), and evaluation of ICS grid interconnection conformance.
Date: February 1, 2013
Creator: Lundstrom, B.; Shirazi, M. & Coddington, M.
System: The UNT Digital Library
The Advanced Radiographic Capability, A Major Upgrade Of The Computer Controls For The National Ignition Facility* (open access)

The Advanced Radiographic Capability, A Major Upgrade Of The Computer Controls For The National Ignition Facility*

None
Date: September 24, 2013
Creator: Brunton, G.; Marshall, C.; Lagin, L.; Tietbohl, G.; Fishler, B.; Fisher, J. et al.
System: The UNT Digital Library
ADVANCED SIMULATION CAPABILITY FOR ENVIRONMENTAL MANAGEMENT- CURRENT STATUS AND PHASE II DEMONSTRATION RESULTS (open access)

ADVANCED SIMULATION CAPABILITY FOR ENVIRONMENTAL MANAGEMENT- CURRENT STATUS AND PHASE II DEMONSTRATION RESULTS

The U.S. Department of Energy (USDOE) Office of Environmental Management (EM), Office of Soil and Groundwater, is supporting development of the Advanced Simulation Capability for Environmental Management (ASCEM). ASCEM is a state-of-the-art scientific tool and approach for understanding and predicting contaminant fate and transport in natural and engineered systems. The modular and open source high-performance computing tool facilitates integrated approaches to modeling and site characterization that enable robust and standardized assessments of performance and risk for EM cleanup and closure activities. The ASCEM project continues to make significant progress in development of computer software capabilities with an emphasis on integration of capabilities in FY12. Capability development is occurring for both the Platform and Integrated Toolsets and High-Performance Computing (HPC) Multiprocess Simulator. The Platform capabilities provide the user interface and tools for end-to-end model development, starting with definition of the conceptual model, management of data for model input, model calibration and uncertainty analysis, and processing of model output, including visualization. The HPC capabilities target increased functionality of process model representations, toolsets for interaction with Platform, and verification and model confidence testing. The Platform and HPC capabilities are being tested and evaluated for EM applications in a set of demonstrations as part …
Date: February 26, 2013
Creator: Seitz, R.
System: The UNT Digital Library
Advanced Test Reactor National Scientific User Facility: Addressing advanced nuclear materials research (open access)

Advanced Test Reactor National Scientific User Facility: Addressing advanced nuclear materials research

The Advanced Test Reactor National Scientific User Facility (ATR NSUF), based at the Idaho National Laboratory in the United States, is supporting Department of Energy and industry research efforts to ensure the properties of materials in light water reactors are well understood. The ATR NSUF is providing this support through three main efforts: establishing unique infrastructure necessary to conduct research on highly radioactive materials, conducting research in conjunction with industry partners on life extension relevant topics, and providing training courses to encourage more U.S. researchers to understand and address LWR materials issues. In 2010 and 2011, several advanced instruments with capability focused on resolving nuclear material performance issues through analysis on the micro (10-6 m) to atomic (10-10 m) scales were installed primarily at the Center for Advanced Energy Studies (CAES) in Idaho Falls, Idaho. These instruments included a local electrode atom probe (LEAP), a field-emission gun scanning transmission electron microscope (FEG-STEM), a focused ion beam (FIB) system, a Raman spectrometer, and an nanoindentor/atomic force microscope. Ongoing capability enhancements intended to support industry efforts include completion of two shielded, irradiation assisted stress corrosion cracking (IASCC) test loops, the first of which will come online in early calendar year 2013, a …
Date: March 1, 2013
Creator: Jackson, John; Allen, Todd; Marshall, Frances & Cole, Jim
System: The UNT Digital Library
Advancements in Wind Integration Study Data Modeling: The Wind Integration National Dataset (WIND) Toolkit; Preprint (open access)

Advancements in Wind Integration Study Data Modeling: The Wind Integration National Dataset (WIND) Toolkit; Preprint

Regional wind integration studies in the United States require detailed wind power output data at many locations to perform simulations of how the power system will operate under high-penetration scenarios. The wind data sets that serve as inputs into the study must realistically reflect the ramping characteristics, spatial and temporal correlations, and capacity factors of the simulated wind plants, as well as be time synchronized with available load profiles. The Wind Integration National Dataset (WIND) Toolkit described in this paper fulfills these requirements. A wind resource dataset, wind power production time series, and simulated forecasts from a numerical weather prediction model run on a nationwide 2-km grid at 5-min resolution will be made publicly available for more than 110,000 onshore and offshore wind power production sites.
Date: October 1, 2013
Creator: Draxl, C.; Hodge, B. M.; Orwig, K.; Jones, W.; Searight, K.; Getman, D. et al.
System: The UNT Digital Library
Advances in coherent electron cooling (open access)

Advances in coherent electron cooling

N/A
Date: June 10, 2013
Creator: N., Litvinenko V.
System: The UNT Digital Library
Advances in Glass Formulations for Hanford High-Alumimum, High-Iron and Enhanced Sulphate Management in HLW Streams - 13000 (open access)

Advances in Glass Formulations for Hanford High-Alumimum, High-Iron and Enhanced Sulphate Management in HLW Streams - 13000

The current estimates and glass formulation efforts have been conservative in terms of achievable waste loadings. These formulations have been specified to ensure that the glasses are homogenous, contain essentially no crystalline phases, are processable in joule-heated, ceramic-lined melters and meet Hanford Tank Waste Treatment and Immobilization Plant (WTP) Contract terms. The WTP?s overall mission will require the immobilization of tank waste compositions that are dominated by mixtures of aluminum (Al), chromium (Cr), bismuth (Bi), iron (Fe), phosphorous (P), zirconium (Zr), and sulphur (S) compounds as waste-limiting components. Glass compositions for these waste mixtures have been developed based upon previous experience and current glass property models. Recently, DOE has initiated a testing program to develop and characterize HLW glasses with higher waste loadings and higher throughput efficiencies. Results of this work have demonstrated the feasibility of increases in waste loading from about 25 wt% to 33-50 wt% (based on oxide loading) in the glass depending on the waste stream. In view of the importance of aluminum limited waste streams at Hanford (and also Savannah River), the ability to achieve high waste loadings without adversely impacting melt rates has the potential for enormous cost savings from reductions in canister count and …
Date: January 16, 2013
Creator: Kruger, Albert A.
System: The UNT Digital Library
Advances in Shock Timing Experiments on the National Ignition Facility (open access)

Advances in Shock Timing Experiments on the National Ignition Facility

None
Date: November 17, 2013
Creator: Robey, H. F.; Celliers, P. M.; Moody, J. D.; Sater, J.; Parham, T.; Kozioziemski, B. et al.
System: The UNT Digital Library
AFM and NanoSIMS analyses of Vaccinia virions (open access)

AFM and NanoSIMS analyses of Vaccinia virions

None
Date: March 1, 2013
Creator: Weber, P K; Gates, S D; Malkin, A J; Condit, R C & Moussatche, N
System: The UNT Digital Library
AFTER@LHC: A Precision Machine to Study the Interface Between Particle and Nuclear Physics (open access)

AFTER@LHC: A Precision Machine to Study the Interface Between Particle and Nuclear Physics

None
Date: August 30, 2013
Creator: Lansberg, J. P.; Arnaldi, R.; Brodsky, S. J.; Chambert, V.; Didelez, J. P.; Genolini, B. et al.
System: The UNT Digital Library
AGING EFFECTS ON THE PROPERTIES OF IMIDAZOLIUM, QUATERNARY AMMONIUM, PYRIDINIUM AND PYRROLIDINIUM-BASED IONIC LIQUIDS USED IN FUEL AND ENERGY PRODUCTION (open access)

AGING EFFECTS ON THE PROPERTIES OF IMIDAZOLIUM, QUATERNARY AMMONIUM, PYRIDINIUM AND PYRROLIDINIUM-BASED IONIC LIQUIDS USED IN FUEL AND ENERGY PRODUCTION

Ionic liquids are often cited for their excellent thermal stability, a key property for their use as solvents and in the chemical processing of biofuels. However, there has been little supporting data on the long term aging effect of temperature on these materials. Imizadolium, quaternary ammonium, pyridinium, and pyrrolidnium-based ionic liquids with the bis(trifluoromethylsulfonyl)imide and bis(perfluoroethylsulfonyl)imide anions were aged for 2520 hours (15 weeks) at 200�C in air to determine the effects of an oxidizing environment on their chemical structure and thermal stability over time. It was found that the minor changes in the cation chemistry could greatly affect the properties of the ILs over time.
Date: August 13, 2013
Creator: Fox, E.
System: The UNT Digital Library
AGS model in Zgoubi RHIC run 13 polarization modeling status (open access)

AGS model in Zgoubi RHIC run 13 polarization modeling status

N/A
Date: May 12, 2013
Creator: F., Meot; Ahrens, L.; Brown, K.; Dutheil, Y.; Glenn, J.; Harper, C. et al.
System: The UNT Digital Library
An Algorithm for Online Optimization of Accelerators (open access)

An Algorithm for Online Optimization of Accelerators

None
Date: March 29, 2013
Creator: HUANG, XIAOBIAO; Corbett, Jeff; Safranek, James & Wu, Juhao
System: The UNT Digital Library
ALGORITHMS FOR THERMAL AND MECHANICAL CONTACT IN N (open access)

ALGORITHMS FOR THERMAL AND MECHANICAL CONTACT IN N

The transfer of heat and force from UO2 pellets to
Date: May 1, 2013
Creator: Hales, J. D.; Andrs, D. & Gaston, D. R.
System: The UNT Digital Library
All Weather Calibration of Wide Field Optical and NIR Surveys (open access)

All Weather Calibration of Wide Field Optical and NIR Surveys

None
Date: September 20, 2013
Creator: Burke, David L.; Saha, Abhijit; Claver, Jenna; Axelrod, T.; Claver, Chuck; DePoy, Darren et al.
System: The UNT Digital Library
Alternative Approaches to High Energy Density Fusion (open access)

Alternative Approaches to High Energy Density Fusion

None
Date: November 14, 2013
Creator: Hammer, J. H.
System: The UNT Digital Library
Analyses of Inspection Reports at Fuel Cycle Facilities to Derive Insights for a Significance Determination Process (open access)

Analyses of Inspection Reports at Fuel Cycle Facilities to Derive Insights for a Significance Determination Process

N/A
Date: September 22, 2013
Creator: P., Samantha; V., Mubayi & Bari, R. A.
System: The UNT Digital Library
Analysis of Cadmium in Undissolved Anode Materials of Mark-IV Electrorefiner (open access)

Analysis of Cadmium in Undissolved Anode Materials of Mark-IV Electrorefiner

The Mark-IV electrorefiner (Mk-IV ER) contains an electrolyte/molten cadmium system for refining uranium electrochemically. Typically, the anode of the Mk-IV ER consists of the chopped sodium-bonded metallic driver fuels, which have been primarily U-10Zr binary fuels. Chemical analysis of the residual anode materials after electrorefining indicates that a small amount of cadmium is removed from the Mk-IV ER along with the undissolved anode materials. Investigation of chemical analysis data indicates that the amount of cadmium in the undissolved anode materials is strongly correlated with the anode rotation speeds and the residence time of the anode in the Mk-IV ER. Discussions are given to explain the prescribed correlation.
Date: October 1, 2013
Creator: Yoo, Tae-Sic; Fredrickson, Guy L.; Vaden, DeeEarl & Westphal, Brian R.
System: The UNT Digital Library
Analysis of fission gas release in LWR fuel using the BISON code (open access)

Analysis of fission gas release in LWR fuel using the BISON code

Recent advances in the development of the finite-element based, multidimensional fuel performance code BISON of Idaho National Laboratory are presented. Specifically, the development, implementation and testing of a new model for the analysis of fission gas behavior in LWR-UO2 fuel during irradiation are summarized. While retaining a physics-based description of the relevant mechanisms, the model is characterized by a level of complexity suitable for application to engineering-scale nuclear fuel analysis and consistent with the uncertainties pertaining to some parameters. The treatment includes the fundamental features of fission gas behavior, among which are gas diffusion and precipitation in fuel grains, growth and coalescence of gas bubbles at grain faces, grain growth and grain boundary sweeping effects, thermal, athermal, and transient gas release. The BISON code incorporating the new model is applied to the simulation of irradiation experiments from the OECD/NEA International Fuel Performance Experiments database, also included in the IAEA coordinated research projects FUMEX-II and FUMEX-III. The comparison of the results with the available experimental data at moderate burn-up is presented, pointing out an encouraging predictive accuracy, without any fitting applied to the model parameters.
Date: September 1, 2013
Creator: Pastore, G.; Hales, J. D.; Novascone, S. R.; Perez, D. M.; Spencer, B. W. & Williamson, R. L.
System: The UNT Digital Library
Analysis of immobilized artificial membrane retention factors for both neutral and ionic species (open access)

Analysis of immobilized artificial membrane retention factors for both neutral and ionic species

Article on the analysis of immobilized artificial membrane retention factors for both neutral and ionic species.
Date: May 10, 2013
Creator: Abraham, M. H. (Michael H.); Acree, William E. (William Eugene); Fahr, Alfred & Liu, Xiangli
System: The UNT Digital Library
ANALYSIS OF OPERATIONAL STRATEGIES FOR UTILIZING CO2 FOR GEOTHERMAL ENERGY PRODUCTION (open access)

ANALYSIS OF OPERATIONAL STRATEGIES FOR UTILIZING CO2 FOR GEOTHERMAL ENERGY PRODUCTION

None
Date: February 1, 2013
Creator: Buscheck, T A; Chen, M; Lu, C; Sun, Y; Hao, Y; Celia, M A et al.
System: The UNT Digital Library
Analysis of the Genome of a Korean Isolate of the Pieris rapae Granulovirus Enabled by Its Separation from Total Host Genomic DNA by Pulse-Field Electrophoresis (open access)

Analysis of the Genome of a Korean Isolate of the Pieris rapae Granulovirus Enabled by Its Separation from Total Host Genomic DNA by Pulse-Field Electrophoresis

Article on an analysis of the genome of a Korean isolate of the Pieris rapae granulovirus enabled by its separation from total host genomic DNA by pulse-field electrophoresis.
Date: April 8, 2013
Creator: Jo, Yong Hun; Patnaik, Bharat Bhusan; Kang, Se Won; Chae, Sung-Hwa; Oh, Seunghan; Kim, Dong Hyun et al.
System: The UNT Digital Library