Solar Thermochemical Fuels Production: Solar Thermochemical Fuel Production via a Novel Lowe Pressure, Magnetically Stabilized, Non-volatile Iron Oxide Looping Process (open access)

Solar Thermochemical Fuels Production: Solar Thermochemical Fuel Production via a Novel Lowe Pressure, Magnetically Stabilized, Non-volatile Iron Oxide Looping Process

HEATS Project: The University of Florida is developing a windowless high-temperature chemical reactor that converts concentrated solar thermal energy to syngas, which can be used to produce gasoline. The overarching project goal is lowering the cost of the solar thermochemical production of syngas for clean and synthetic hydrocarbon fuels like petroleum. The team will develop processes that rely on water and recycled CO2 as the sole feed-stock, and concentrated solar radiation as the sole energy source, to power the reactor to produce fuel efficiently. Successful large-scale deployment of this solar thermochemical fuel production could substantially improve our national and economic security by replacing imported oil with domestically produced solar fuels.
Date: December 19, 2011
Creator: unknown
System: The UNT Digital Library
Best Practices for Wind Energy Development in the Great Lakes Region (open access)

Best Practices for Wind Energy Development in the Great Lakes Region

This report offers a menu of 18 different, yet complementary, preferred practices and policies. The best practices cover all phases of the wind energy development process - from the policies that allow for wind development, to the sustainable operation of a wind project, to the best practices for decommissioning a spent turbine - including applications for offshore wind. Each best practice describes the opportunities and challenges (pros and cons), and offers a case example that illustrates how that best practice is being utilized by a particular jurisdiction or wind project. The practices described in this publication were selected by a diverse group of interests from the Great Lakes Wind Collaborative that included environmental groups, industry, academia, and federal, state and local government regulators. The practices were identified through a year-long process that included a literature review, online survey and interviews with individuals from the public, private and non-profit sectors. Optimally, a suite of these best practices would be applied in an appropriate combination to fit the conditions of a particular wind project or a set of wind projects within a given locality or region.
Date: July 19, 2011
Creator: Pebbles, Victoria; Hummer, John & Haven, Celia
System: The UNT Digital Library
Solar Thermochemical Fuels Production: Solar Fuels via Partial Redox Cycles with Heat Recovery (open access)

Solar Thermochemical Fuels Production: Solar Fuels via Partial Redox Cycles with Heat Recovery

HEATS Project: The University of Minnesota is developing a solar thermochemical reactor that will efficiently produce fuel from sunlight, using solar energy to produce heat to break chemical bonds. The University of Minnesota is envisioning producing the fuel by using partial redox cycles and ceria-based reactive materials. The team will achieve unprecedented solar-to-fuel conversion efficiencies of more than 10% (where current state-of-the-art efficiency is 1%) by combined efforts and innovations in material development, and reactor design with effective heat recovery mechanisms and demonstration. This new technology will allow for the effective use of vast domestic solar resources to produce precursors to synthetic fuels that could replace gasoline.
Date: December 19, 2011
Creator: unknown
System: The UNT Digital Library
Uncertainty Assessment of Tritium Transport in a Nuclear-stimulated Low-permeability Natural Gas Reservoir (open access)

Uncertainty Assessment of Tritium Transport in a Nuclear-stimulated Low-permeability Natural Gas Reservoir

None
Date: January 19, 2007
Creator: Ye, Ming; Cooper, Clay & Chapman, Jenny
System: The UNT Digital Library
In-Situ Method for Treating Residual Sodium (open access)

In-Situ Method for Treating Residual Sodium

A unique process for deactivating residual sodium in Liquid Metal Fast Breeder Reactor (LMFBR) systems which uses humidified (but not saturated) carbon dioxide at ambient temperature and pressure to convert residual sodium into solid sodium bicarbonate.
Date: July 19, 2005
Creator: Sherman, Steven R. & Henslee, S. Paul
System: The UNT Digital Library
SLURM: Simple Linux Utility for Resource Management (open access)

SLURM: Simple Linux Utility for Resource Management

Simple Linux Utility for Resource Management (SLURM) is an open source, fault-tolerant, and highly scalable cluster management and job scheduling system for Linux clusters of thousands of nodes. Components include machine status, partition management, job management, scheduling and stream copy modules. This paper presents an overview of the SLURM architecture and functionality.
Date: December 19, 2002
Creator: Jette, Morris A. & Grondona, Mark
System: The UNT Digital Library
LLE Review, Quarterly Report: Volume 120, July-September 2009 (open access)

LLE Review, Quarterly Report: Volume 120, July-September 2009

This issue has the following articles: (1) The Omega Laser Facility Users Group Workshop; (2) The Effect of Condensates and Inner Coatings on the Performance of Vacuum Hohlraum Targets; (3) Zirconia-Coated-Carbonyl-Iron-Particle-Based Magnetorheological Fluid for Polishing Optical Glasses and Ceramics; (4) All-Fiber Optical Magnetic Field Sensor Based on Faraday Rotation in Highly Terbium Doped Fiber; (5) Femtosecond Optical Pump-Probe Characterization of High-Pressure-Grown Al{sub 0.86}Ga{sub 0.14}N Single Crystals; (6) LLE's Summer High School Research Program; (7) Laser Facility Report; and (8) National Laser Users Facility and External Users Programs.
Date: February 19, 2001
Creator: Edgell, Dana H.
System: The UNT Digital Library