Irradiation Experiment Conceptual Design Parameters for MITR LEU U-Mo Fuel Conversion (open access)

Irradiation Experiment Conceptual Design Parameters for MITR LEU U-Mo Fuel Conversion

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Date: July 16, 2013
Creator: Wilson, E. H.; Newton, T. H.; Hu, L.; Dunn, F. E. (Nuclear Engineering Division) & Laboratory), (MIT Nuclear Reactor
System: The UNT Digital Library
Preliminary Accident Analyses for Conversion of the University of Missouri Research Reactor (MURR) from Highly-Enriched to Low-Enriched Uranium Prepared by (open access)

Preliminary Accident Analyses for Conversion of the University of Missouri Research Reactor (MURR) from Highly-Enriched to Low-Enriched Uranium Prepared by

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Date: July 8, 2013
Creator: Feldman, E. E.; Foyto, L. P.; Kutikkad, K.; McKibben, J. C.; Peters, N. J.; Stevens, J. G. et al.
System: The UNT Digital Library
Mechanical Stability Study (open access)

Mechanical Stability Study

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Date: July 2010
Creator: Krahn, Elizabeth O.; Hebden, Andrew S.; Vandegrift, George F.; Chung, Pei-Lun & Wang, Nien-Hwa Linda
System: The UNT Digital Library
Water management technologies used by Marcellus Shale Gas Producers. (open access)

Water management technologies used by Marcellus Shale Gas Producers.

Natural gas represents an important energy source for the United States. According to the U.S. Department of Energy's (DOE's) Energy Information Administration (EIA), about 22% of the country's energy needs are provided by natural gas. Historically, natural gas was produced from conventional vertical wells drilled into porous hydrocarbon-containing formations. During the past decade, operators have increasingly looked to other unconventional sources of natural gas, such as coal bed methane, tight gas sands, and gas shales.
Date: July 30, 2010
Creator: Veil, J. A. & Division, Environmental Science
System: The UNT Digital Library
Vehicle Technologies Program Government Performance and Results Act (GPRA) Report for Fiscal Year 2014 (open access)

Vehicle Technologies Program Government Performance and Results Act (GPRA) Report for Fiscal Year 2014

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Date: July 15, 2013
Creator: Stephens, T. S.; Birky, A. K. & Ward, J.
System: The UNT Digital Library
Final work plan: environmental site investigation at Sylvan Grove, Kansas. (open access)

Final work plan: environmental site investigation at Sylvan Grove, Kansas.

In 1998, carbon tetrachloride was found above the maximum contaminant level (MCL) of 5 {micro}g/L in groundwater from one private livestock well at Sylvan Grove, Kansas, by the Kansas Department of Health and Environment (KDHE). The 1998 KDHE sampling was conducted under the U.S. Department of Agriculture (USDA) private well sampling program. The Commodity Credit Corporation (CCC), a USDA agency, operated a grain storage facility in Sylvan Grove from 1954 to1966. Carbon tetrachloride is the contaminant of primary concern at sites associated with former CCC/USDA grain storage operations. Sylvan Grove is located in western Lincoln County, approximately 60 mi west of Salina (Figure 1.1). To determine whether the former CCC/USDA facility at Sylvan Grove is a potential contaminant source and its possible relationship to the contamination in groundwater, the CCC/USDA has agreed to conduct an investigation, in accordance with the Intergovernmental Agreement between the KDHE and the Farm Service Agency (FSA) of the USDA. This Work Plan presents historical data related to previous investigations, grain storage operations, local private wells and public water supply (PWS) wells, and local geologic and hydrogeologic conditions at Sylvan Grove. The findings from a review of all available documents are discussed in Section 2. On …
Date: July 15, 2012
Creator: Lafreniere, L. M.
System: The UNT Digital Library
A user's guide to the PLTEMP/ANL code. (open access)

A user's guide to the PLTEMP/ANL code.

PLTEMP/ANL V4.1 is a FORTRAN program that obtains a steady-state flow and temperature solution for a nuclear reactor core, or for a single fuel assembly. It is based on an evolutionary sequence of ''PLTEMP'' codes in use at ANL for the past 20 years. Fueled and non-fueled regions are modeled. Each fuel assembly consists of one or more plates or tubes separated by coolant channels. The fuel plates may have one to five layers of different materials, each with heat generation. The width of a fuel plate may be divided into multiple longitudinal stripes, each with its own axial power shape. The temperature solution is effectively 2-dimensional. It begins with a one-dimensional solution across all coolant channels and fuel plates/tubes within a given fuel assembly, at the entrance to the assembly. The temperature solution is repeated for each axial node along the length of the fuel assembly. The geometry may be either slab or radial, corresponding to fuel assemblies made of a series of flat (or slightly curved) plates, or of nested tubes. A variety of thermal-hydraulic correlations are available with which to determine safety margins such as Onset-of-Nucleate boiling (ONB), departure from nucleate boiling (DNB), and onset of flow …
Date: July 5, 2011
Creator: Kalimullah, M. (Nuclear Engineering Division)
System: The UNT Digital Library