Resource Type

Language

Analyzing Unsatirated Flow Patterns in Fractured Rock Using an Integrated Modeling Approach (open access)

Analyzing Unsatirated Flow Patterns in Fractured Rock Using an Integrated Modeling Approach

Characterizing percolation patterns in unsaturated fractured rock has posed a greater challenge to modeling investigations than comparable saturated zone studies, because of the heterogeneous nature of unsaturated media and the great number of variables impacting unsaturated flow. This paper presents an integrated modeling methodology for quantitatively characterizing percolation patterns in the unsaturated zone of Yucca Mountain, Nevada, a proposed underground repository site for storing high-level radioactive waste. The modeling approach integrates a wide variety of moisture, pneumatic, thermal, and isotopic geochemical field data into a comprehensive three-dimensional numerical model for modeling analyses. It takes into account the coupled processes of fluid and heat flow and chemical isotopic transport in Yucca Mountain's highly heterogeneous, unsaturated fractured tuffs. Modeling results are examined against different types of field-measured data and then used to evaluate different hydrogeological conceptualizations and their results of flow patterns in the unsaturated zone. In particular, this model provides a much clearer understanding of percolation patterns and flow behavior through the unsaturated zone, both crucial issues in assessing repository performance. The integrated approach for quantifying Yucca Mountain's flow system is demonstrated to provide a practical modeling tool for characterizing flow and transport processes in complex subsurface systems.
Date: August 3, 2006
Creator: Wu, Y.S.; Lu, G.; Zhang, K.; Pan, L. & Bodvarsson, G.S.
System: The UNT Digital Library
Looking for anomalous dispersion in weakly ionized plasmas using X-ray laser interferometry (open access)

Looking for anomalous dispersion in weakly ionized plasmas using X-ray laser interferometry

None
Date: August 3, 2006
Creator: Nilsen, J.; Castor, J. I.; Iglesias, C. A.; Cheng, K. T.; Dunn, J.; Johnson, W. R. et al.
System: The UNT Digital Library
The Complete Genome Sequence of the Marine, Chemolithoautotrophic, Ammonia-Oxidizing Bacterium Nitrosococcus oceani ATCC19707 (open access)

The Complete Genome Sequence of the Marine, Chemolithoautotrophic, Ammonia-Oxidizing Bacterium Nitrosococcus oceani ATCC19707

The Gammaproteobacterium, Nitrosococcus oceani (ATCC 19707), is a Gram-negative obligate chemolithoautotroph capable of extracting energy and reducing power from the oxidation of ammonia to nitrite. Sequencing and annotation of the genome revealed a single circular chromosome (3,481,691 bp; 50.4% G+C) and a plasmid (40,420 bp) that contain 3052 and 41 candidate protein-encoding genes, respectively. The genes encoding proteins necessary for the function of known modes of lithotrophy and autotrophy were identified. In contrast to betaproteobacterial nitrifier genomes, the N. oceani genome contained two complete rrn operons. In contrast, only one copy of the genes needed to synthesize functional ammonia monooxygenase and hydroxylamine oxidoreductase, as well as the proteins that relay the extracted electrons to a terminal electron acceptor were identified. The N. oceani genome contained genes for 13 complete two-component systems. The genome also contained all the genes needed to reconstruct complete central pathways, the tricarboxylic acid cycle and the Embden-Meyerhof-Parnass and pentose phosphate pathways. The N. oceani genome contains the genes required to store and utilize energy from glycogen inclusion bodies and sucrose. Polyphosphate and pyrophosphate appear to be integrated in this bacterium's energy metabolism, stress tolerance and the ability to assimilate carbon via gluconeogenesis. One set of genes …
Date: August 3, 2006
Creator: Klotz, M. G.; Arp, D. J.; Chain, P. S.; El-Sheikh, A. F.; Hauser, L. J.; Hommes, N. G. et al.
System: The UNT Digital Library
Overview of Tabletop X-ray Laser Development at the Lawrence Livermore National Laboratory (open access)

Overview of Tabletop X-ray Laser Development at the Lawrence Livermore National Laboratory

None
Date: August 3, 2006
Creator: Dunn, J.; Shlyaptsev, V. N.; Nilsen, J.; Smith, R. F.; Keenan, R.; Moon, S. J. et al.
System: The UNT Digital Library