Search results for: Georgia Institute of Technology. School of Civil and Environmental Engineering

Showing 1 - 5 results of 5 Refine Results
  1. 1

    A simultaneous solution approach for coupled surface and subsurface flow modeling

    Authors: Gunduz, Orhan
    Published: Multimedia Environmental Simulations Laboratory, School of Civil and Environmental Engineering, Georgia Institute of Technology, 2003
    Physical Description: x, 88 pages : illustrations ; 28 cm.
    Book
  2. 2

    Enhanced abutment scour studies for compound channels

    Authors: Sturm, Terry W.
    Published: U.S. Department of Transportation, Federal Highway Administration, Research, Development and Technology, Turner-Fairbank Highway Research Center ; [Available through the National Technical Information Service], 2004
    Physical Description: xii, 130 pages : illustrations ; 28 cm, Also available via Internet from the TFHRC web site. Address as of 12/16/04: http://www.tfhrc.gov/structur/hydrlcs/pubs/99156/99156.pdf; current access is available via PURL.
    Connect to online resource - all users (Federal Depository Library Program Persistant URL)
    Government Document Microfilm Book
  3. 3

    Optimal groundwater remediation system design with well locations selected as decision variables

    Authors: Aral, M. M. (Mustafa M.)
    Published: Multimedia Environmental Simulations Laboratory, School of Civil and Environmental Engineering, Georgia Institute of Technology, 1997
    Physical Description: vi, 67 pages : illustrations ; 28 cm
    Book
  4. 4

    Multi-objective optimization of pumping rates and well placement in coastal aquifers

    Authors: Park, Chan-Hee
    Published: Multimedia Environmental Simulations Laboratory, School of Civil and Environmental Engineering, Georgia Institute of Technology, 2003
    Physical Description: iv, 38 pages : illustrations ; 28 cm.
    Book
  5. 5

    Probability-based evaluation of degraded reinforced concrete components in nuclear power plants

    Published: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 2001
    Physical Description: xv, 248 pages : illustrations ; 28 cm
    Government Document Microfilm Book