Publications
Below are publications related to the Groundwater and Streamflow Information Program.
Filter Total Items: 1026
Geologic map and database of the Roseburg 30' x 60' quadrangle, Douglas and Coos Counties, Oregon Geologic map and database of the Roseburg 30' x 60' quadrangle, Douglas and Coos Counties, Oregon
The Roseburg 30' x 60' Quadrangle covers the southeastern margin of the Oregon Coast Range and its tectonic boundary with Mesozoic terranes of the Klamath Mountains (see figures 1 and 2 in pamphlet, also shown on map sheet). The geologic framework of the Roseburg area was established by the pioneering work of Diller (1898), Wells and Peck, (1961) and Ewart Baldwin (1974) and his students...
Authors
Ray E. Wells, A. S. Jayko, A. R. Niem, G. Black, T. Wiley, E. Baldwin, K. M. Molenaar, K.L. Wheeler, C. B. DuRoss, R. W. Givler
Numerical-simulation and conjunctive-management models of the Hunt-Annaquatucket-Pettaquamscutt stream-aquifer system, Rhode Island Numerical-simulation and conjunctive-management models of the Hunt-Annaquatucket-Pettaquamscutt stream-aquifer system, Rhode Island
Numerical-simulation and optimization techniques were used to evaluate alternatives for the conjunctive management of ground- and surface-water resources of the Hunt-Annaquatucket-Pettaquamscutt stream-aquifer system in central Rhode Island. Ground-water withdrawals from the Hunt-Annaquatucket-Pettaquamscutt aquifer exceeded 8 million gallons per day during months of peak water use...
Authors
Paul M. Barlow, David C. Dickerman
The erosion of the Grand Canyon The erosion of the Grand Canyon
No abstract available.
Authors
George Billingsley
Nonlinear inversion of borehole-radar tomography data to reconstruct velocity and attenuation distribution in earth materials Nonlinear inversion of borehole-radar tomography data to reconstruct velocity and attenuation distribution in earth materials
A nonlinear tomographic inversion method that uses first-arrival travel-time and amplitude-spectra information from cross-hole radar measurements was developed to simultaneously reconstruct electromagnetic velocity and attenuation distribution in earth materials. Inversion methods were developed to analyze single cross-hole tomography surveys and differential tomography surveys. Assuming...
Authors
C. Zhou, L. Liu, J.W. Lane
Spatial digital database for the geologic map of the east part of the Pullman 1° x 2° quadrangle, Idaho Spatial digital database for the geologic map of the east part of the Pullman 1° x 2° quadrangle, Idaho
The paper geologic map of the east part of the Pullman 1° x 2° degree quadrangle, Idaho (Rember and Bennett, 1979) was scanned and initially attributed by Optronics Specialty Co., Inc. (Northridge, CA) and remitted to the U.S. Geological Survey for further attribution and publication of the geospatial digital files. The resulting digital geologic map GIS can be queried in many ways to...
Authors
William C. Rember, Earl H. Bennett
Geologic map of the Riverside West 7.5' quadrangle, Riverside County, California Geologic map of the Riverside West 7.5' quadrangle, Riverside County, California
Open-File Report 01-451 contains a digital geologic map database of the Riverside West 7.5’ quadrangle, Riverside County, California that includes: ARC/INFO (Environmental Systems Research Institute, http://www.esri.com) version 7.2.1 coverages of the various elements of the geologic map. A PostScript file to plot the geologic map on a topographic base, containing a Correlation of Map...
Authors
Douglas M. Morton, Brett F. Cox
Chromite deposits in central part Stillwater Complex, Sweet Grass County, Montana: A digital database for the geologic map of the east slope of Iron Mountain Chromite deposits in central part Stillwater Complex, Sweet Grass County, Montana: A digital database for the geologic map of the east slope of Iron Mountain
In 1940, A.L. Howland and J. W. Peoples, assisted by W.R. Jones and M.G. Bennett, mapped the geology of the east slope of Iron Mountain, Montana. The map was revised and extended by Howland in 1942 and published in 1955 as plate 10 of the U.S. Geological Survey Bulletin 1015-D (Howland, 1955). In 2000, the USGS contracted Optronics Specialty Co., Inc. of Northridge, CA to prepare a...
Authors
A. L. Howland, Lorre A. Moyer
Implications for the formation of the Hollywood Basin from gravity interpretations of the northern Los Angeles Basin, California Implications for the formation of the Hollywood Basin from gravity interpretations of the northern Los Angeles Basin, California
Gravity data provide insights on the complex tectonic history and structural development of the northern Los Angeles Basin region. The Hollywood basin appears to be a long (> 12 km), narrow (up to 2 km wide) trough lying between the Santa Monica Mountains and the Wilshire arch. In the deepest parts of the Hollywood basin, the modeled average thickness ranges from roughly 250 m if filled...
Authors
Thomas G. Hildenbrand, Jeffrey G. Davidson, Daniel J. Ponti, V.E. Langenheim
By
Natural Hazards Mission Area, Geology, Energy, and Minerals Mission Area, Earthquake Hazards Program, Energy Resources Program, Mineral Resources Program, National Laboratories Program, Science and Decisions Center, Groundwater and Streamflow Information Program, Earthquake Science Center, Geology, Minerals, Energy, and Geophysics Science Center
Geologic map of the Fifteenmile Valley 7.5' quadrangle, San Bernardino County, California Geologic map of the Fifteenmile Valley 7.5' quadrangle, San Bernardino County, California
Open-File Report OF 01-132 contains a digital geologic map database of the Fifteenmile Valley 7.5’ quadrangle, San Bernardino County, California that includes: 1. ARC/INFO (Environmental Systems Research Institute, http://www.esri.com) version 7.2.1 coverages of the various elements of the geologic map. 2. A PostScript file to plot the geologic map on a topographic base, and containing a
Authors
F. K. Miller, J. C. Matti
Relationship of faults in basin sediments to the gravity and magnetic expression of their underlying fault systems Relationship of faults in basin sediments to the gravity and magnetic expression of their underlying fault systems
Gravity and magnetic surveys were performed along the western flanks of the Santa Rita Mountain range located in southeastern Arizona to develop an understanding of the relationship between surface fault scarps within the basin fill sediments and theirgeophysical response of the faults at depth within the bedrock. Data were acquired for three profiles, one of them along the northern...
Authors
Christopher A. Baldyga
Calculating depths to shallow magnetic sources using aeromagnetic data from the Tucson Basin Calculating depths to shallow magnetic sources using aeromagnetic data from the Tucson Basin
Using gridded high-resolution aeromagnetic data, the performance of several automated 3-D depth-to-source methods was evaluated over shallow control sources based on how close their depth estimates came to the actual depths to the tops of the sources. For all three control sources, only the simple analytic signal method, the local wavenumber method applied to the vertical integral of the...
Authors
Daniel W. Casto
Use of structural geology in exploration for and mining of sedimentary rock-hosted Au deposits Use of structural geology in exploration for and mining of sedimentary rock-hosted Au deposits
Structural geology is an important component in regional-, district- and orebody-scale exploration and development of sedimentary rock-hosted Au deposits. Identification of timing of important structural events in an ore district allows analysis and classification of fluid conduits and construction of genetic models for ore formation. The most practical uses of structural geology deal...
Authors
Stephen G. Peters