Last edited by Samurisar
Monday, May 11, 2020 | History

2 edition of Borehole-geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire found in the catalog.

Borehole-geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire

Borehole-geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire

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Published by U.S. Dept. of the Interior, U.S. Geological Survey, Branch of Information Services [distributor] in Pembroke, N.H, Denver, CO .
Written in English

    Subjects:
  • Borings -- New Hampshire -- Rye,
  • Aquifers -- New Hampshire -- Rye,
  • Geophysical well logging -- New Hampshire -- Rye

  • Edition Notes

    Other titlesBorehole geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire
    Statementby Carole D. Johnson ... [et al.] ; in cooperation with the Town of Rye, New Hampshire
    SeriesOpen-file report -- 98-558, U.S. Geological Survey open-file report -- 98-558
    ContributionsJohnson, Carole D, Rye (N.H. : Town), Geological Survey (U.S.)
    The Physical Object
    FormatMicroform
    Paginationiv, 61 p. :
    Number of Pages61
    ID Numbers
    Open LibraryOL15299887M

    pretation of borehole geophysical data and demonstrates their utility and diagnostic value in the hydrogeologic characterization of a fractured sedimentary rock aquifer. This study, undertaken by the United States Geological Survey in cooperation with the New Jersey Department of Environmental Protection, describes. Levy, B.S., and Pannell, L., , Evaluation of a pressure system for estimating in-situ hydraulic conductivity, in Proceedings of the Fifth National Outdoor Action Conference on Aquifer Restoration, Ground Water Monitoring, and Geophysical Methods, Las Vegas, Nevada, May , Dublin, Ohio, National Water Well Association, Ground Water.

    During and , the U. S. Geological Survey, in cooperation with the Pennsylvania Geological Survey, characterized the geohydrology and water quality of three deep test holes in the fractured-bedrock uplands of Bradford, Tioga, . Mark D. Myers, Director.U.S. Geological Survey Any use of trade, product, or firm names is for descriptive purposes only and does not imply endorsement by the Program, and the Geological Survey, with specific appreciation extended to Gregory Baker, .. is generally about 20 ft thick or less throughout the Seacoast.

    GGS Johnson - Free download as PDF File .pdf), Text File .txt) or read online for free. GGS Johnson - Free download as PDF File .pdf), Text File .txt) or read online for free. JHONSON.


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Borehole-geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire Download PDF EPUB FB2

Borehole geophysical logs collected from six wells were analyzed to characterize a high-yield bedrock aquifer in the Town of Rye, New Hampshire.

Video camera, caliper, fluid temperature and conductivity, natural gamma, and deviation logs were used to identify and characterize the fractured bedrock. More advanced geophysical tools included acoustic televiewer and. rows  Geophysical Characterization of Fractured Bedrock Borehole geophysical logs were.

Get this from a library. Borehole-geophysical characterization of a fractured-bedrock aquifer. Borehole-geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire [microform] / by Carole D.

Johnson [et al.] ; in cooperation with the Town of Rye, New Hampshire U.S. Dept. of the Interior, U.S. Geological Survey ; Branch of Information Services [distributor] Pembroke, N.H.: New Hampshire book, CO Australian/Harvard Citation.

Analysis of azimuthal square-array-resistivity data indicates that the secondary porosity of the fractured-bedrock aquifer is about 1 percent. The borehole-geophysical data and cross-hole radar tomography data indicate that more fractures are present in the upper 20 to 25 m (meters) of bedrock than in bedrock below this depth.

Open Library is an open, editable library catalog, building towards a web page for every book ever published. Copies of the reports Open-File Reporttitled "Borehole-geophysical New Hampshire book of a fractured-bedrock aquifer, Rye, New Hampshire," by Carole D.

Lithology and fracture characterization from drilling investigations in the Mirror Lake area, Grafton County, New Hampshire - Borehole-geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire - Quality of water in the fractured-bedrock aquifer of New Hampshire - Assessment of ground-water supply potential of bedrock in.

This banner text can have markup. web; books; video; audio; software; images; Toggle navigation. Comparison of surface and sub-surface geophysical investigations in delineating fracture zones W., Jr., Borehole-Geophysical Characterization of a Fractured-bedrock Aquifer, Rye, New Hampshire.

Bedrock-fracture zones near high-yield bedrock wells in southern New Hampshire well fields were located and characterized using seven surface and six borehole geophysical survey methods. Detailed surveys of six sites with various methods provide an opportunity to integrate and compare survey results.

Borehole geophysical surveys were conducted at three of the. The hydraulic characterization of fractured bedrock is often fraught with problems of inconsistent data from aquifer tests and a general hydraulic behavior that is difficult to interpret.

Testing conducted in a fractured granitic bedrock formation in New England forFile Size: 1MB. In Augusta commercial drill rig was destroyed by ignition of an explosive gas released during the drilling of a domestic well in granitic bedrock in Tyngsborough, MA. This accident prompted the Massachusetts Department of Environmental Protection (MassDEP) to sample the well water for dissolved methane - a possible explosive fuel.

Water samples collected from the. Rye, D. ], Aspects of computer control of a thermofor catalytic cracking unit [microform] / D. Rye Monash University [Clayton, Vic Wikipedia Citation Please see Wikipedia's template documentation for further citation fields that may be required. Results of geophysical surveys of glacial deposits near a former waste-disposal site, Nashua, New Hampsh Borehole-geophysical characterization of a fractured-bedrock aquifer, Rye, New Hampshire [microform] / Simulation of solute transport of tetrachloroethylene in ground water of the glacial-drift aquifer at th.

2 Geophysical Investigations of Well Fields to Characterize Fractured-Bedrock Aquifers in Southern New Hampshire Figure 1. Location of the geophysical study area in the Pinardville, Windham, and Salem Depot minute quadrangles in southern New Hampshire.

Numbers on the quadrangles refer to sites. INTRODUCTION Many towns and communities in New. Geophysical Characterization of Fractured Bedrock at Site 8 Former Pease Air Force Base, Newington, New Hampshire Article (PDF Available).

52 Geophysical Investigations of Well Fields to Characterize Fractured Bedrock Aquifers in Southern New Hampshire Figure 1A.

Borehole geophysical logs of well GNW at site 4, Goffstown, N.H. Site and line locations are shown on figures 1 respectively.

Borehole- and surface-geophysical methods were used to characterize the hydrogeology and the effects of blast fracturing an in-situ recovery trench in a contaminated fractured-bedrock aquifer. Multi-Method Geophysical Approach for Characterizing a Deep Fractured Bedrock Aquifer, Anniston Army Depot, Anniston, Alabama Brian S.

Murray, P.G., and Matthew B. Vest, P.G., Science Applications International Corporation The correct positioning of deep wells to monitor groundwater and entrained contaminants is greatly aided by.

borehole-geophysical logs used to measure phys­ ical properties of the rock include electromag­ netic- (EM) induction, gamma, caliper, and borehole deviation.

These methods provide pre­ liminary information on borehole construction and conditions, lithology, and fractures (Keys, ). The borehole-wall imaging logs were.Assessing borehole geophysical data by simulating borehole flow in fractured bedrock aquifers Andrew S.

Reeve and Joseph Sawdey University of Maine, Dept. of Earth Sciences [email protected] Andrew S. Reeve and Joseph Sawdey Simulating borehole flow.Published by Elsevier Science Ltd borehole geophysical imaging devices in 24 bedrock boreholes concentrated in two borehole arrays (Paillet et al.

; Shapiro, Hsieh ) in fractured igneous (primarily granite) and metamorphic (primarily schist) rock at the USGS Fractured Rock Hydrology Study Site at Mirror Lake, New Hampshire (figure 1).Cited by: 4.