ASTM D 6429 : 2023
Current
The latest, up-to-date edition.
Standard Guide for Selecting Surface Geophysical Methods
Hardcopy , PDF
English
10-03-2023
Committee |
D 18
|
DocumentType |
Guide
|
Pages |
13
|
PublisherName |
American Society for Testing and Materials
|
Status |
Current
|
Supersedes |
1.1This guide covers the selection of surface geophysical methods, as commonly applied to geologic, geotechnical, hydrologic, and environmental site investigations and subsequent site characterization, as well as forensic and archaeological applications. These geophysical methods are rarely the sole method used in the site investigation and are often used for pre-screening to guide how and where drilling, sampling or other targeted in situ testing are conducted. This guide does not describe the specific procedures for conducting geophysical surveys. Individual guides have been developed for many surface geophysical methods.
1.2Surface geophysical methods yield direct and indirect measurements of the physical properties of soil and rock and pore fluids, as well as buried objects.
1.3This guide provides an overview of applications for which surface geophysical methods are appropriate. It does not address the details of the theory underlying specific methods, field procedures, or interpretation of the data. Numerous references are included for that purpose and are considered an essential part of this guide. It is recommended that the user of this guide be familiar with the references cited (1-27)2 and with Guides D420, D5730, D5753, D5777, D6285, D6430, D6431, D6432, D6820, D7046, and D7128, as well as Practices D5088, D5608, D6235, and Test Methods D4428/D4428M, D7400/D7400M, and G57.
1.4To obtain detailed information on specific geophysical methods, ASTM standards, other publications, and references cited in this guide, should be consulted.
1.5The success of a geophysical survey is dependent upon many factors. One of the most important factors is the competence of the person(s) responsible for planning, carrying out the survey, and interpreting the data. An understanding of the method's theory, field procedures, and interpretation along with an understanding of the site geology, is necessary to successfully complete a survey. Personnel not having specialized training or experience should be cautious about using geophysical methods and should solicit assistance from qualified professionals. All references in this standard to the “qualified professional” refers to individuals (such as engineers, soil scientists, geophysicists, engineering geologists or geologists), who have the appropriate experience and, if required by local regulations, applicable certification, licensure or registration. The term “engineering” must be understood to be associated with the practices or activities of that qualified professional.
1.6Units—The values stated in SI units are to be regarded as standard. The values given in parentheses are for information only and are not considered standard. Reporting of test results in units other than SI shall not be regarded as nonconformance with this standard.
1.7This guide offers an organized collection of information or a series of options and does not recommend a specific course of action. This document cannot replace education or experience and should be used in conjunction with professional judgment. Not all aspects of this guide may be applicable in all circumstances. This ASTM standard is not intended to represent or replace the standard of care by which the adequacy of a given professional service must be judged, nor should this document be applied without consideration of a project's many unique aspects. The word “Standard” in the title of this document means only that the document has been approved through the ASTM consensus process.
1.8This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.
1.9This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
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ASTM D 6982 : 2022 | Standard Practice for Detecting Hot Spots Using Point-Net (Grid) Search Patterns |
ASTM D 5092/D5092M : 2016 | Standard Practice for Design and Installation of Groundwater Monitoring Wells |
ASTM D 6432 : 2019 | Standard Guide for Using the Surface Ground Penetrating Radar Method for Subsurface Investigation |
ASTM D 420 : 2018 | Standard Guide for Site Characterization for Engineering Design and Construction Purposes |
ASTM D 7128 : 2018 | Standard Guide for Using the Seismic-Reflection Method for Shallow Subsurface Investigation |
ASTM D 4748 : 2010 : R2020 | Standard Test Method for Determining the Thickness of Bound Pavement Layers Using Short-Pulse Radar |
ASTM D 6820 : 2020 | Standard Guide for Use of the Time Domain Electromagnetic Method for Geophysical Subsurface Site Investigation |
ASTM D 6431 : 2018 | Standard Guide for Using the Direct Current Resistivity Method for Subsurface Site Characterization |
ASTM D 6430 : 2018 | Standard Guide for Using the Gravity Method for Subsurface Site Characterization |
ASTM D 3740 : 2023 | Standard Practice for Minimum Requirements for Agencies Engaged in Testing and/or Inspection of Soil and Rock as Used in Engineering Design and Construction |
ASTM D 3740 : 2019 | Standard Practice for Minimum Requirements for Agencies Engaged in Testing and/or Inspection of Soil and Rock as Used in Engineering Design and Construction |
ASTM D 653 : 2024 | Standard Terminology Relating to Soil, Rock, and Contained Fluids |
ASTM D 653 : 2024 : REV A | Standard Terminology Relating to Soil, Rock, and Contained Fluids |
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