ASTM D6430-1999(2010) 1250 Standard Guide for Using the Gravity Method for Subsurface Investigation《重力法探测地下的标准指南》.pdf
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1、Designation: D6430 99 (Reapproved 2010)Standard Guide forUsing the Gravity Method for Subsurface Investigation1This standard is issued under the fixed designation D6430; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of l
2、ast revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 Purpose and Application:1.1.1 This guide summarizes the equipment, field proce-dures, and interpretation methods for th
3、e assessment of sub-surface conditions using the gravity method.1.1.2 The gravity method described in this guide is appli-cable to investigation of a wide range of subsurface conditions.1.1.3 Gravity measurements indicate variations in theearths gravitational field caused by lateral differences in t
4、hedensity of the subsurface soil or rock or the presence of naturalvoids or man-made structures. By measuring spatial changes inthe gravitational field, variations in subsurface conditions canbe determined.1.1.4 Detailed gravity surveys (commonly called micro-gravity surveys) are used for near-surfa
5、ce geologic investiga-tions and geotechnical, environmental, and archaeologicalstudies. Geologic and geotechnical applications include loca-tion of buried channels, bedrock structural features, voids, andcaves, and low-density zones in foundations. Environmentalapplications include site characteriza
6、tion, ground water studies,landfill characterization, and location of underground storagetanks (1)2.1.2 Limitations:1.2.1 This guide provides an overview of the gravitymethod. It does not address the details of the gravity theory,field procedures, or interpretation of the data. Numerousreferences ar
7、e included for that purpose and are considered anessential part of this guide. It is recommended that the user ofthe gravity method be familiar with the references cited andwith the Guides D420, D5753, D6235, and D6429, andPractices D5088, and D5608.1.2.2 This guide is limited to gravity measurement
8、s madeon land. The gravity method can be adapted for a number ofspecial uses: on land, in a borehole, on water, and from aircraftand space. A discussion of these other gravity methods,including vertical gravity gradient measurements, is not in-cluded in this guide.1.2.3 The approaches suggested in t
9、his guide for the gravitymethod are the most commonly used, widely accepted, andproven. However, other approaches or modifications to thegravity method that are technically sound may be substituted.1.2.4 This guide offers an organized collection of informa-tion or a series of options and does not re
10、commend a specificcourse of action. This document cannot replace education,experience, and should be used in conjunction with profes-sional judgment. Not all aspects of this guide may be appli-cable in all circumstances. This ASTM document is notintended to represent or replace the standard of care
11、by whichthe adequacy of a given professional service must be judged,nor should this document be applied without consideration ofa projects many unique aspects. The word “Standard” in thetitle of this document means only that the document has beenapproved through the ASTM consensus process.1.3 Precau
12、tions:1.3.1 It is the responsibility of the user of this guide tofollow any precautions in the equipment manufacturers rec-ommendations and to establish appropriate health and safetypractices.1.3.2 If this guide is used at sites with hazardous materials,operations, or equipment, it is the responsibi
13、lity of the user ofthis guide to establish appropriate safety and health practicesand to determine the applicability of any regulations prior touse.1.3.3 This guide does not purport to address all of the safetyconcerns that may be associated with the use of the gravitymethod. It is the responsibilit
14、y of the user of this guide toestablish appropriate safety and health practices and todetermine the applicability of regulations prior to use.2. Referenced Documents2.1 ASTM Standards:3D420 Guide to Site Characterization for Engineering De-sign and Construction PurposesD653 Terminology Relating to S
15、oil, Rock, and ContainedFluidsD5088 Practice for Decontamination of Field EquipmentUsed at Waste Sites1This guide is under the jurisdiction ofASTM Committee D18 on Soil and Rockand is the direct responsibility of Subcommittee D18.01 on Surface and SubsurfaceCharacterization.Current edition approved
16、May 1, 2010. Published September 2010. Originallyapproved in 1999. Last previous edition approved in 2005 as D643099(2005).DOI: 10.1520/D6430-99R10.2The boldface numbers in parentheses refer to the list of references at the end ofthis standard.3For referenced ASTM standards, visit the ASTM website,
17、www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.D5
18、608 Practices for Decontamination of Field EquipmentUsed at Low Level Radioactive Waste SitesD5753 Guide for Planning and Conducting Borehole Geo-physical LoggingD6235 Practice for Expedited Site Characterization of Va-dose Zone and Ground Water Contamination at HazardousWaste Contaminated SitesD642
19、9 Guide for Selecting Surface Geophysical Methods3. Terminology3.1 DefinitionsDefinitions shall be in accordance with theterms and symbols in Terminology D653.3.2 Additional technical terms used in this guide are definedin Sheriff (2) and Bates and Jackson (3).4. Summary of Guide4.1 Summary of the M
20、ethodThe gravity method makesmeasurements of gravity variations at stations along a profileline or grid relative to an arbitrary selected local base stationgravity value. The gravity measurements are then corrected forother effects that cause variations in gravity. Lateral variationsor anomalies in
21、the resulting residual gravity data can then beattributed to lateral variations in the densities of subsurfacematerials, for example, buried channels, structures, or caves.The data are interpreted by creating geologically consistentdensity models that produce similar gravity values to thoseobserved
22、in the field data.4.1.1 Measurements of variations in the subsurface densityof soil and rock are made from the land surface using agravimeter (Fig. 1). The lateral variations in density are used tointerpret subsurface conditions along a profile line or grid ofgravity measurements.4.1.2 Gravity measu
23、rements can be interpreted to yield thedepth to rock, the location of a buried valley or fault, or thepresence of a cave or cavity. The results obtained frommodeling can often be used to characterize the densities ofnatural or man-made subsurface materials.4.2 Complementary DataGeologic and water ta
24、ble dataobtained from borehole logs, geologic maps, and data fromoutcrops or other complementary surface geophysical methods(D6429) and borehole geophysical methods (Guide D5753) areusually necessary to properly interpret subsurface conditionsfrom gravity data.5. Significance and Use5.1 ConceptsThis
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