ASTM D6066-1996(2004) Standard Practice for Determining the Normalized Penetration Resistance of Sands for Evaluation of Liquefaction Potential《液化潜能的评价用砂的常规耐穿透性测定的标准操作规程》.pdf
《ASTM D6066-1996(2004) Standard Practice for Determining the Normalized Penetration Resistance of Sands for Evaluation of Liquefaction Potential《液化潜能的评价用砂的常规耐穿透性测定的标准操作规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM D6066-1996(2004) Standard Practice for Determining the Normalized Penetration Resistance of Sands for Evaluation of Liquefaction Potential《液化潜能的评价用砂的常规耐穿透性测定的标准操作规程》.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6066 96 (Reapproved 2004)Standard Practice forDetermining the Normalized Penetration Resistance ofSands for Evaluation of Liquefaction Potential1This standard is issued under the fixed designation D 6066; the number immediately following the designation indicates the year oforiginal a
2、doption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice outlines a procedure to obtain a record ofnormalized r
3、esistance of sands to the penetration of a standardsampler driven by a standard energy for estimating soilliquefaction potential during earthquakes. The normalizedpenetration resistance determined in this practice may be usefulfor determination of other engineering properties of sands.1.2 This pract
4、ice uses Test Method D 1586 with additionsand modifications to minimize disturbance of saturated loosecohesionless sands during drilling. This practice combinesresults of Test Method D 1586 and interprets the data fornormalization purposes.1.3 Due to inherent variability of the SPT, guidance is give
5、non test configuration and energy adjustments. Penetrationresistance is adjusted for energy delivered in the penetrationtest. Energy adjustments can be estimated or measured andreported.1.4 Standard practice for normalizing penetration resistancevalues is given. Penetration resistance data are norma
6、lized to astandard overburden stress level.1.5 The normalized penetration resistance data may be usedto estimate liquefaction resistance of saturated sands fromearthquake shaking. Evaluation of liquefaction resistance maybe applied to natural ground conditions or foundations foreither planned or exi
7、sting structures.1.6 Using this practice representative disturbed samples ofthe soil can be collected for identification purposes.1.7 This practice is limited to use in cohesionless soils (seeTest Method D 2487 and classifications of SM, SW, SP,SP-SM, and SW-SM Practice D 2488). In most cases, testi
8、ng isperformed in saturated deposits below the water table. In somecases, dry sands may be tested (see 5.4). This practice is notapplicable to lithified materials or fine grained soils. Gravel caninterfere with the test and result in elevated penetrationresistance values. Normalization of penetratio
9、n resistance val-ues for gravelly soils is beyond the scope of this practice.1.8 Penetration resistance measurements often will involvesafety planning, administration, and documentation. This prac-tice does not purport to address all aspects of exploration andsite safety. This standard does not purp
10、ort to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. Performance of thetest usually involves use o
11、f a drill rig; therefore, safetyrequirements as outlined in applicable safety standards. Forexample, OSHA regulations,2DCDMA safety manual,3drill-ing safety manuals, and other applicable state and localregulations must be observed.1.9 The values stated in inch-pound units are to be regardedas standa
12、rd. Within the text, the SI units, are shown inparentheses. The values stated in each system are not equiva-lents, therefore, each system must be used independently of theother.1.9.1 In pressure correction calculations, common units areton/ft2, kg/cm2, atm, and bars. Since these units are approxi-ma
13、tely equal (within a factor of 1.1), many engineers prefer theuse of these units in stress correction calculations. For thoseusing kPa or kN/m2, 100 kPa is approximately equal to oneton/ft2. The stress exponent, n, (see 3.3.1) is approximatelyequal for these units.1.10 This practice may not be appli
14、cable in some countries,states, or localities, where rules or standards may differ forapplying penetration resistance to liquefaction estimates. Otherpractices exist for estimating soil instability from penetrationresistance data. Procedures may change with advances ingeotechnical engineering. It is
15、 dependent on the user inconsultation with experienced engineers to select appropriatemethods and correction to data. In earthquake engineeringstudies, many phenomena can affect soil instability. Thepractice reflects only one current exploration technique andmethod for normalizing penetration resist
16、ance data to a com-mon level for comparisons to case history information.1This practice is under the jurisdiction of ASTM Committee D18 on Soil andRock and is the direct responsibility of Subcommittee D18.02 on Sampling andRelated Field Testing for Soil Evaluations.Current edition approved Nov. 1, 2
17、004. Published January 2005. Originallyapproved in 1996. Last previous edition approved in 1996 as D606696e1.2Available from OSHA, 1825 K. Street, NW, Washington, DC 20006.3Available from the Drilling Equipment Manufacturers Association, 3008Millwood Avenue, Columbia, SC 29205.1Copyright ASTM Intern
18、ational, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.1.11 This practice offers a set of instructions for performingone or more specific operations. This document cannot replaceeducation or experience and should be used in conjunctionwith professional judgment.
19、 Not all aspects of this practice maybe applicable in all circumstances. This ASTM standard is notintended to represent or replace the standard of care by whichthe adequacy of a given professional service must be judged,nor should this document be applied without consideration ofa projects many uniq
20、ue aspects. The word “Standard” in thetitle of this document means only that the document has beenapproved through the ASTM consensus process.2. Referenced Documents2.1 ASTM Standards:4D 653 Terminology Relating to Soil, Rock and ContainedFluidsD 1586 Test Method for Penetration Test and Split-Barre
21、lSampling of SoilsD 2216 Method for Laboratory Determination of Water(Moisture) Content of Soil and RockD 2487 Classification of Soils for Engineering PurposesUnified Soil Classification SystemD 2488 Practice for Description and Identification of Soils(Visual Manual Procedure)D 3740 Practice for Min
22、imum Requirements for AgenciesEngaged in the Testing or Inspection of Soil and Rock, orboth, as Used in Engineering Design and ConstructionD 4633 Test Method for Stress Wave Energy Measurementfor Dynamic Penetrometer Testing SystemsD 5434 Guide for Field Logging of Subsurface Explora-tions of Soil a
23、nd RockD 5778 Performing Electronic Friction Cone and PiezoconePenetration Testing of Soil3. Terminology3.1 DefinitionsDefinitions of terms included in Terminol-ogy D 653 specific to this practice are:3.1.1 effective stressthe average normal force per unitarea transmitted from grain to grain of a so
24、il mass (see 13.4.1).3.1.2 equilibrium pore water pressure, uoat rest waterpressure at depth of interest. Same as hydrostaic pressure (see13.4.1.1).3.1.3 liquefactionthe process of transforming any soilfrom a solid state to a liquid state, usually as a result ofincreased pore pressure and reduced sh
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