ASTM D6539-2000(2006)e1 866 Standard Test Method for Measurement of Pneumatic Permeability of Partially Saturated Porous Materials by Flowing Air.pdf
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1、Designation: D 6539 00 (Reapproved 2006)e1Standard Test Method forMeasurement of Pneumatic Permeability of PartiallySaturated Porous Materials by Flowing Air1This standard is issued under the fixed designation D 6539; the number immediately following the designation indicates the year oforiginal ado
2、ption 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.e1NOTEMercury warning editorially added in March 2008.1. Scope1.1 This test method
3、 covers laboratory determination of thecoefficient of permeability for the flow of air (pneumaticpermeability) through partially saturated porous materials.1.2 This test method may be used with undisturbed orcompacted coarse grained soils, silts, or lean cohesive soils thathave a low degree of satur
4、ation and that have pneumaticpermeability between 0.001 square micrometre (1.01 milli-darcy) and 100 square micrometre (101 darcy).1.3 The values stated in SI units are to be regarded as thestandard, unless other units are specifically given. By traditionin U.S. practice, the pneumatic permeability
5、of porous media isreported in units of darcy, although the SI unit for pneumaticpermeability is square metre.1.4 This standard does not purport 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
6、 and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 653 Terminology Relating to Soil, Rock, and ContainedFluidsD 698 Test Methods for Laboratory Compaction Character-istics of Soil Using Standard Effort (12 400 ft
7、-lbf/ft3(600kN-m/m3)D 854 Test Methods for Specific Gravity of Soil Solids byWater PycnometerD 1557 Test Methods for Laboratory Compaction Charac-teristics of Soil Using Modified Effort (56,000 ft-lbf/ft3(2,700 kN-m/m3)D 1557 Test Methods for Laboratory Compaction Charac-teristics of Soil Using Modi
8、fied Effort (56,000 ft-lbf/ft3(2,700 kN-m/m3)D 2216 Test Methods for Laboratory Determination of Wa-ter (Moisture) Content of Soil and Rock by MassD 3550 Practice for Thick Wall, Ring-Lined, Split Barrel,Drive Sampling of SoilsD 3740 Practice for Minimum Requirements for AgenciesEngaged in the Testi
9、ng and/or Inspection of Soil and Rockas Used in Engineering Design and ConstructionD 4220 Practices for Preserving and Transporting SoilSamplesD 4525 Test Method for Permeability of Rocks by FlowingAirD 4564 Test Method for Density and Unit Weight of Soil inPlace by the Sleeve MethodD 4753 Guide for
10、 Evaluating, Selecting, and SpecifyingBalances and Standard Masses for Use in Soil, Rock, andConstruction Materials TestingD 4767 Test Method for Consolidated Undrained TriaxialCompression Test for Cohesive SoilsD 5084 Test Methods for Measurement of Hydraulic Con-ductivity of Saturated Porous Mater
11、ials Using a FlexibleWall PermeameterD 5856 Test Method for Measurement of Hydraulic Con-ductivity of Porous Material Using a Rigid-Wall,Compaction-Mold PermeameterE1 Specification for ASTM Liquid-in-Glass ThermometersE 145 Specification for Gravity-Convection and Forced-Ventilation Ovens1This test
12、method is under the jurisdiction ofASTM Committee D18 on Soil andRock and is the direct responsibility of Subcommittee D18.04 on HydrologicProperties and Hydraulic Barriers.Current edition approved Feb. 1, 2006. Published March 2006. Originallyapproved in 2000. Last previous edition approved in 2000
13、 as D 653900.2For referenced ASTM standards, visit the ASTM website, 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.TABLE 1 Viscosity of Air, , as a Function of Tem
14、peratureTemperature, C Viscosity, Pas12 1.778 3 10514 1.788 3 10516 1.798 3 10518 1.808 3 10520 1.818 3 10522 1.828 3 10524 1.837 3 10526 1.847 3 10528 1.857 3 1051Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3. Terminology3.1 Defi
15、nitions of Terms Specific to This Standard:3.1.1 darcya porous medium has a permeability of onedarcy when a single-phase fluid of 1-MPas (1-cP) viscositythat completely fills the voids of the medium will flow throughit under conditions of laminar (viscous) flow at a rate of 1cm3/s/cm2of cross-sectio
16、nal area under a pressure gradient of1.013 3 105Pa (1 atm)/cm. (One darcy = 0.9869 square micrometre.)3.1.2 effective confining stress, (Flexible Wall Methodonly)the difference between the permeameter cell confiningpressure and the mean specimen pore-air-water pressures.3.1.2.1 The effective confini
17、ng stress is assumed to bedistributed as a radial vector exhibiting a linear gradient alongthe length of the specimen with a minimum at the inlet and amaximum at the outlet.3.1.2.2 For the purposes of this test method, the effectiveconfining stress is stated as a scalar value and calculated as theco
18、nfining gage pressure minus the average of the specimeninlet and outlet gage pressures.3.1.3 gage pressurepressure measured relative to ambientatmospheric pressure.3.1.4 pneumatic permeabilitythe capacity of a porousmedium to conduct gas in the presence of a gas (air) pressuregradient measured as th
19、e ratio of volumetric flow through aspecimen to the resultant pressure drop across it. Also com-monly known as pneumatic conductivity or permeability to air.3.2 For definitions of other terms used in this test method,see Terminology D 653.4. Significance and Use4.1 This test method applies to the on
20、e-dimensional laminar(viscous) flow of air in porous materials such as soil.NOTE 1This test method deals with porous materials with bothgaseous (air) and liquid (pore water) mobile fluids: The liquid phase ismuch less compressible, has a higher viscosity, and is much more tightlybound to the solid p
21、hase by chemical forces. The assumption of single-phase flow may still be presumed to be valid since the test gradientensuring the conditions of laminar flow may be low enough that flow ofthe liquid phase is negligible.4.2 The degree of saturation of the specimen shall be lessthan that which would p
22、roduce significant internal transport ofpore water or alter the continuity of air voids under the appliedpneumatic gradients. The maximum permissible degree ofsaturation must be evaluated by an experienced analyst. In noinstance shall the specimen be so saturated that pore waterappears at the exit o
23、f the permeameter cell during the test.4.3 This test method is based on the assumption that the rateof mass flow through the specimen is constant with time.NOTE 2When a specimen contains volatile materials this assumptionis violated. The mass of gas flowing out will be greater than that flowingin, t
24、he pneumatic gradient is indeterminate and the test may becomemeaningless. Such specimens pose special problems and must be decon-taminated before analysis in order to minimize health and safety concernsand to prevent contamination of the test apparatus.4.4 The pneumatic permeability of porous mater
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