ASTM D4525-2008 Standard Test Method for Permeability of Rocks by Flowing Air《流动气体对岩石渗透性的标准试验方法》.pdf
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1、Designation: D 4525 08Standard Test Method forPermeability of Rocks by Flowing Air1This standard is issued under the fixed designation D 4525; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in p
2、arentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This test method covers the determination of the coef-ficient of specific permeability for the flow of air throughrocks. The procedure establishe
3、s representative values of thecoefficient of permeability of rocks or well-indurated soils.1.2 This test method is limited to permeability valuesgreater than 0.9869 pm2(1.0 picodarcy), and is limited to rocksfree of oil or unctuous matter.1.3 The values stated in SI units are to be regarded as thest
4、andard. The values given in parentheses are mathematicalconversions to inch-pound units that are provided for informa-tion only and are not considered standard.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the use
5、r of this standard to establish appro-priate safety 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 3740 Practice for Minimum Requirements for Agenci
6、esEngaged in Testing and/or Inspection of Soil and Rock asUsed in Engineering Design and Construction2.2 American Petroleum Institute Standard:3RP-40 Recommended Practice for Core Analysis Procedure3. Terminology3.1 For terminology used in this test method, refer toTerminology D 653.4. Summary of Te
7、st Method4.1 The permeability of a rock sample is measured byflowing dry air through the specimen and measuring theabsolute pressure, the flow rate, and absolute pressure differ-ential of the air. Three or more tests are performed on a sampleat different mean air pressure values. The permeability va
8、luesare plotted as a function of the reciprocal mean absolutepressure; those points lying on a straight line are extrapolatedto a value corresponding to an infinite mean air pressure toobtain an equivalent permeability value for liquids.5. Significance and Use5.1 This test method is designed to meas
9、ure the permeabil-ity to air of a small sample of rock. By extrapolation, this testmethod also determines an equivalent of the liquid permeabil-ity. This parameter is used to calculate the flow through rock offluids subjected to a pressure differential.NOTE 1Notwithstanding the statements on precisi
10、on and bias con-tained in this test method, the measures of precision of this test method isdependent on the competence of the personnel performing them, and onthe suitability of the equipment and facilities used. Agencies that meet thecriteria of Practice D 3740 are generally considered capable of
11、competentand objective testing. Users of this test method are cautioned thatcompliance with Practice D 3740 does not in itself assure reliable testing.Reliable testing depends on many factors; Practice D 3740 provides ameans for evaluating some of those factors.6. Apparatus6.1 PermeameterThe permeam
12、eter shall have a specimenholder; a pressure transducer or gauge, or manometers, formeasuring the air pressure differential across the ends of thespecimen; a means for measuring the flow rate of the air; anda means for providing dry air to the flow stream (see Fig. 1).6.1.1 Specimen HolderThe specim
13、en holder shall have adiameter of at least ten times the diameter of the largest particle1This test method is under the jurisdiction ofASTM Committee D18 on Soil andRock and is the direct responsibility of Subcommittee D18.12 on Rock Mechanics.Current edition approved July 1, 2008. Published July 20
14、08. Originally approvedin 1985. Last previous edition approved in 2004 as D 4525 04.2For 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 p
15、age onthe ASTM website.3Available from American Petroleum Institute (API), 1220 L. St., NW, Wash-ington, DC 20005-4070, http:/www.api.org.FIG. 1 Air Permeameter (Reproduced from RP-40)1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Dri
16、ve, PO Box C700, West Conshohocken, PA 19428-2959, United States.of the specimen. Where suitable, the preferred diameter is 2.54cm. The entrance and exit flow ports shall be sufficiently largeto prevent pressure loss at maximum flow rate. The length shallbe 1.3 to 1.7 times the diameter.6.1.2 Prefer
17、red ApparatusIn the preferred form, thespecimen holder shall be an elastomer sleeve and have meansfor confining the sleeve and compressing it against the speci-men so as to prevent bypassing of air under pressure betweenthe sleeve and the specimen. The holder shall also have ameans for confining the
18、 ends of the sample. In the preferredform, the end confining plugs will have two ports each, one forthe flow of air, and the other for a static pressure line tomeasure pressure at the end faces of the specimen, as in Fig. 2.This type of holder is suitable for many types of flowing fluidsand allows t
19、he simulation of overburden stress on the speci-men.6.1.3 Alternative ApparatusAn elastomer bushing may beused to confine the specimen, as in Fig. 3. This holder issuitable for confining well-indurated specimens of a fine tomoderate texture. This holder allows rapid operation; it cannotbe used for s
20、imulating overburden stress.6.1.3.1 Alternatively, a rigid bushing may be cast around thespecimen (see Fig. 4). The casting material shall be one thatwill adhere well to both the specimen and the bushing, withoutpenetration of the specimen beyond the superficial pores.Epoxies, polyesters, and sealin
21、g wax are suitable for thispurpose. This method of mounting samples is particularly wellsuited for testing less well-indurated specimens. This techniqueis not applicable for tests requiring the simulation of overbur-den stress.6.1.4 The flow rate of the air shall be sensed downstreamfrom the specime
22、n by means of calibrated orifices (Fig. 1),rotameters (Fig. 5), or a bubble meter (Fig. 6).6.1.5 The preferred method of sensing absolute pressure toobtain the pressure differential across the specimen is by meansof absolute pressure transducers located at the ends of thespecimen. The transducers mu
23、st operate over a range of 0 to 50kPa (0 to 0.5 atmospheres) with a resolution of 250 Pa (0.0025atmospheres) or better. Alternatively, the sensors may beconnected to the end faces of the specimen with static lines, orplaced in sufficiently large flow lines to cause less than 250 Pa(0.0025 atmosphere
24、s) loss of head at maximum flow rate.Pressure must be sensed between the downstream end of thespecimen and the orifice if such a flow sensor is utilized.6.1.5.1 Manometers may be utilized to measure the pres-sures of the flowing air. Both a mercury and water manometermust be provided, with a high-pr
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