ASTM D4630-1996(2002) Standard Test Method for Determining Transmissivity and Storage Coefficient of Low-Permeability Rocks by In Situ Measurements Using the Constant Head Injectio.pdf
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1、Designation: D 4630 96 (Reapproved 2002)Standard Test Method forDetermining Transmissivity and Storage Coefficient of Low-Permeability Rocks by In Situ Measurements Using theConstant Head Injection Test1This standard is issued under the fixed designation D 4630; the number immediately following the
2、designation indicates the year oforiginal adoption 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 test method covers a
3、 field procedure for determin-ing the transmissivity and storativity of geological formationshaving permeabilities lower than 103m2(1 millidarcy) usingconstant head injection.1.2 The transmissivity and storativity values determined bythis test method provide a good approximation of the capacityof th
4、e zone of interest to transmit water, if the test intervals arerepresentative of the entire zone and the surrounding rock isfully water-saturated.1.3 The values stated in SI units are to be regarded as thestandard.1.4 This standard does not purport to address all of thesafety concerns, if any, assoc
5、iated 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.2. Terminology2.1 Definitions of Terms Specific to This Standard:2.1.1 transmissivity, Tthe transmiss
6、ivity of a formation ofthickness, b, is defined as follows:T 5 Kb (1)where:K = hydraulic conductivity.The hydraulic conductivity, K, is related to the permeability,k, as follows:K 5 krg/ (2)where:r = fluid density, = fluid viscosity, andg = acceleration due to gravity.2.1.2 storage coeffcient, Sthe
7、storage coefficient of aformation of thickness, b, is defined as follows:S 5 Ssb (3)where:Ss= specific storage.The ebrss is the specific storage of a material if it werehomogeneous and porous over the entire interval. The specificstorage is given as follows:Ss5rg Cb1 nCw! (4)where:Cb= bulk rock comp
8、ressibility,Cw= fluid compressibility, andn = formation porosity.2.2 Symbols:2.2.1 Cbbulk rock compressibility (M1LT2).2.2.2 Cwcompressibility of water (M1LT2).2.2.3 Gdimensionless function.2.2.4 Khydraulic conductivity (LT1).2.2.4.1 DiscussionThe use of symbol K for the termhydraulic conductivity i
9、s the predominant usage in groundwater literature by hydrogeologists, whereas the symbol k iscommonly used for this term in the rock and soil mechanicsand soil science literature.2.2.5 Pexcess test hole pressure (ML1T2).2.2.6 Qexcess water flow rate (L3T1).2.2.7 Qomaximum excess water flow rate (L3T
10、1).2.2.8 Sstorativity (or storage coefficient) (dimensionless).2.2.9 Ssspecific storage (L1).2.2.10 Ttransmissivity (L2T1).2.2.11 bformation thickness (L).2.2.12 efracture aperture (L).2.2.13 gacceleration due to gravity (LT2).2.2.14 kpermeability (L2).2.2.15 nporosity (dimensionless).2.2.16 rwradiu
11、s of test hole (L).2.2.17 ttime elapsed from start of test (T).1This test method is under the jurisdiction of ASTM Committee D18 on Soil andRock and is the direct responsibility of Subcommittee D18.21 on Ground Water andVadose Zone Investigations.Current edition approved Oct. 10, 1996. Published Jun
12、e 1997. Originallypublished as D 4630 86. Last previous edition D 4630 86 (1991)e1.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.2.2.18 adimensionless parameter.2.2.19 viscosity of water (ML1T1).2.2.20 rdensity of water (ML3).3. Su
13、mmary of Test Method3.1 A borehole is first drilled into the rock mass, intersectingthe geological formations for which the transmissivity andstorativity are desired. The borehole is cored through potentialzones of interest, and is later subjected to geophysical boreholelogging over these intervals.
14、 During the test, each interval ofinterest is packed off at top and bottom with inflatable rubberpackers attached to high-pressure steel tubing.3.2 The test itself involves rapidly applying a constantpressure to the water in the packed-off interval and tubingstring, and recording the resulting chang
15、es in water flow rate.The water flow rate is measured by one of a series of flowmeters of different sensitivities located at the surface. Theinitial transient water flow rate is dependent on the transmis-sivity and storativity of the rock surrounding the test intervaland on the volume of water conta
16、ined in the packed-off intervaland tubing string.4. Significance and Use4.1 Test MethodThe constant pressure injection testmethod is used to determine the transmissivity and storativityof low-permeability formations surrounding packed-off inter-vals. Advantages of the method are: (a) it avoids the e
17、ffect ofwell-bore storage, (b) it may be employed over a wide range ofrock mass permeabilities, and (c) it is considerably shorter induration than the conventional pump and slug tests used inmore permeable rocks.4.2 AnalysisThe transient water flow rate data obtainedusing the suggested test method a
18、re evaluated by the curve-matching technique described by Jacob and Lohman (1)2andextended to analysis of single fractures by Doe et al. (2). If thewater flow rate attains steady state, it may be used to calculatethe transmissivity of the test interval (3).4.3 Units:4.3.1 ConversionsThe permeability
19、 of a formation isoften expressed in terms of the unit darcy. A porous mediumhas a permeability of 1 darcy when a fluid of viscosity 1 cp (1mPas) flows through it at a rate of 1 cm3/s (106 m3/s)/1 cm2(104 m2) cross-sectional area at a pressure differential of 1atm (101.4 kPa)/1 cm (10 mm) of length.
20、 One darcy corre-sponds to 0.987 m2. For water as the flowing fluid at 20C, ahydraulic conductivity of 9.66 m/s corresponds to a perme-ability of 1 darcy.5. ApparatusNOTE 1A schematic of the test equipment is shown in Fig. 1.5.1 Source of Constant PressureA pump or pressureintensifier shall be capab
21、le of providing an additional amountof water to the water-filled tubing string and packed-off testinterval to produce a constant pressure of up to 1 MPA (145psi) in magnitude, preferably with a rise time of less than 1 %of one half of the flow rate decay (Q/Qo= 0.5).5.2 PackersHydraulically actuated
22、 packers are recom-mended because they produce a positive seal on the boreholewall and because of the low compressibility of water they arealso comparatively rigid. Each packer shall seal a portion of theborehole wall at least 0.5 m in length, with an applied pressureat least equal to the excess con
23、stant pressure to be applied tothe packed-off interval and less than the formation fracturepressure at that depth.5.3 Pressure TransducersThe pressure shall be measuredas a function of time, with the transducer located in thepacked-off test interval. The pressure transducer shall have anaccuracy of
24、at least 63 kPa (60.4 psi), including errorsintroduced by the recording system, and a resolution of at least1 kPa (0.15 psi).5.4 Flow MetersSuitable flow meters shall be providedfor measuring water flow rates in the range from 103cm3/s to103cm3/s. Commercially available flow meters are capable ofmea
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