ASTM G57-2006(2012) Standard Test Method for Field Measurement of Soil Resistivity Using the Wenner Four-Electrode Method《使用Wenner4电极法现场测量土壤电阻率的标准试验方法》.pdf
《ASTM G57-2006(2012) Standard Test Method for Field Measurement of Soil Resistivity Using the Wenner Four-Electrode Method《使用Wenner4电极法现场测量土壤电阻率的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM G57-2006(2012) Standard Test Method for Field Measurement of Soil Resistivity Using the Wenner Four-Electrode Method《使用Wenner4电极法现场测量土壤电阻率的标准试验方法》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: G57 06 (Reapproved 2012)Standard Test Method forField Measurement of Soil Resistivity Using the WennerFour-Electrode Method1This standard is issued under the fixed designation G57; the number immediately following the designation indicates the year of originaladoption or, in the case of
2、 revision, the year of last revision. A number in parentheses indicates the year of last reapproval. A superscriptepsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the equipment and proceduresfor the field measurement of soil resistivi
3、ty, both in situ and forsamples removed from the ground, for use in the control ofcorrosion of buried structures.1.2 To convert cm (metric unit) to metre (SI unit), divide by100.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is therespons
4、ibility 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:2.1.1 resistivitythe electrical resistance between oppositefaces of a unit cube of material; the reciprocal
5、 of conductivity.Resistivity is used in preference to conductivity as an expres-sion of the electrical character of soils (and waters) since it isexpressed in whole numbers.2.1.1.1 DiscussionResistivity measurements indicate therelative ability of a medium to carry electrical currents. Whena metalli
6、c structure is immersed in a conductive medium, theability of the medium to carry current will influence themagnitude of galvanic currents and cathodic protection cur-rents. The degree of electrode polarization will also affect thesize of such currents.3. Summary of Test Method3.1 The Wenner four-el
7、ectrode method requires that fourmetal electrodes be placed with equal separation in a straightline in the surface of the soil to a depth not exceeding 5 % ofthe minimum separation of the electrodes. The electrodeseparation should be selected with consideration of the soilstrata of interest. The res
8、ulting resistivity measurement repre-sents the average resistivity of a hemisphere of soil of a radiusequal to the electrode separation.3.2 A voltage is impressed between the outer electrodes,causing current to flow, and the voltage drop between the innerelectrodes is measured using a sensitive volt
9、meter. Alterna-tively, the resistance can be measured directly. The resistivity,r, is then:r, Vcm 5 2p aR a in cm!5 191.5 aR a in ft! (1)where:a = electrode separation, andR = resistance, V.Using dimensional analysis, the correct unit for resistivity isohm-centimetre.3.3 If the current-carrying (out
10、side) electrodes are notspaced at the same interval as the potential-measuring (inside)electrodes, the resistivity, r, is:r, Vcm 5 95.76 bR/S1 2bb 1 aD(2)where:b = outer electrode spacing, ft,a = inner electrode spacing, ft, andR = resistance, V.or:r, Vcm 5pbR/S1 2bb 1 aD(3)where:b = outer electrode
11、 spacing, cm,a = inner electrode spacing, cm, andR = resistance, V.3.4 For soil contained in a soil box similar to the one shownin Fig. 1, the resistivity, r, is:r, Vcm 5 RA/a (4)1This test method is under the jurisdiction of ASTM Committee G01 onCorrosion of Metals and is the direct responsibility
12、of Subcommittee G01.10 onCorrosion in Soils.Current edition approved May 1, 2012. Published June 2012. Originallyapproved in 1978. Last previous edition approved in 2006 as G5706. DOI:10.1520/G0057-06R12.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2
13、959, United States.where:R = resistance, V,A = cross sectional area of the container perpendicular tothe current flow, cm2, anda = inner electrode spacing, cm.NOTE 1The spacing between the inner electrodes should be measuredfrom the inner edges of the electrode pins, and not from the center of theel
14、ectrodes.4. Significance and Use4.1 Measurement of soil resistivity is used for the control ofcorrosion of buried structures. Soil resistivity is used both forthe estimation of expected corrosion rates and for the design ofcathodic protection systems. As an essential design parameterfor cathodic pro
15、tection systems, it is important to take as manymeasurements as necessary so as to get a sufficiently represen-tative characterization of the soil environment that the entireburied structure will experience.5. Apparatus5.1 At-Grade Measurements in situ:5.1.1 The equipment required for field resistiv
16、ity measure-ments to be taken at grade consists of a current source, asuitable voltmeter, ammeter, or galvanometer, four metalelectrodes, and the necessary wiring to make the connectionsshown in Fig. 2.5.1.2 Current SourceAn ac source, usually 97 Hz, ispreferred since the use of dc will cause polari
17、zation of mostmetal electrodes, resulting in error. The current can be providedby either a cranked ac generator or a vibrator-equipped dcsource.An unaltered dc source can be used if the electrodes areabraded to bright metal before immersion, polarity is regularlyreversed during measurement, and meas
18、urements are averagedfor each polarity.5.1.3 VoltmeterThe voltmeter shall not draw appreciablecurrent from the circuit to avoid polarization effects. A galva-nometer type of movement is preferred but an electronic typeinstrument will yield satisfactory results if the meter inputimpedance is at least
19、 10 megaohm.5.1.4 Electrodes fabricated from mild steel or martensiticstainless steel 0.475 to 0.635 cm (316 to14 in.) in diameter and30 to 60 cm (1 to 2 ft) in length are satisfactory for most fieldmeasurements. Both materials may require heat treatment sothat they are sufficiently rigid to be inse
20、rted in dry or gravelsoils. The electrodes should be formed with a handle and aterminal for wire attachment.5.1.5 Wiring, 18 to 22-gage insulated stranded copper wire.Terminals should be of good quality to ensure that low-resistance contact is made at the electrodes and at the meter.Where regular su
21、rveys are to be made at fixed electrodespacing, a shielded multiconductor cable can be fabricated withterminals permanently located at the required intervals.5.2 Soil Sample Measurement:5.2.1 The equipment required for the measurement of theresistivity of soil samples, either in the field or in thel
22、aboratory, is identical to that needed for at-grade measure-ments except that the electrodes are replaced with an inertcontainer containing four permanently mounted electrodes (seeFig. 1).5.2.2 If the current-carrying (outside) electrodes are notspaced at the same interval as the potential-measuring
23、 (inside)electrodes, the resistivity, r, is:FIG. 1 Typical Connections for Use of Soil Box with Various Types of InstrumentsG57 06 (2012)2r, Vcm 5 95.76 bR/S1 2bb 1 aD(5)where:b = outer electrode spacing, ft,a = inner electrode spacing, ft, andR = resistance, V.or:r, Vcm 5pbR/S1 2bb 1 aD(6)where:b =
24、 outer electrode spacing, cma = inner electrode spacing, cm, andR = resistance, V.5.2.3 The dimensions of the box can be established so thatresistivity is read directly from the voltmeter without furthercalculation. The box should be readily cleanable to avoidcontamination by previous samples.6. Sta
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