ASTM C1718-2010 Standard Test Method for Nondestructive Assay of Radioactive Material by Tomographic Gamma Scanning《使用层析成象γ扫描法对放射性物质进行无损分析的标准试验方法》.pdf
《ASTM C1718-2010 Standard Test Method for Nondestructive Assay of Radioactive Material by Tomographic Gamma Scanning《使用层析成象γ扫描法对放射性物质进行无损分析的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM C1718-2010 Standard Test Method for Nondestructive Assay of Radioactive Material by Tomographic Gamma Scanning《使用层析成象γ扫描法对放射性物质进行无损分析的标准试验方法》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C1718 10Standard Test Method forNondestructive Assay of Radioactive Material byTomographic Gamma Scanning1This standard is issued under the fixed designation C1718; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the y
2、ear of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method describes the nondestructive assay(NDA) of gamma ray emitting radionuclides inside containersu
3、sing tomographic gamma scanning (TGS). High resolutiongamma ray spectroscopy is used to detect and quantify theradionuclides of interest. The attenuation of an external gammaray transmission source is used to correct the measurement ofthe emission gamma rays from radionuclides to arrive at aquantita
4、tive determination of the radionuclides present in theitem.1.2 The TGS technique covered by the test method may beused to assay scrap or waste material in cans or drums in the 1to 500 litre volume range. Other items may be assayed as well.1.3 The test method will cover two implementations of theTGS
5、procedure: (1) Isotope Specific Calibration that usesstandards of known radionuclide masses (or activities) todetermine system response in a mass (or activity) versuscorrected count rate calibration, that applies to only thosespecific radionuclides for which it is calibrated, and (2)Response Curve C
6、alibration that uses gamma ray standards todetermine system response as a function of gamma ray energyand thereby establishes calibration for all gamma emittingradionuclides of interest.1.4 This test method will also include a technique to extendthe range of calibration above and below the extremes
7、of themeasured calibration data.1.5 The assay technique covered by the test method isapplicable to a wide range of item sizes, and for a wide rangeof matrix attenuation. The matrix attenuation is a function ofthe matrix composition, photon energy, and the matrix density.The matrix types that can be
8、assayed range from lightcombustibles to cemented sludge or concrete. It is particularlywell suited for items that have heterogeneous matrix materialand non-uniform radioisotope distributions. Measured trans-mission values should be available to permit valid attenuationcorrections, but are not needed
9、 for all volume elements in thecontainer, for example, if interpolation is justified.1.6 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.7 This standard does not purport to address all of thesafety concerns, if any, associated
10、 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. Referenced Documents2.1 ASTM Standards:2C1030 Test Method for Determination of Plutonium Isoto-pic Comp
11、osition by Gamma-Ray SpectrometryC1128 Guide for Preparation of Working Reference Mate-rials for Use in Analysis of Nuclear Fuel Cycle MaterialsC1490 Guide for the Selection, Training and Qualificationof Nondestructive Assay (NDA) PersonnelC1156 Guide for Establishing Calibration for a Measure-ment
12、Method Used to Analyze Nuclear Fuel Cycle Mate-rialsC1592 Guide for Nondestructive Assay MeasurementsC1673 Terminology of C26.10 NondestructiveAssay Meth-ods2.2 ANSI Standards:3ANSI N15.37 Guide to the Automation of NondestructiveAssay Systems for Nuclear Materials Control2.3 Nuclear Regulatory Comm
13、ission (NRC) Guides4NRC Guide 5.9 Guidelines for Germanium SpectroscopySystems for Measurement of Special Nuclear Material,Revision 2, December 19831This test method is under the jurisdiction of ASTM Committee C26 on NuclearFuel Cycle and is the direct responsibility of Subcommittee C26.10 on NonDes
14、tructive Assay.Current edition approved Jan. 1, 2010. Published February 2010. DOI: 10.1520/C1718-10.2For 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 D
15、ocument Summary page onthe ASTM website.3Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org.4Available from U.S. Nuclear Regulatory Commission, Washington, DC 20555-0001, http:/nrc.gov.1Copyright ASTM International, 100 Barr
16、Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.NRC Guide 5.53 Qualification, Calibration, and Error Esti-mation Methods for Nondestructive Assay, Revision 1,February 19843. Terminology3.1 Definitions: Terms shall be defined in accordance withTerminology C1673 except for t
17、he following:3.1.1 Algebraic Reconstruction Technique (ART), nimagereconstruction technique typically used in the TGS method toobtain the transmission map as a function of atomic number (Z)and gamma ray energy (1).53.1.2 aperture, nthe terminology applies to the width ofthe detector collimator. In t
18、he case of a diamond collimator, theaperture is defined as the distance between the parallel sides ofthe diamond. In some designs, the detector collimator can be atruncated diamond that consists of flat trim pieces at the leftand right corners of the diamond. This type of collimator isusually design
19、ed with the distance between the trim pieces setequal to the distance between the parallel surfaces (aperture).3.1.3 voxel, nvolume element; the three-dimensional ana-log of a two-dimensional pixel. Typically 5 cm on a side for a208 L drum.3.1.3.1 DiscussionThe full container volume will be di-vided
20、 into a number of smaller volume elements (typically1002000 or typically 0.1 % of the total container volume),which are not necessarily rectilinear.3.1.4 Beers Law, nthe law states that the fraction ofuncollided gamma rays transmitted through layers of equalthickness of an absorber is a constant. Ma
21、thematically, BeersLaw can be expressed as follows:T 5II05 expHr r tJIn the above equation, I0is the intensity of a pencil beam ofgamma rays incident on a uniform layer of absorber, I is thetransmitted intensity through the layer, /r is the mass attenu-ation coefficient of the absorber material, r i
22、s the density of theabsorber and t is the thickness of the layer. For a heterogeneousmaterial the exponent would be integrated along the ray path.3.1.5 expectation maximization (EM), nimage reconstruc-tion technique typically used in the TGS method to solve forthe emission map as a function of gamma
23、 ray energy (2, 3).3.1.6 grab (or view), na single measurement of the scan,where the scan sequence consists of measurements at variousheights, rotational positions, and translation positions of theassay item.3.1.7 map (transmission and emission), na voxel by voxelrecord of the matrix density or line
24、ar attenuation coefficient(transmission map) or a voxel by voxel record of radionuclidecontent (emission map).3.1.8 material basis set (or MBS), nthe method where thelinear attenuation coefficient map for a matrix material isdetermined in terms of 2 or 3 basis elements that span the Zrange of intere
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