ASTM E2536-2009 Standard Guide for Assessment of Measurement Uncertainty in Fire Tests《评估防火试验中不确定度测量用的标准指南》.pdf
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1、Designation: E2536 09Standard Guide forAssessment of Measurement Uncertainty in Fire Tests1This standard is issued under the fixed designation E2536; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A numb
2、er in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.INTRODUCTIONThe objective of a measurement is to determine the value of the measurand, that is, the physicalquantity that needs to be measured. Every m
3、easurement is subject to error, no matter how carefullyit is conducted. The (absolute) error of a measurement is defined in Eq 1.All terms in Eq 1 have the units of the physical quantity that is measured. This equation cannot beused to determine the error of a measurement because the true value is u
4、nknown, otherwise ameasurement would not be needed. In fact, the true value of a measurand is unknowable because itcannot be measured without error. However, it is possible to estimate, with some confidence, theexpected limits of error. This estimate is referred to as the uncertainty of the measurem
5、ent andprovides a quantitative indication of its quality.Errors of measurement have two components, a random component and a systematic component.The former is due to a number of sources that affect a measurement in a random and uncontrolledmanner. Random errors cannot be eliminated, but their effec
6、t on uncertainty is reduced by increasingthe number of repeat measurements and by applying a statistical analysis to the results. Systematicerrors remain unchanged when a measurement is repeated under the same conditions. Their effect onuncertainty cannot be completely eliminated either, but is redu
7、ced by applying corrections to accountfor the error contribution due to recognized systematic effects. The residual systematic error isunknown and shall be treated as a random error for the purpose of this standard.General principles for evaluating and reporting measurement uncertainties are describ
8、ed in theGuide on Uncertainty of Measurements (GUM). Application of the GUM to fire test data presentssome unique challenges. This standard shows how these challenges can be overcome. An example toillustrate application of the guidelines provided in this standard can be found in Appendix X1.y 2 Y (1
9、)where: = measurement error;y = measured value of the measurand; andY = true value of the measurand.1. Scope1.1 This guide covers the evaluation and expression ofuncertainty of measurements of fire test methods developedand maintained byASTM International, based on the approachpresented in the GUM.
10、The use in this process of precision dataobtained from a round robin is also discussed.1.2 The guidelines presented in this standard can also beapplied to evaluate and express the uncertainty associated withfire test results. However, it may not be possible to quantify theuncertainty of fire test re
11、sults if some sources of uncertaintycannot be accounted for. This problem is discussed in moredetail in Appendix X2.1.3 Application of this guide is limited to tests that providequantitative results in engineering units. This includes, forexample, methods for measuring the heat release rate ofburnin
12、g specimens based on oxygen consumption calorimetry,such as Test Method E1354.1.4 This guide does not apply to tests that provide results inthe form of indices or binary results (for example, pass/fail).For example, the uncertainty of the Flame Spread Indexobtained according to Test Method E84 canno
13、t be determined.1.5 In some cases additional guidance is required to supple-ment this standard. For example, the expression of uncertaintyof heat release rate measurements at low levels requiresadditional guidance and uncertainties associated with samplingare not explicitly addressed.1.6 This fire s
14、tandard cannot be used to provide quantitativemeasures.1This guide is under the jurisdiction ofASTM Committee E05 on Fire Standardsand is the direct responsibility of Subcommittee E05.31 on Terminology andServices / Functions.Current edition approved Oct. 1, 2009. Published November 2009. Originally
15、approved in 2006. Last previous edition approved in 2006 as E2536-06. DOI:10.1520/E2536-09.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.1.7 The values stated in SI units are to be regarded asstandard. No other units of measurement
16、 are included in thisstandard.2. Referenced Documents2.1 ASTM Standards:2E84 Test Method for Surface Burning Characteristics ofBuilding MaterialsE119 Test Methods for Fire Tests of Building Constructionand MaterialsE176 Terminology of Fire StandardsE230 Specification and Temperature-Electromotive Fo
17、rce(EMF) Tables for Standardized ThermocouplesE691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test MethodE1354 Test Method for Heat and Visible Smoke ReleaseRates for Materials and Products Using an Oxygen Con-sumption Calorimeter2.2 ISO Standards:3ISO/IEC 17025
18、General requirements for the competence oftesting and calibration laboratoriesGUM Guide to the expression of uncertainty in measure-ment3. Terminology3.1 Definitions: For definitions of terms used in this guideand associated with fire issues, refer to the terminologycontained in Terminology E176. Fo
19、r definitions of terms usedin this guide and associated with precision issues, refer to theterminology contained in Practice E691.3.2 Definitions of Terms Specific to This Standard:3.2.1 accuracy of measurement, ncloseness of the agree-ment between the result of a measurement and the true value ofth
20、e measurand.3.2.2 combined standard uncertainty, nstandard uncer-tainty of the result of a measurement when that result isobtained from the values of a number of other quantities, equalto the positive square root of a sum of terms, the terms beingthe variances or covariances of these other quantitie
21、s weightedaccording to how the measurement result varies with changesin these quantities.3.2.3 coverage factor, nnumerical factor used as a mul-tiplier of the combined standard uncertainty in order to obtainan expanded uncertainty.3.2.4 error (of measurement), nresult of a measurementminus the true
22、value of the measurand; error consists of twocomponents: random error and systematic error.3.2.5 expanded uncertainty, nquantity defining an inter-val about the result of a measurement that may be expected toencompass a large fraction of the distribution of values thatcould reasonably be attributed
23、to the measurand.3.2.6 measurand, nquantity subject to measurement.3.2.7 precision, nvariability of test result measurementsaround reported test result value.3.2.8 random error, nresult of a measurement minus themean that would result from an infinite number of measure-ments of the same measurand ca
24、rried out under repeatabilityconditions.3.2.9 repeatability (of results of measurements),ncloseness of the agreement between the results of succes-sive independent measurements of the same measurand carriedout under repeatability conditions.3.2.10 repeatability conditions, non identical test materia
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