BS 5857-2 4-1980 Methods for measurement of fluid flow in closed conduits using tracers - Measurement of gas flow - Transit time method using radioactive tracers《使用示踪剂的密封管道中流体流量的测量.pdf
《BS 5857-2 4-1980 Methods for measurement of fluid flow in closed conduits using tracers - Measurement of gas flow - Transit time method using radioactive tracers《使用示踪剂的密封管道中流体流量的测量.pdf》由会员分享,可在线阅读,更多相关《BS 5857-2 4-1980 Methods for measurement of fluid flow in closed conduits using tracers - Measurement of gas flow - Transit time method using radioactive tracers《使用示踪剂的密封管道中流体流量的测量.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD CONFIRMED JUNE1998 BS5857-2.4: 1980 ISO4053-IV: 1978 Methods for measurement of Fluid flow in closed conduits, using tracers Part2: Measurement of gas flow Section2.4 Transit time method using radioactive tracers ISO title: Measurement of gas flow in conduits Tracer methods PartIV:
2、Transit time method using radioactive tracers UDC 532.542:532.574.8:533.6.011:539.16BS5857-2.4:1980 This BritishStandard, having been prepared under the directionof the Industrial-process Measurementand Control Standards Committee, was published under the authority ofthe Executive Board and comesint
3、o effect on 31March1980 BSI12-1999 The following BSI references relate to the work on this standard: Committee referencePCL/2 Draft for comment77/28096DC ISBN 0 580 11250 0 Cooperating organizations The Industrial-process Measurement and Control Standards Committee, under whose direction this Britis
4、hStandard was prepared, consists of representatives from the following Government department and scientific and industrial organizations: British Gas Corporation British Industrial Measuring and Control Apparatus Manufacturers Association British Steel Corporation CBMPE (Council of British Manufactu
5、rers of Petroleum Equipment) Control and Automation Manufacturers Association (BEAMA) Department of Industry (Computers Systems and Electronics) Electrical, Electronic, Telecommunications and Plumbing Union Electricity Supply Industry in England and Wales* Electronic Engineering Association Engineer
6、ing Equipment Users Association* Institute of Measurement and Control Institution of Electrical Engineers Institution of Gas Engineers Oil Companies Materials Association Post Office Engineering Union Scientific Instrument Manufacturers Association Sira Institute The organizations marked with an ast
7、erisk in the above list, together with the following, were directly represented on the committee entrusted with the preparation of this BritishStandard: Department of Energy Gas Standards UnitedKingdom (Atomic Energy Authority) Amendments issued since publication Amd. No. Date of issue CommentsBS585
8、7-2.4:1980 BSI 12-1999 i Contents Page Cooperating organization Inside front cover National foreword ii 0 Introduction 1 1 Scope and field of application 1 2 Reference 1 3 Principle 1 4 Required conditions 1 5 Choice of measuring length 1 6 Procedure 3 7 Selection of tracer 5 8 Estimation of the unc
9、ertainties in flow-rate measurement 5 9 Example of flow-rate calculation 6 Figure 1 Effect of measuring length of straight pipe on ratio of meantransittime to dispersion of tracer 8 Figure 2 Methods for determining characteristic points 9 Table Most commonly used isotopes 6 Publications referred to
10、Inside back coverBS5857-2.4:1980 ii BSI 12-1999 National foreword This BritishStandard has been prepared under the direction of the Industrial-process Measurement and Control Standards Committee and is identical with ISO4053-IV:1978 “Measurement of gas flow in conduits Tracer methods PartIV: Transit
11、 time method using radioactive tracers” published by the International Organization for Standardization (ISO). Terminology and conventions. The text of the International Standard has been approved as suitable for publication, without deviation, as a BritishStandard. Some terminology and certain conv
12、entions are not identical with those used in BritishStandards; attention is especially drawn to the following. The comma has been used throughout as a decimal marker. In BritishStandards it is current practice to use a full point on the baseline as the decimal marker. Wherever the words “Internation
13、al Standard” appear, referring to this standard, they should be read as “BritishStandard”. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not
14、of itself confer immunity from legal obligations. Cross-reference International Standard Corresponding BritishStandard ISO4053-I:1977 BS5857 Methods for measurement of fluid flow in closed conduits, using tracers Part2 Measurement of gas flow Section2.1:1980 General (Identical) Summary of pages This
15、 document comprises a front cover, an inside front cover, pagesi andii, pages1 to10, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on the inside front cover.BS5857-2.4
16、:1980 BSI 12-1999 1 0 Introduction This International Standard is the fourth of a series of standards covering tracer methods of gas flow measurement in conduits. The complete series of standards is as follows: PartI: General; PartII: Constant rate injection method using non-radioactive tracers; Par
17、tIII: Constant rate injection method using radioactive tracers; PartIV: Transit time method using radioactive tracers. 1 Scope and field of application This International Standard specifies the transit time method using radioactive tracers for the measurement of gas flow in conduits. 2 Reference ISO
18、4053-I, Measurement of gas flow in conduits Tracer methods PartI: General. 3 Principle Flow-rate measurement by the transit time method (formerly called the “Allen velocity method”) is based on measuring the transit time of “labelled” particles between two cross-sections of the conduit a known dista
19、nce apart. Labelling of the fluid particles is achieved by injecting a tracer into the flow upstream of the two measurement cross-sections (i.e.detector positions) and the transit time is determined from the difference of the mean arrival times of the tracer at each of the detector positions. Under
20、certain conditions (see clause4), the volume flow-rate q v(see nomenclature in ISO4053-I) in the measurement section is given by: where V is the volume of the conduit between the detector positions; is the transit time of the labelled fluid particles. In general, the theoretical condition for the va
21、lidity of the formula is that the measuring section be “closed to diffusion” i.e.that the ratio of the local velocity to the longitudinal dispersion coefficient be equal at both ends of the measuring section. In practice, this condition is fulfilled when the conduit has a constant cross-section. The
22、 value ofis obtained by measuring the difference in abscissae of characteristic points (in theory, the centre of gravity, but in practice other characteristic points may be found, see6.7) of recorded distributions, corresponding to concentration/time distributions or their integrals, obtained at eac
23、h detector position. The signal from the detectors shall be proportional to the tracer concentration. The exact value of the proportionality constant and hence the concentration need not, however, be known. The mass flow-rate is calculated by determining simultaneously the volume flow-rate and the g
24、as density. 4 Required conditions 4.1 Tracer The tracer shall meet the general requirements defined in clause5 of ISO4053-I. A list of tracers generally used, with their advantages and disadvantages, is also given in the same clause. 4.2 Mixing of tracer The tracer shall be sufficiently mixed with t
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