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Comparison of Standards for Calculating Flow Rate and Amount with ISO Standards

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Measurement Techniques Aims and scope

Abstract

ISO documents and standards are compared for calculating flow rates and amounts on the basis of gas distribution data for Moscow region. It is shown to be best to introduce Changes 1 into MI 2588-2000, which have been accepted by most of the TC 30 countries.

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References

  1. GOST 8.563.1-97, The State System of Measurements: Measuring Flow Rate and Amount of Liquids and Gases byMeans of Variable Pressure Differentials: Diaphragms, ISA 1932 Nozzles, and Venturi Tubes Established in CircularPipes Running Full: Technical Conditions [in Russian].

  2. ISO 5167-1-1991(E): Measurement of Fluid Flow by Means of Pressure Differential Devices. P. 1: Orifice Plates,Nozzles and Venturi Tubes Inserted in Circular Cross-Sections Running Full (1991), 12–15.

  3. ISO/DIS 5167, Changes 1 to International Standard ISO 5167-1 [in Russian].

  4. Orifice Metering of Natural Gas and Other Related Hydrocarbon Fluid/AGA (Report N 3), American Petroleum Institute (API 14/3), Gas Processors Association (GPA 8185-92), third edition, November (1992).

  5. VDI 2040, Blatt 1.1971: Berechnungsgrundlagen für die Durchflussmessung mit Drosselgeräten. Durchflusszahlenund Expansionszanlen genormter Drosselgeräte und Abweichungen von den Normvorschriften.

  6. ISO/TR 12767, Measurement of Flow by Means of Pressure Differential Devices: Guidelines to the Effect ofDeparture from the Specification and Operating Conditions Given in ISO 5167-1, first edition (1998), 07–15.

  7. MI 2588-2000, The State System of Measurements: Flow Rate and Amount of Liquids and Gases: Methods ofMaking Measurements by Means of Systems with Constriction Devices for Values of the Equivalent Roughness of the Measurement Pipes R r 104/D More than 30.

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Belyaev, B.M., Patrikeev, V.G. & Lichko, A.A. Comparison of Standards for Calculating Flow Rate and Amount with ISO Standards. Measurement Techniques 44, 1161–1165 (2001). https://doi.org/10.1023/A:1014029821580

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  • DOI: https://doi.org/10.1023/A:1014029821580

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