NF EN ISO 5167-4

NF EN ISO 5167-4

June 2003
Standard Cancelled

Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 4 : Venturi tubes

ISO 5167-4:2003 specifies the geometry and method of use (installation and operating conditions) of Venturi tubes when they are inserted in a conduit running full to determine the flowrate of the fluid flowing in the conduit. ISO 5167-4:2003 also provides background information for calculating the flow-rate and is applicable in conjunction with the requirements given in ISO 5167-1. ISO 5167-4:2003 is applicable only to Venturi tubes in which the flow remains subsonic throughout the measuring section and where the fluid can be considered as single-phase. In addition, each of these devices can only be used within specified limits of pipe size, roughness, diameter ratio and Reynolds number. ISO 5167-4:2003 is not applicable to the measurement of pulsating flow. It does not cover the use of Venturi tubes in pipes sized less than 50 mm or more than 1 200 mm, or for where the pipe Reynolds numbers are below 20 000. ISO 5167-4:2003 deals with the three types of classical Venturi tubes: cast, machined and rough welded sheet-iron. A Venturi tube is a device which consists of a convergent inlet connected to a cylindrical throat which is in turn connected to a conical expanding section called the "divergent". The differences between the values of the uncertainty of the discharge coefficient for the three types of classical Venturi tube show, on the one hand, the number of results available for each type of classical Venturi tube and, on the other hand, the more or less precise definition of the geometric profile. The values are based on data collected many years ago. Venturi nozzles (and other nozzles) are dealt with in ISO 5167-3.

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Main informations

Collections

National standards and national normative documents

Publication date

June 2003

Number of pages

32 p.

Reference

NF EN ISO 5167-4

ICS Codes

17.120.10   Flow in closed conduits

Classification index

X10-102-4

Print number

1 - 07/08/2003

International kinship

European kinship

EN ISO 5167-4:2003
Sumary
Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 4 : Venturi tubes

ISO 5167-4:2003 specifies the geometry and method of use (installation and operating conditions) of Venturi tubes when they are inserted in a conduit running full to determine the flowrate of the fluid flowing in the conduit.

ISO 5167-4:2003 also provides background information for calculating the flow-rate and is applicable in conjunction with the requirements given in ISO 5167-1.

ISO 5167-4:2003 is applicable only to Venturi tubes in which the flow remains subsonic throughout the measuring section and where the fluid can be considered as single-phase. In addition, each of these devices can only be used within specified limits of pipe size, roughness, diameter ratio and Reynolds number. ISO 5167-4:2003 is not applicable to the measurement of pulsating flow. It does not cover the use of Venturi tubes in pipes sized less than 50 mm or more than 1 200 mm, or for where the pipe Reynolds numbers are below 20 000.

ISO 5167-4:2003 deals with the three types of classical Venturi tubes: cast, machined and rough welded sheet-iron.

A Venturi tube is a device which consists of a convergent inlet connected to a cylindrical throat which is in turn connected to a conical expanding section called the "divergent". The differences between the values of the uncertainty of the discharge coefficient for the three types of classical Venturi tube show, on the one hand, the number of results available for each type of classical Venturi tube and, on the other hand, the more or less precise definition of the geometric profile. The values are based on data collected many years ago. Venturi nozzles (and other nozzles) are dealt with in ISO 5167-3.

Replaced standards (2)
NF EN ISO 5167-1
November 1995
Standard Cancelled
Measurement of fluid flow by means of pressure differential devices. Part 1 : orifice plates, nozzles and venturi tubes inserted in circular cross-section conduits running full.

NF EN ISO 5167-1/A1
October 1998
Standard Cancelled
Mesure de débit des fluides au moyen d'appareils déprimogènes - Partie 1 : diaphragmes, tuyères et tubes de venturi insérés dans des conduites en charge de section circulaire

Ce premier amendement à la norme ISO 5167-1:1991, permet un calcul amélioré du coefficient de décharge C. En outre, ce coefficient peut désormais être appliqué pour des nombres de Reynolds rapportés au diamètre de la conduite inférieures à 4 000 d'une part et d'autre part le rapport de diamètre beta = d/D doit être toujours supérieur ou égal à 0,10 et inférieur ou égal à 0,75.

Standard replaced by (1)
NF EN ISO 5167-4
June 2022
Standard Current
Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 4: Venturi tubes

<p>This document specifies the geometry and method of use (installation and operating conditions) of Venturi tubes[1] when they are inserted in a conduit running full to determine the flow rate of the fluid flowing in the conduit.</p> <p>This document also provides background information for calculating the flow rate and is applicable in conjunction with the requirements given in ISO 5167-1.</p> <p>This document is applicable only to Venturi tubes in which the flow remains subsonic throughout the measuring section and where the fluid can be considered as single-phase. In addition, Venturi tubes can only be used uncalibrated in accordance with this standard within specified limits of pipe size, roughness, diameter ratio and Reynolds number, or alternatively they can be used across their calibrated range. This document is not applicable to the measurement of pulsating flow. It does not cover the use of uncalibrated Venturi tubes in pipes sized less than 50 mm or more than 1 200 mm, or where the pipe Reynolds numbers are below 2 × 10<sup>5</sup>.</p> <p>This document deals with the three types of classical Venturi tubes:</p> <p>a) “as cast”;</p> <p>b) machined;</p> <p>c) fabricated (also known as “rough-welded sheet-iron”).</p> <p>A Venturi tube consists of a convergent inlet connected to a cylindrical throat which is in turn connected to a conical expanding section called the divergent section (or alternatively the diffuser). Venturi nozzles (and other nozzles) are dealt with in ISO 5167-3.</p> <p>NOTE       In the USA the classical Venturi tube is sometimes called the Herschel Venturi tube.</p> <p> </p> <p>[1]   In the USA the classical Venturi tube is sometimes called the Herschel Venturi tube.</p>

Table of contents
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  • Avant-propos
    iv
  • Introduction
    v
  • Domaine d'application
  • 2 Références normatives
    2
  • 3 Termes, définitions et symboles
    2
  • 4 Principes de la méthode de mesurage et mode de calcul
    2
  • 5 Tubes de Venturi classiques
    3
  • 5.1 Domaine d'application
    3
  • 5.2 Forme générale
    3
  • 5.3 Matériau et fabrication
    7
  • 5.4 Prises de pression
    8
  • 5.5 Coefficient de décharge, C
    9
  • 5.6 Coefficient de détente, e
    10
  • 5.7 Incertitude sur le coefficient de décharge C
    10
  • 5.8 Incertitude sur le coefficient de détente e
    10
  • 5.9 Perte de pression
    10
  • 6 Exigences d'installation
    12
  • 6.1 Généralités
    12
  • 6.2 Longueurs droites minimales d'amont et d'aval à installer entre différents accessoires et le tube de Venturi
    12
  • 6.3 Conditionneurs d'écoulement
    15
  • 6.4 Exigences spécifiques supplémentaires d'installation pour les tubes de Venturi classiques
    16
  • Annexe A (informative) Tableau des coefficients de détente
    11
  • Annexe B (informative) Tubes de Venturi classiques en dehors du domaine couvert par l'ISO 5167- 4
    18
  • Annexe C (informative) Perte de pression dans un tube de Venturi classique
    22
  • Bibliographie
    24
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