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BS EN ISO 5167-3:2020

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full Nozzles and Venturi nozzles

Available format(s)

Hardcopy , PDF

Superseded date

07-11-2022

Superseded by

BS EN ISO 5167-3:2022

Language(s)

English

Published date

15-09-2020

€338.90
Excluding VAT

Committee
CPI/30/2
DocumentType
Standard
Pages
52
PublisherName
British Standards Institution
Status
Superseded
SupersededBy
Supersedes

This document specifies the geometry and method of use (installation and operating conditions) of nozzles and Venturi nozzles when they are inserted in a conduit running full to determine the flowrate of the fluid flowing in the conduit.This document also provides background information for calculating the flowrate and is applicable in conjunction with the requirements given in ISO5167-1.This document is applicable to nozzles and Venturi nozzles in which the flow remains subsonic throughout the measuring section and where the fluid can be considered as single-phase. In addition, each of the devices can only be used within specified limits of pipe size and Reynolds number. It is not applicable to the measurement of pulsating flow. It does not cover the use of nozzles and Venturi nozzles in pipe sizes less than 50mm or more than 630mm, or where the pipe Reynolds numbers are below 10000.This document deals with three types of standard nozzles: ISA1932 5 5 ISA is the abbreviation for the International Federation of the National Standardizing Associations, which was superseded by ISO in 1946. nozzle;

the long radius nozzle 6 6 The long radius nozzle differs from the ISA 1932 nozzle in shape and in the position of the pressure tappings. ;

the throat-tapped nozzle the Venturi nozzle. The three types of standard nozzle are fundamentally different and are described separately in this document. The Venturi nozzle has the same upstream face as the ISA1932 nozzle, but has a divergent section and, therefore, a different location for the downstream pressure tappings, and is described separately. This design has a lower pressure loss than a similar nozzle. For all of these nozzles and for the Venturi nozzle direct calibration experiments have been made, sufficient in number, spread and quality to enable coherent systems of application to be based on their results and coefficients to be given with certain predictable limits of uncertainty.

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