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R137/2012-A-NL1-20.11 Rev. 6

Applicant
Pietro Fiorentini S.p.A.
Issuer
NL1
Issuing year
2023
Status
Valid

Source PDF (certificates/R137/2012/r137-2012-nl1-2020-11-rev6.pdf) · extracted by OCR from the digitalized tier of the corpus.

R137/2012-A-NL1-20.11 Rev. 6

OIML Certificate

OIML Member State The Netherlands

Number R137/2012-A-NL1-20.11 revision 6 Project number 3600874 Page 1 of 5

Issuing authority

NMi Certin B.V.

Person responsible: M.Ph.D. Schmidt

Applicant and Manufacturer

Pietro Fiorentini S.p.A. Via E.Fermi, 8/10 36057 Arcugnano (VI) Italy

Identification of the certified type

An ultrasonic gas meter Type: FSN-4P

Characteristics

See page 2 and further

This OIML Certificate is issued under scheme A

This Certificate attests the conformity of the above identified type (represented by the sample(s) identified in the OIML Type Evaluation Report) with the requirements of the following Recommendation of the International Organization of Legal Metrology (OIML):

R 137-1 (2012) "Gas meters"

Accuracy class

0,5 and/or 1,0 (depending on installation conditions & $ Q_{\min} $ flow rate)

This Certificate relates only to the metrological and technical characteristics of the type of measuring instrument covered by the relevant OIML International Recommendation identified above. This Certificate does not bestow any form of legal international approval.

Important note: Apart from the mention of the Certificate's reference number and the name of the OIML Member State in which the Certificate was issued, partial quotation of the Certificate and of the associated OIML Type Evaluation Report(s) is not permitted, although either may be reproduced in full.

Issuing Authority

NMi Certin B.V., OIML Issuing Authority NL1 6 July 2023

Certification Board

NMi Certin B.V.

Thijsseweg 11

2629 JA Delft

The Netherlands

T +31 88 636 2332

certin@nmi.nl

www.nmi.nl

This document is issued under the provision that no liability is accepted and that the applicant shall indemnify third-party liability.

Reproduction of the complete document only is permitted.

The notification of NMi Certin B.V. as Issuing Authority can be verified at www.oiml.org

OIML Certificate

Number R137/2012-A-NL1-20.11 revision 6 Project number 3600874 Page 2 of 5

The conformity was established by the results of tests and examinations provided in the associated reports:

  • No. NMi-16200107-01R1 dated 15 December 2016 that includes 52 pages.

  • No. NMi-1901574-01 dated 2 November 2017 that includes 13 pages.

  • No. NMi-2258343-01 dated 20 September 2019 that includes 17 pages.

  • No. NMi-2258343-02 dated 23 April 2020 that includes 11 pages.

  • No. NMi-2587679-01 dated 25 March 2021 that includes 14 pages.

  • No. NMi-2607480-01 dated 26 April 2021 that includes 36 pages.

  • No. NMi-3603909-01 dated 24 April 2023 that includes 30 pages.

  • No. NMi-2658517-01 dated 6 July 2023 that includes 18 pages.

  • No. NMi-3600874-01 dated 6 July 2023 that includes 30 pages.

Characteristics of the measuring instrument

In Table 1 the general characteristics of the measuring instrument are presented.

Table 2 gives an overview of the general characteristics of the family of instruments.

Table 1 General characteristics

Destined for the measurement ofGas volume
Environmental classesM1/E2 for class0,5M2/E2 for class1,0
Accuracy classSee table2
Maximum pressure153 bar(a)
Ambient temperature range-25...+55℃
Gas temperature range-25...+55℃
Designed forCondensing humidity
OrientationAll orientations
Power supply voltage18..28VDC
Transducer typeUSM3"&4"(V2):TypeFSN-L3-25USMnominal size≤12":TypeUIM-U2USMnominal size>12":TypeUIM-U5
Software identificationPartSoftware versionChecksum
Main version/FPGA version1.0.4/1.0.177A54A9D
Main version/FPGA version1.0.6/1.0.443F6D289
Main version/FPGA version1.0.7/1.0.4544882BB
Main version/FPGA version2.0.1/2.0.167D31506
Main version/FPGA version2.3.1/2.3.03C12C30A
Main version/FPGA version2.4.1/2.3.0B87E9BB9
Main version/FPGA version2.5.0/2.3.094AC0AE9

OIML Certificate

OIML Member State The Netherlands

Number R137/2012-A-NL1-20.11 revision 6

Project number 3600874

Page 3 of 5

Main version/FPGA version2.7.0/2.3.02A8D6FB7
Main version/CFPGA version/DFPGA version3.0.1/2.0.0.20/2.0.0.11440DC1CC

The meter consists of a cylindrical spool piece with 4 horizontal paths. Multiple configurations can be combined in a single housing:

  • 4 paths configuration Single meter;

  • 4+1 configuration 4 pay and 1 check;

  • 4+2 configuration 4 pay and 2 check;

  • 4+3 configuration 4 pay and 3 check;

  • 4+4 configuration Either as Pay and check or as 2 separate meters.

The 3" & 4" Variant 2 meter is only configurable as 4 paths single meter.

When the meter is equipped with a double meter configuration, the pay and check meter shall have a different indicator. A clear distinction between Pay and check indicator shall be present, both meters must have their own nameplate with unique serial number.

Table 2 General characteristics of the family of instruments

DiameterClass0,5or1,0Depending on installation conditionsClass1,0
Unidirectional or Bidirectional meterUnidirectional meter
Nominal size[-]Inner diameter[mm]Vmax[m/s]Vmin[m/s]Vt[m/s]Vmin[m/s]Vt[m/s]
3"/DN80(V2)[1]70~8035,000,511/10Vmax
4"/DN100(V2)[1]80~10533,50
3"/DN80(V1)[1]70~8035,000,511/10Vmax--
4"/DN100(V1)[1]80~10533,500,51--
6"/DN150130~15530,000,400,241/10Vmax
8"/DN200180~21030,000,30
10"/DN250230~26030,00
12"/DN300270~32030,00
14"/DN350300~34530,00
16"/DN400350~39030,00
18"/DN450380~44030,00
20"/DN500450~49030,00
24"/DN600520~59029,00
30"/DN750680~74028,00

Remarks:

[1] There are 2 variants of the 3" and 4" meter the class 1,0 Variant 2 (V2) is distinguishable by the squarish nature of the meter body while the FioSonic Original Variant 1 (V1) is distinguishable by the more rounded body see construction body drawings 11816/3-04 for Variant 1 and Variant 2.

OIML Certificate

Number R137/2012-A-NL1-20.11 revision 6 Project number 3600874 Page 4 of 5

The corresponding flow rates can be calculated as follows:

$$ Q = v \cdot \frac {1}{4} \cdot \pi \cdot D ^ {2} \cdot 3 6 0 0 $$

Where:

Q = flow rate [m $ ^{3} / \mathrm{h} ]$

v = velocity [m/s]

D = internal diameter [m]

Higher values of $ Q_{\min} $ and lower values of $ Q_{\max} $ are allowed on condition that $ Q_{\min}\leq0,05 $ $ Q_{\max} $ and $ Q_{\max}/Q_{t}\geq5. $

Installation conditions:

Installation of the gas meter

The meter needs to be installed according one of the following configurations for mild and/or severe flow disturbance:

  • Mild and severe flow disturbance, class 0,5:

Upstream: a minimum of 5D + NOVA 50E + 10D of straight pipe Downstream: a minimum of 4D straight pipe. The flow conditioner shall be a NOVA 50E compliant design.

  • Mild and severe flow disturbance, class 0,5:

O Upstream: a minimum of 5D + PTB Flow conditioner + 5D of straight inlet pipe Downstream: a minimum of 3D straight pipe. The flow conditioner shall be a PTB compliant design.

  • Mild flow disturbance, class 1,0:

O Upstream: a minimum of 2D + TI TWIN type flow conditioner + 3D of straight inlet pipe Downstream: a minimum of 3D straight pipe. The TI TWIN type flow conditioner shall be a PTB & NOVA 50E compliant design.

The detailed installation requirements and the construction of the TI TWIN type flow conditioner are recorded in EU-Type examination certificate T11816.

Thermowell

A thermowell may be mounted at 2D-5D from the outlet of the meter.

Bi-directional flow measurement

During conformity assessment it is sufficient to verify a bi-directional meter in one direction only. For bi-directional flow measurement the outlet pipe and flow conditioner shall be identical to the inlet. The installation of a temperature sensor is at 2-5D from the outlet of the meter. For bi-directional applications an additional temperature sensor can be installed 2-5D upstream of the meter. For bi-directional applications the meter and pipe spools including the thermo well(s), shall be calibrated as a meter package during the examination for putting into use of the gas meter.

For bidirectional meters $ V_{\mathrm{min}} $ limitations apply, see table 2.

OIML Certificate

OIML Member State The Netherlands

Number R137/2012-A-NL1-20.11 revision 6 Project number 3600874 Page 5 of 5

Alternative welded configuration of the gas meter

The central meter body can be welded directly onto the flanges or to inlet and outlet pipes. The welding may not cause more than a 3% diameter step. The meter shall be installed as stated in "Installation of the gas meter". The central meter body, including welded piping or welded flanges shall be calibrated as a meter package during the examination for putting into use of the gas meter.

Maintenance

A transducer path pair can be exchanged without deterioration of the metrological performance.

The electronics mainboard can be exchanged without deterioration of the metrological performance.

Revision history

RevisionDateDescription of the modification
Initial15 June 2020Initial issue
126 March 2021Update with TI TWIN type flow conditioner
226 April 2021Qmax/Qmin of specific meter sizes updated to 1:125 ratio
311 March 2022Update SW Version 2.5.0
46 March 2023Update SW Version 2.7.0
524 April 2023Fix Table 2
66 July 2023Update SW Version 3.0.1