Zugriffsnummer 53421
Dokumenttyp Bericht Freier Zugang
Peer Review unbekannt
Sprache Englisch
Titel Intercomparison of flow facilities for dynamic flow changes based on WLTC and WHTC
Autor(in); Institution
Borchling, Alexander; 1.5, Flüssigkeiten, PTB-Braunschweig
Kroner, Corinna; 1.5, Flüssigkeiten, PTB-Braunschweig
Bissig, Hugo; Eidgenössisches Institut für Metrologie (METAS), Bern-Wabern, SWITZERLAND
Furuichi, Noriyuki; National Institute of Advanced Industrial Science and Technology (AIST), Tokyo, JAPAN
Malengo, Andrea; Istituto Nazionale di Ricerca Metrologica (INRIM), Torino, ITALY
Postrioti, Lucio; University of Perugia, Dipartimento di Ingegneria, Perugia, ITALY
Romeo, Raffaella; Istituto Nazionale di Ricerca Metrologica (INRIM), Torino, ITALY
Romieu, Kevin; Technical Center Industries Aérauliques et Thermiques (CETIAT), Villeurbanne, FRANCE
Warnecke, Heiko; 1.5, Flüssigkeiten, PTB-Braunschweig
Yoshida, Taiki; National Institute of Advanced Industrial Science and Technology (AIST), Tokyo, JAPAN
Quelle/Jahr (2024), 1 - 43
Schriftenreihe PTB-Bericht PTB-M-8
ISSN 2751-6598
ISBN 978-3-944659-40-4
DOI
Berichtsnummer PTB-M-8
Verlag Braunschweig: Physikalisch-Technische Bundesanstalt (PTB)
Freie Schlagworte Dynamic flow measurement ; intercomparison ; fluid flow ; dynamic test bench ; water ; calibration oil ; EMPIR 20IND3 ; SAFEST
Zusammenfassung Up to now, the calibration of flow meters has been conducted at constant flow rates. However, the operational context of flow meters is characterised by the fact that they are exposed to variable, often rapidly changing flow rates. It is thus conceivable that future regulations may be introduced with a view to ensuring the performance of dynamic calibrations or the evaluation of flow meters with dynamic flow profiles. In order to facilitate such measurements, it is necessary to develop test benches that are capable of generating dynamic flow profiles of the requisite quality. Consequently, as part of the EMPIR project "Safest" (20IND13), test benches capable of generating predefined flow profiles were developed at various research institutes. In order to achieve this, a number of different techniques were employed, including cavitation nozzles, valves, a piston system and injectors. A transfer setup based on a Coriolis flowmeter was developed to facilitate comparative analysis of the different realisation techniques. The transfer set was subjected to comprehensive characterisation in the PTB pilot laboratory and subsequently transferred to the project partners. The partners conducted both static measurements and dynamic measurements with the defined profiles. Given the project's focus on the automotive sector, a variety of vehicle profiles based on the Worldwide harmonized Light Duty Test Cycle (WLTC) and the World Harmonized Transient Cycle (WHTC) were employed, with tests conducted using both calibration oil according to ISO 4113 and water. In the dynamic measurements, the mass-dependent pulses of the flow meter were recorded in order to determine the flow rate over time. Subsequently, the data was analysed at PTB, where three parameters were defined for comparing the test benches: the standard deviation, the mean of the residuals and the deviation of the mass. The results for these parameters show that injectors are very suitable for achieving the vehicle profiles. The use of a piston system gave acceptable results. The valve implementation cannot be fully assessed due to lack of data. However, based on the current database, the technology appears to be of limited suitability. Conversely, the desired profiles could not be achieved with cavitation nozzles.
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Forschungsprojekt 20IND13: SAFEST: Sustainable advanced flow meter calibration for the transport sector
Förderinformationen (1) Förderername: European Commission (EC)
Förderer ID: 0000 0001 2242 8989
Förderer ID Typ: ISNI
Förderprogramm: EMPIR 2020 Industry
Titel der Förderung: 20IND13: SAFEST: Sustainable advanced flow meter calibration for the transport sector
Förderungsnummer: 20IND13

Zitierung

Borchling, A., Kroner, C., Bissig, H., Furuichi, N., Malengo, A., Postrioti, L., Romeo, R., Romieu, K., Warnecke, H., & Yoshida, T. (2024). Intercomparison of flow facilities for dynamic flow changes based on WLTC and WHTC (Report No. PTB-M-8). Braunschweig: Physikalisch-Technische Bundesanstalt (PTB). https://doi.org/10.7795/110.20241125

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