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Metrology infrastructure for high-pressure gas and liquified hydrogen flows : a brief outline of the MetHyInfra project, measurement challenges, and first results
ID Böckler, H.-B. (Avtor), ID de Huu, M. (Avtor), ID Maury, Rémy (Avtor), ID Schmelter, S. (Avtor), ID Schakel, Menne D. (Avtor), ID Büker, Oliver (Avtor), ID Kutin, Jože (Avtor), ID Bobovnik, Gregor (Avtor), ID Wedler, C. (Avtor), ID Trusler, J. P. M. (Avtor), ID Thol, M. (Avtor), ID Weiss, S. (Avtor), ID Günz, C. (Avtor), ID Schumann, D. (Avtor), ID Gugole, F. (Avtor)

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Izvleček
This paper gives an overview of the ongoing Joint Research Project (JRP) 20IND11 “Metrology infrastructure for high pressure gas and liquefied hydrogen flows” (MetHyInfra), which will ensure traceability in the hydrogen distribution chain. For this purpose, very precise nozzles with well-defined geometries have been produced. In this project, Critical Flow Venturi Nozzles (CFVNs) will be traceably calibrated for the first time with hydrogen and pressures up to 100 MPa using a Coriolis Flow Meter (CFM) as a secondary standard. A CFM has been successfully calibrated with hydrogen against a gravimetric primary standard. Equations of State (EoS) are important for the high-pressure calibration of the nozzles, but also for Computational Fluid Dynamics (CFD) simulations. With regard to CFD, a numerical model has been developed to simulate high pressure hydrogen flow in the CFVN. In a parameter study, non-ideal nozzle shapes are investigated using a shape variation parameter. New Speed of Sound (SoS) measurements were conducted at temperatures from 273 to 323 K and pressures from 1 to 100 MPa. These new data were then used to develop a new EoS for normal hydrogen, optimized for gas phase calculations. In addition to gaseous hydrogen, the project has a strong focus on liquefied hydrogen. Here a three-pronged approach allows traceable measurements. Each of the approaches presented is based on a unique flow calibration principle and relies on independent traceability schemes. The results of the project will ensure traceable measurements and thus a higher level of confidence among end users.

Jezik:Angleški jezik
Ključne besede:hydrogen, critical flow Venturi nozzles, CFD, equation of state, traceability
Vrsta gradiva:Članek v reviji
Tipologija:1.01 - Izvirni znanstveni članek
Organizacija:FS - Fakulteta za strojništvo
Status publikacije:Objavljeno
Različica publikacije:Objavljena publikacija
Leto izida:2024
Št. strani:12 str.
Številčenje:Vol. 232, art. 114675
PID:20.500.12556/RUL-155720 Povezava se odpre v novem oknu
UDK:532
ISSN pri članku:1873-412X
DOI:10.1016/j.measurement.2024.114675 Povezava se odpre v novem oknu
COBISS.SI-ID:192327939 Povezava se odpre v novem oknu
Datum objave v RUL:12.04.2024
Število ogledov:359
Število prenosov:56
Metapodatki:XML DC-XML DC-RDF
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Gradivo je del revije

Naslov:Measurement
Založnik:Elsevier, International Measurement Confederation
ISSN:1873-412X
COBISS.SI-ID:23272709 Povezava se odpre v novem oknu

Licence

Licenca:CC BY 4.0, Creative Commons Priznanje avtorstva 4.0 Mednarodna
Povezava:http://creativecommons.org/licenses/by/4.0/deed.sl
Opis:To je standardna licenca Creative Commons, ki daje uporabnikom največ možnosti za nadaljnjo uporabo dela, pri čemer morajo navesti avtorja.

Sekundarni jezik

Jezik:Slovenski jezik
Ključne besede:vodik, kritične Venturijeve šobe, računalniška dinamika tekočin, enačba stanja, sledljivost

Projekti

Financer:Drugi - Drug financer ali več financerjev
Program financ.:Participating States
Številka projekta:20IND11
Naslov:Metrology infrastructure for high-pressure gas and liquified hydrogen flows
Akronim:MetHyInfra

Financer:EC - European Commission
Program financ.:Horizon 2020 research and innovation programme

Financer:Drugi - Drug financer ali več financerjev
Program financ.:Ministry of Economic Affairs and Climate Policy of the Netherlands

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