Numerical Modelling of a Turbine Flow Meter Used as Part of the Hydrogen Compressor System

Author:

Orlova S.1,Devdas T. N.1,Vasudev V. P. K.1,Upnere S.2

Affiliation:

1. 1 Institute of Physical Energetics , 14, Dzerbenes Str., Riga, LV-1006 , Latvia

2. 2 Institute of Mechanics and Mechanical Engineering , Riga Technical University 6B , Kipsala Str., Riga, LV-1048 Latvia

Abstract

Abstract This study analyses a turbine flow meter in the context of a hydrogen compressor system. Basic concepts of turbine flow meter, accuracy and linearity, as well as calibration are described. Physical experimental testing scheme is presented in the paper. The viscosity of the fluid is one of the major factors that affects the performance of turbine flow meters. Numerical modelling experiments for different fluids with different viscosities are performed. Performed numerical modelling experiments give a possibility to continue research into the hydrogen compression system.

Publisher

Walter de Gruyter GmbH

Subject

General Medicine

Reference15 articles.

1. Bezrukovs, V., Bezrukovs, Vl., Bezrukovs, D., Konuhova, M., & Berzins, A. (2022). Hydrogen Hydraulic Compression Device. LVP2022000071, 31.08.2022.

2. Benard, Ing C. J. (1988). Handbook of fluid flowmetering (1st ed.). UK: Trade & Technical Press.

3. International Organization of Legal Metrology. (n.d.). OIML Website. Available at https://www.oiml.org

4. European Association of National Metrology Institutes. (n.d.) Metrology for Regulation Event. Available at https://www.euramet.org

5. Guo, S., Sun, L., Zhang, T., Yang, W., & Yang, Z. (2013). Analysis of Viscosity Effect on Turbine Flowmeter Performance Based on Experiments and CFD Simulations. Flow Meas. Instrum., 34, 42–52. doi: 10.1016/j. flowmeasinst.2013.07.016.

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