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Erschienen in: Experiments in Fluids 6/2008

01.12.2008 | Research Article

Precise flow rate measurements of natural gas under high pressure with a laser Doppler velocity profile sensor

verfasst von: L. Büttner, C. Bayer, A. Voigt, J. Czarske, H. Müller, N. Pape, V. Strunck

Erschienen in: Experiments in Fluids | Ausgabe 6/2008

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Abstract

This paper reports about the first application of a laser Doppler velocity profile sensor for precise flow rate measurements of natural gas under high pressure. The profile sensor overcomes the limitations of conventional laser Doppler anemometry (LDA) namely the effect of spatial averaging and the effect of fringe spacing variation (virtual turbulence). It uses two superposed, fan-like interference fringe systems to determine the axial position of a tracer particle inside the LDA’s measurement volume. Consequently, a spatial resolution of about 1 μm can be achieved and the effect of virtual turbulence is nearly eliminated. These features predestine the profile sensor for flow rate measurements with high precision. Velocity profile measurements were performed at the German national standard for natural gas, one of the world′s leading test facilities for precision flow rate measurements. As a result, the velocity profile of the nozzle flow could be resolved more precisely than with a conventional LDA. Moreover, the measured turbulence intensity of the core flow was of 0.14% mean value and 0.07% minimum value, which is significantly lower than reference measurements with a conventional LDA. The paper describes the performed measurements, gives a discussion and shows possibilities for improvements. As the main result, the goal of 0.1% flow rate uncertainty seems possible by an application of the profile sensor.

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Literatur
2.
Zurück zum Zitat Westerweel J (1997) Fundamentals of digital particle image velocimetry. Meas Sci Technol 8:1379–1392CrossRef Westerweel J (1997) Fundamentals of digital particle image velocimetry. Meas Sci Technol 8:1379–1392CrossRef
3.
Zurück zum Zitat Kallweit S, Dues M, Müller U, Lederer T, Schroll M (2007) Einsatz der Particle Image Velocimetry zur Untersuchung von Rohrströmungen. 15th conference, Lasermethoden in der Strömungsmesstechnik” of the German Association for Laser Anemometry (GALA), (in German language). 4–6 September 2007, Rostock, Germany, pp 35.1–35.8. ISBN 978-3-86009-007-7 Kallweit S, Dues M, Müller U, Lederer T, Schroll M (2007) Einsatz der Particle Image Velocimetry zur Untersuchung von Rohrströmungen. 15th conference, Lasermethoden in der Strömungsmesstechnik” of the German Association for Laser Anemometry (GALA), (in German language). 4–6 September 2007, Rostock, Germany, pp 35.1–35.8. ISBN 978-3-86009-007-7
4.
Zurück zum Zitat Roehle I, Willert C (2001) Extension of Doppler global velocimetry to periodic flows. Meas Sci Technol 12:420–431CrossRef Roehle I, Willert C (2001) Extension of Doppler global velocimetry to periodic flows. Meas Sci Technol 12:420–431CrossRef
5.
Zurück zum Zitat Fischer A, Büttner L, Czarske J, Eggert M, Grosche G, Müller H (2007) Investigation of time-resolved single detector Doppler global velocimetry using sinusoidal laser frequency modulation. Meas Sci Technol 18:2529–2545CrossRef Fischer A, Büttner L, Czarske J, Eggert M, Grosche G, Müller H (2007) Investigation of time-resolved single detector Doppler global velocimetry using sinusoidal laser frequency modulation. Meas Sci Technol 18:2529–2545CrossRef
6.
Zurück zum Zitat Albrecht H, Borys M, Damaschke N, Tropea C (2002) Laser-Doppler and phase-Doppler measurement techniques. Springer, Heidelberg Albrecht H, Borys M, Damaschke N, Tropea C (2002) Laser-Doppler and phase-Doppler measurement techniques. Springer, Heidelberg
7.
Zurück zum Zitat Wendt G, Mickan B, Kramer R, Dopheide D (1996) Systematic investigation of pipe flows and installation effects using laser Doppler anemometry; Part I: profile measurements downstream of several pipe configurations and flow conditioners. Flow Meas Instrum 7(3/4):141–149CrossRef Wendt G, Mickan B, Kramer R, Dopheide D (1996) Systematic investigation of pipe flows and installation effects using laser Doppler anemometry; Part I: profile measurements downstream of several pipe configurations and flow conditioners. Flow Meas Instrum 7(3/4):141–149CrossRef
8.
Zurück zum Zitat Mickan B, Wendt G, Kramer R, Dopheide D (1996) Systematic investigation of pipe flows and installation effects using laser Doppler anemometry; Part II: the effect of disturbed flow profiles on turbine gas meters—a describing empirical model. Flow Meas Instrum 7(3/4):151–160CrossRef Mickan B, Wendt G, Kramer R, Dopheide D (1996) Systematic investigation of pipe flows and installation effects using laser Doppler anemometry; Part II: the effect of disturbed flow profiles on turbine gas meters—a describing empirical model. Flow Meas Instrum 7(3/4):151–160CrossRef
9.
Zurück zum Zitat Müller H, Strunck V, Mickan B, Kramer R, Dopheide D, Hotze H-J (2003) Optisches Durchflussnormal für HD-Erdgas: Voraussetzungen für einen LDA-Einsatz, 11. In: Conference, Lasermethoden in der Strömungsmeßtechnik of the German Association for Laser Anemometry (GALA), pp 8.1–8.6 (in German language), Braunschweig, Germany, 9–11 September 2003. ISBN 3-00-011903-5 Müller H, Strunck V, Mickan B, Kramer R, Dopheide D, Hotze H-J (2003) Optisches Durchflussnormal für HD-Erdgas: Voraussetzungen für einen LDA-Einsatz, 11. In: Conference, Lasermethoden in der Strömungsmeßtechnik of the German Association for Laser Anemometry (GALA), pp 8.1–8.6 (in German language), Braunschweig, Germany, 9–11 September 2003. ISBN 3-00-011903-5
10.
Zurück zum Zitat Müller H, Strunck V, Mickan B, Kramer R, Dopheide D (2004) Einsatz der Laser Doppler Anemometrie zur Realisierung eines optischen Durchflussnormals für HD-Erdgas, 12. In: Conference, Lasermethoden in der Strömungsmeßtechnik of the German Association for Laser Anemometry (GALA), pp 58.1–58.6. Karlsruhe, Germany, 7–9 September 2004. ISBN 3-9805613-1-3 Müller H, Strunck V, Mickan B, Kramer R, Dopheide D (2004) Einsatz der Laser Doppler Anemometrie zur Realisierung eines optischen Durchflussnormals für HD-Erdgas, 12. In: Conference, Lasermethoden in der Strömungsmeßtechnik of the German Association for Laser Anemometry (GALA), pp 58.1–58.6. Karlsruhe, Germany, 7–9 September 2004. ISBN 3-9805613-1-3
11.
Zurück zum Zitat Durst F, Fischer M, Jovanović J, Kikura H (1998) Methods to set up and investigate low Reynolds number, fully developed plane channel flows. J Fluids Eng 120:496–503CrossRef Durst F, Fischer M, Jovanović J, Kikura H (1998) Methods to set up and investigate low Reynolds number, fully developed plane channel flows. J Fluids Eng 120:496–503CrossRef
12.
Zurück zum Zitat Czarske J, Büttner L, Razik T, Müller H (2002) Boundary layer velocity measurements by a laser Doppler profile sensor with micrometre spatial resolution. Meas Sci Techn 13(12):1979–1989CrossRef Czarske J, Büttner L, Razik T, Müller H (2002) Boundary layer velocity measurements by a laser Doppler profile sensor with micrometre spatial resolution. Meas Sci Techn 13(12):1979–1989CrossRef
13.
Zurück zum Zitat Shirai K, Pfister T, Büttner L, Czarske J, Müller H, Becker S, Lienhart H, Durst F (2006) Highly spatially resolved velocity measurements of a turbulent channel flow by a fiber-optic heterodyne laser-Doppler velocity-profile sensor. Exp Fluids 40(3):473–481CrossRef Shirai K, Pfister T, Büttner L, Czarske J, Müller H, Becker S, Lienhart H, Durst F (2006) Highly spatially resolved velocity measurements of a turbulent channel flow by a fiber-optic heterodyne laser-Doppler velocity-profile sensor. Exp Fluids 40(3):473–481CrossRef
14.
Zurück zum Zitat Büttner L, Voigt A, Bayer C, Czarske J (2006) Three Component Flow Imaging by an Extended Laser Doppler Sensor. XVIII IMEKO World Congress, paper TC9-7, Rio de Janeiro, Brasil, 17–22 September. pp 1–6 Büttner L, Voigt A, Bayer C, Czarske J (2006) Three Component Flow Imaging by an Extended Laser Doppler Sensor. XVIII IMEKO World Congress, paper TC9-7, Rio de Janeiro, Brasil, 17–22 September. pp 1–6
15.
Zurück zum Zitat Pfister T, Büttner L, Czarske J, Krain H, Schodl R (2006) Turbo machine tip clearance and vibration measurements using a fibre optic laser Doppler position sensor. Meas Sci Technol 17:1693–1705CrossRef Pfister T, Büttner L, Czarske J, Krain H, Schodl R (2006) Turbo machine tip clearance and vibration measurements using a fibre optic laser Doppler position sensor. Meas Sci Technol 17:1693–1705CrossRef
16.
Zurück zum Zitat Pfister T, Büttner L, Shirai K, Czarske J (2005) Monochromatic heterodyne fiber-optic profile sensor for spatially resolved velocity measurements with frequency division multiplexing. Appl Optics 44(13):S2501–S2510CrossRef Pfister T, Büttner L, Shirai K, Czarske J (2005) Monochromatic heterodyne fiber-optic profile sensor for spatially resolved velocity measurements with frequency division multiplexing. Appl Optics 44(13):S2501–S2510CrossRef
17.
Metadaten
Titel
Precise flow rate measurements of natural gas under high pressure with a laser Doppler velocity profile sensor
verfasst von
L. Büttner
C. Bayer
A. Voigt
J. Czarske
H. Müller
N. Pape
V. Strunck
Publikationsdatum
01.12.2008
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 6/2008
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-008-0530-4

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