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Erschienen in: Experiments in Fluids 6/2012

01.06.2012 | Research Article

Spatial filter velocimetry based on time-series particle images

verfasst von: Shigeo Hosokawa, Akio Tomiyama

Erschienen in: Experiments in Fluids | Ausgabe 6/2012

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Abstract

High accuracy and high spatial resolution are required in measurements of fluid velocity for detailed flow diagnostics. In this study, we proposed spatial filter velocimetry (SFV) based on a frequency analysis of time-series spatially filtered particle images. Since this method can measure velocity from one particle in a measurement region, it enables us to measure the velocity with high accuracy and high spatial resolution. We developed a SFV system and applied it to laminar and turbulent flows in a duct to examine its performance. Comparisons between the velocities measured by SFV and LDV confirmed that SFV accurately measures the mean velocity and turbulent intensity with spatial and temporal resolutions as high as LDV.

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Literatur
Zurück zum Zitat Adrian RJ (1986) Multi-point optical measurements of simultaneous vectors in unsteady flow—a review. Int J Heat Fluid Flows 7(2):127–145CrossRef Adrian RJ (1986) Multi-point optical measurements of simultaneous vectors in unsteady flow—a review. Int J Heat Fluid Flows 7(2):127–145CrossRef
Zurück zum Zitat Adrian RJ (2005) Twenty years of particle image velocimetry. Exp Fluids 39:159–169CrossRef Adrian RJ (2005) Twenty years of particle image velocimetry. Exp Fluids 39:159–169CrossRef
Zurück zum Zitat Aizu Y, Asakura T (2006) Spatial filtering velocimetry, fundamentals and applications. Springer series in optical science, vol 116. Springer, Berlin Aizu Y, Asakura T (2006) Spatial filtering velocimetry, fundamentals and applications. Springer series in optical science, vol 116. Springer, Berlin
Zurück zum Zitat Aizu Y, Ushizaka T, Asakura T (1985a) Measurement of flow velocity in a microscopic region using a transmission grating: elimination of directional ambiguity. Appl Opt 24(5):636–640CrossRef Aizu Y, Ushizaka T, Asakura T (1985a) Measurement of flow velocity in a microscopic region using a transmission grating: elimination of directional ambiguity. Appl Opt 24(5):636–640CrossRef
Zurück zum Zitat Aizu Y, Ushizaka T, Asakura T (1985b) Measurement of the velocity gradient in a microscopic region using a transmission grating. Appl Opt 24(5):641–647CrossRef Aizu Y, Ushizaka T, Asakura T (1985b) Measurement of the velocity gradient in a microscopic region using a transmission grating. Appl Opt 24(5):641–647CrossRef
Zurück zum Zitat Albrecht HE, Borys M, Damaschke N, Tropea C (2003) Laser Doppler and phase Doppler measurement techniques. Springer, Berlin Albrecht HE, Borys M, Damaschke N, Tropea C (2003) Laser Doppler and phase Doppler measurement techniques. Springer, Berlin
Zurück zum Zitat Ator JT (1963) Image-velocity sensing with parallel-slit reticles. J Opt Soc Am 53(12):1416–1419CrossRef Ator JT (1963) Image-velocity sensing with parallel-slit reticles. J Opt Soc Am 53(12):1416–1419CrossRef
Zurück zum Zitat Bastiaans RJM, van der Plas GAJ, Kieft RN (2002) The performance of a new PTV algorithm applied in super-resolution PIV. Exp Fluids 32:346–356CrossRef Bastiaans RJM, van der Plas GAJ, Kieft RN (2002) The performance of a new PTV algorithm applied in super-resolution PIV. Exp Fluids 32:346–356CrossRef
Zurück zum Zitat Burg JP (1967) Maximum entropy spectral analysis. Presented at the 37th meeting of the Society of Exploration Geophysicists, Oklahoma City; reported in Childers DG (ed) (1978) Modern spectrum analysis. IEEE Press, pp 34–41 Burg JP (1967) Maximum entropy spectral analysis. Presented at the 37th meeting of the Society of Exploration Geophysicists, Oklahoma City; reported in Childers DG (ed) (1978) Modern spectrum analysis. IEEE Press, pp 34–41
Zurück zum Zitat Christensen KT (2004) The influence of peak-locking errors on turbulence statistics computed from PIV ensembles. Exp Fluids 36:484–497CrossRef Christensen KT (2004) The influence of peak-locking errors on turbulence statistics computed from PIV ensembles. Exp Fluids 36:484–497CrossRef
Zurück zum Zitat Chui CK (1992) An introduction to wavelet. Academic Press, London Chui CK (1992) An introduction to wavelet. Academic Press, London
Zurück zum Zitat Cowen EA, Monismith SG (1997) A hybrid digital particle tracking velocimetry technique. Exp Fluids 22:199–211CrossRef Cowen EA, Monismith SG (1997) A hybrid digital particle tracking velocimetry technique. Exp Fluids 22:199–211CrossRef
Zurück zum Zitat Durst F, Melling A, Whitelaw JH (1976) Principles and practice of laser-Doppler anemometry. Academic Press, London Durst F, Melling A, Whitelaw JH (1976) Principles and practice of laser-Doppler anemometry. Academic Press, London
Zurück zum Zitat Durst F, Lehmann B, Tropea C (1981) Laser-Doppler system for rapid scanning of flow fields. Rev Sci Instrum 52:1676–1681CrossRef Durst F, Lehmann B, Tropea C (1981) Laser-Doppler system for rapid scanning of flow fields. Rev Sci Instrum 52:1676–1681CrossRef
Zurück zum Zitat Gaster M (1964) A new technique for the measurement of low fluid velocities. J Fluid Mech 20(2):183–192CrossRef Gaster M (1964) A new technique for the measurement of low fluid velocities. J Fluid Mech 20(2):183–192CrossRef
Zurück zum Zitat Hachiga T, Furuichi N, Mimatsu J, Hishida K, Kumada M (1998) Development of a multi-point LDV by using semiconductor laser with FFT-based multi-channel signal processing. Exp Fluids 24:70–76CrossRef Hachiga T, Furuichi N, Mimatsu J, Hishida K, Kumada M (1998) Development of a multi-point LDV by using semiconductor laser with FFT-based multi-channel signal processing. Exp Fluids 24:70–76CrossRef
Zurück zum Zitat Hart DP (1999) Super-resolution PIV by recursive local-correlation. J Vis 10:1–10 Hart DP (1999) Super-resolution PIV by recursive local-correlation. J Vis 10:1–10
Zurück zum Zitat Hayashi A, Kitagawa Y (1982) Image velocity sensing using an optical fiber array. Appl Opt 21(8):1394–1399CrossRef Hayashi A, Kitagawa Y (1982) Image velocity sensing using an optical fiber array. Appl Opt 21(8):1394–1399CrossRef
Zurück zum Zitat Hino M (1977) Spectral analysis. Asakura, Tokyo Hino M (1977) Spectral analysis. Asakura, Tokyo
Zurück zum Zitat Hino M, Nadaoka K, Kobayashi T, Hironaga K, Muramoto T (1986) Flow structure measurement by beam scan type LDV. Fluid Dyn Res 1:177–190CrossRef Hino M, Nadaoka K, Kobayashi T, Hironaga K, Muramoto T (1986) Flow structure measurement by beam scan type LDV. Fluid Dyn Res 1:177–190CrossRef
Zurück zum Zitat Hinze JO (1975) Turbulence. McGraw-Hill, New York Hinze JO (1975) Turbulence. McGraw-Hill, New York
Zurück zum Zitat Ikeda Y, Kurihara N, Nakajima T, Matsumoto R (1989) Multipoint simultaneous LDV optics. Applications of laser anemometry to fluid mechanics. Springer, Berlin, pp 361–377 Ikeda Y, Kurihara N, Nakajima T, Matsumoto R (1989) Multipoint simultaneous LDV optics. Applications of laser anemometry to fluid mechanics. Springer, Berlin, pp 361–377
Zurück zum Zitat Itakura Y, Sugimura A, Tsutsumi S (1981) Amplitude-modulated reticle constructed by a liquid crystal cell array. Appl Opt 20(16):2819–2826CrossRef Itakura Y, Sugimura A, Tsutsumi S (1981) Amplitude-modulated reticle constructed by a liquid crystal cell array. Appl Opt 20(16):2819–2826CrossRef
Zurück zum Zitat Keane RD, Adrian RJ, Zhang Y (1995) Super-resolution particle image velocimetry. Meas Sci Technol 2:1202–1215 Keane RD, Adrian RJ, Zhang Y (1995) Super-resolution particle image velocimetry. Meas Sci Technol 2:1202–1215
Zurück zum Zitat Kim HT, Kline SJ, Reynolds WC (1971) The production of turbulence near a smooth wall in a turbulent boundary layer. J Fluid Mech 50:133–160CrossRef Kim HT, Kline SJ, Reynolds WC (1971) The production of turbulence near a smooth wall in a turbulent boundary layer. J Fluid Mech 50:133–160CrossRef
Zurück zum Zitat Lehmann B, Mante J (1991) Laser-Doppler measurement of the dynamics of large turbulent structures with a scanning technique. Atmos Environ Part A Gen Top 25:1271–1275CrossRef Lehmann B, Mante J (1991) Laser-Doppler measurement of the dynamics of large turbulent structures with a scanning technique. Atmos Environ Part A Gen Top 25:1271–1275CrossRef
Zurück zum Zitat Maru K, Kobayashi K, Fujii Y (2010) Multi-point differential laser Doppler velocimeter using arrayed waveguide gratings with small wavelength sensitivity. Opt Express 18:301–308CrossRef Maru K, Kobayashi K, Fujii Y (2010) Multi-point differential laser Doppler velocimeter using arrayed waveguide gratings with small wavelength sensitivity. Opt Express 18:301–308CrossRef
Zurück zum Zitat Naito M, Ohkami Y, Kobayashi A (1968) Non-contact speed measurement using spatial filter. Jpn Soc Instrum Control Eng 7(11):761–772 Naito M, Ohkami Y, Kobayashi A (1968) Non-contact speed measurement using spatial filter. Jpn Soc Instrum Control Eng 7(11):761–772
Zurück zum Zitat Nakamura I (1992) Turbulence phenomena. Asakura, Tokyo Nakamura I (1992) Turbulence phenomena. Asakura, Tokyo
Zurück zum Zitat Nakatani N, Nishikawa T, Yamada T (1980) LDV optical system with multifrequency shifting for simultaneous measurement of flow velocities at several points. J Phys E Sci Instrum 13:172–173CrossRef Nakatani N, Nishikawa T, Yamada T (1980) LDV optical system with multifrequency shifting for simultaneous measurement of flow velocities at several points. J Phys E Sci Instrum 13:172–173CrossRef
Zurück zum Zitat Nobach H, Damaschke N, Tropea C (2005) High-precision sub-pixel interpolation in particle image velocimetry image processing. Exp Fluids 39:299–304CrossRef Nobach H, Damaschke N, Tropea C (2005) High-precision sub-pixel interpolation in particle image velocimetry image processing. Exp Fluids 39:299–304CrossRef
Zurück zum Zitat Raffel M, Willert CE, Kompenhans J (1998) Particle image velocimetry. Springer, Berlin Raffel M, Willert CE, Kompenhans J (1998) Particle image velocimetry. Springer, Berlin
Zurück zum Zitat Scarano F (2002) Iterative image deformation methods in PIV. Meas Sci Technol 13:R1–R19CrossRef Scarano F (2002) Iterative image deformation methods in PIV. Meas Sci Technol 13:R1–R19CrossRef
Zurück zum Zitat Scarano F, Riethmuller ML (2000) Advances in iterative multigrid PIV image processing. Exp Fluids 29:S51–S60MATHCrossRef Scarano F, Riethmuller ML (2000) Advances in iterative multigrid PIV image processing. Exp Fluids 29:S51–S60MATHCrossRef
Zurück zum Zitat Susset A, Most JM, Honore D (2006) A novel architecture for a super resolution PIV algorithm developed for the improvement of the resolution of large velocity gradient measurements. Exp Fluids 40:70–79CrossRef Susset A, Most JM, Honore D (2006) A novel architecture for a super resolution PIV algorithm developed for the improvement of the resolution of large velocity gradient measurements. Exp Fluids 40:70–79CrossRef
Zurück zum Zitat Theunissen R, Scarano F, Riethmuller ML (2007) An adaptive sampling and windowing interrogation method in PIV. Meas Sci Technol 18:275–287CrossRef Theunissen R, Scarano F, Riethmuller ML (2007) An adaptive sampling and windowing interrogation method in PIV. Meas Sci Technol 18:275–287CrossRef
Zurück zum Zitat Theunissen R, Scarano F, Riethmuller ML (2010) Spatially adaptive PIV interrogation based on data ensemble. Exp Fluids 48:875–887CrossRef Theunissen R, Scarano F, Riethmuller ML (2010) Spatially adaptive PIV interrogation based on data ensemble. Exp Fluids 48:875–887CrossRef
Zurück zum Zitat Ushizaka T, Asakura T (1983) Measurement of flow velocity in a microscopic region using a transmission grating. Appl Opt 22(12):1870–1874CrossRef Ushizaka T, Asakura T (1983) Measurement of flow velocity in a microscopic region using a transmission grating. Appl Opt 22(12):1870–1874CrossRef
Metadaten
Titel
Spatial filter velocimetry based on time-series particle images
verfasst von
Shigeo Hosokawa
Akio Tomiyama
Publikationsdatum
01.06.2012
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 6/2012
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-011-1259-z

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