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2019 | OriginalPaper | Buchkapitel

Influence of the Deep Spherical Dimple on the Pressure Field Under the Turbulent Boundary Layer

verfasst von : V. A. Voskoboinick, V. N. Turick, O. A. Voskoboinyk, A. V. Voskoboinick, I. A. Tereshchenko

Erschienen in: Advances in Computer Science for Engineering and Education

Verlag: Springer International Publishing

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Abstract

The influence of a local dimple in the form of a deep spherical cavity on the pressure field inside the dimple and its vicinity for the turbulent flow regime is experimentally determined. Specific features of the vortex formation inside the dimple are established and the influences of vortex structures that are ejected outward from the spherical dimple on the structure of the turbulent boundary layer are shown. The antiphase oscillations of the wall pressure fluctuation field occur in the halves of the dimple separated by a longitudinal axial plane when the vortex flow “switches” from one side of the dimple to another. The spectral components of the wall pressure fluctuations on the streamlined surface of the spherical dimple have discrete components corresponding to the frequencies of the “switching” of the vortex formation inside the dimple (St ≈ 0.003), the frequencies of the vortex ejections from the dimple (St ≈ 0.05) and the frequencies of the self-oscillations of the shear layer (St ≈ 0.4).

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Literatur
1.
Zurück zum Zitat Khalatov, A.A.: Heat transfer and fluid mechanics over surface indentations (dimples). National Academy of Sciences of Ukraine, Institute of Engineering Thermophysics, Kyiv (2005) Khalatov, A.A.: Heat transfer and fluid mechanics over surface indentations (dimples). National Academy of Sciences of Ukraine, Institute of Engineering Thermophysics, Kyiv (2005)
2.
Zurück zum Zitat Khadivi, T., Savory, E.: Effect of yaw angle on the flow structure of low aspect ratio elliptical cavities. J. Aerosp. Eng. 232(4), 04017002 (2017)CrossRef Khadivi, T., Savory, E.: Effect of yaw angle on the flow structure of low aspect ratio elliptical cavities. J. Aerosp. Eng. 232(4), 04017002 (2017)CrossRef
3.
Zurück zum Zitat Voskoboinick, V., Kornev, N., Turnow, J.: Study of near wall coherent flow structures on dimpled surfaces using unsteady pressure measurements. Flow Turbul. Combust 90(4), 709–722 (2013)CrossRef Voskoboinick, V., Kornev, N., Turnow, J.: Study of near wall coherent flow structures on dimpled surfaces using unsteady pressure measurements. Flow Turbul. Combust 90(4), 709–722 (2013)CrossRef
6.
Zurück zum Zitat Voskoboinick, V.A., Makarenkov, A.P.: Spectral characteristics of the hydrodynamical noise in a longitudinal flow around a flexible cylinder. Intern. J. Fluid Mech. 31(1), 87–100 (2004)CrossRef Voskoboinick, V.A., Makarenkov, A.P.: Spectral characteristics of the hydrodynamical noise in a longitudinal flow around a flexible cylinder. Intern. J. Fluid Mech. 31(1), 87–100 (2004)CrossRef
7.
Zurück zum Zitat Voskoboinick, V.A., Grinchenko, V.T., Makarenkov, A.P.: Pseudo-sound behind an obstacle on a cylinder in axial flow. Intern. J. Fluid Mech. 32(4), 488–510 (2005)CrossRef Voskoboinick, V.A., Grinchenko, V.T., Makarenkov, A.P.: Pseudo-sound behind an obstacle on a cylinder in axial flow. Intern. J. Fluid Mech. 32(4), 488–510 (2005)CrossRef
8.
Zurück zum Zitat Turnow, J., Kornev, N., Isaev, S., Hassel, E.: Vortex mechanism of heat transfer enhancement in a channel with spherical and oval dimples. Heat Mass Transf. 47(3), 301–313 (2011)CrossRef Turnow, J., Kornev, N., Isaev, S., Hassel, E.: Vortex mechanism of heat transfer enhancement in a channel with spherical and oval dimples. Heat Mass Transf. 47(3), 301–313 (2011)CrossRef
9.
Zurück zum Zitat Terekhov, V.I., Kalinina, S.V., Mshvidobadze, YuM: Experimental research of flow development in channal with halfspherical cavity. Sib. Phys-Tekhn. J. 1, 77–86 (1992). (in Russian) Terekhov, V.I., Kalinina, S.V., Mshvidobadze, YuM: Experimental research of flow development in channal with halfspherical cavity. Sib. Phys-Tekhn. J. 1, 77–86 (1992). (in Russian)
10.
Zurück zum Zitat Voskoboinick, V.A.: Pressure distribution on streamlined surface with spherical dimple. Water Transp. 18(3), 90–96 (2014). (in Russian) Voskoboinick, V.A.: Pressure distribution on streamlined surface with spherical dimple. Water Transp. 18(3), 90–96 (2014). (in Russian)
11.
Zurück zum Zitat Voskoboinick, A.V., Voskoboinick, V.A., Isaev, S.A., Zhdanov, V.L., Kornev, N.V., Turnow, J.: Vortex flow bifurcation inside the spherical dimple in a narrow channel. Appl. Hydromech. 13(4), 17–27 (2011). (in Russian) Voskoboinick, A.V., Voskoboinick, V.A., Isaev, S.A., Zhdanov, V.L., Kornev, N.V., Turnow, J.: Vortex flow bifurcation inside the spherical dimple in a narrow channel. Appl. Hydromech. 13(4), 17–27 (2011). (in Russian)
12.
Zurück zum Zitat Bull, M.K.: Wall-pressure fluctuations beneath turbulent boundary layers: some reflections on forty years of research. J. Sound Vibr. 190(3), 299–315 (1996)CrossRef Bull, M.K.: Wall-pressure fluctuations beneath turbulent boundary layers: some reflections on forty years of research. J. Sound Vibr. 190(3), 299–315 (1996)CrossRef
14.
Zurück zum Zitat Bendat, J.S., Piersol, A.G.: Random Data: Analysis and Measurement Procedures. Willey, New York (1986)MATH Bendat, J.S., Piersol, A.G.: Random Data: Analysis and Measurement Procedures. Willey, New York (1986)MATH
16.
Zurück zum Zitat Tsuji, Y., Marusic, I., Johansson, A.V.: Amplitude modulation of pressure in turbulent boundary layer. Int. J. Heat Fluid Flow 61, 2–11 (2016)CrossRef Tsuji, Y., Marusic, I., Johansson, A.V.: Amplitude modulation of pressure in turbulent boundary layer. Int. J. Heat Fluid Flow 61, 2–11 (2016)CrossRef
17.
Zurück zum Zitat Blake, W.K.: Mechanics of Flow-Induced Sound and Vibration, vol. 2. Academic Press, New York (1986)MATH Blake, W.K.: Mechanics of Flow-Induced Sound and Vibration, vol. 2. Academic Press, New York (1986)MATH
18.
Zurück zum Zitat Doisy, Y.: Modelling wall pressure fluctuations under a turbulent boundary layer. J. Sound Vib. 400, 178–200 (2017)CrossRef Doisy, Y.: Modelling wall pressure fluctuations under a turbulent boundary layer. J. Sound Vib. 400, 178–200 (2017)CrossRef
Metadaten
Titel
Influence of the Deep Spherical Dimple on the Pressure Field Under the Turbulent Boundary Layer
verfasst von
V. A. Voskoboinick
V. N. Turick
O. A. Voskoboinyk
A. V. Voskoboinick
I. A. Tereshchenko
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-91008-6_3

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