An experimental study was conducted in the CICLoPE long-pipe facility to investigate the correlation between wall-pressure and turbulent velocity fluctuations in the logarithmic region, at high friction Reynolds numbers . Hereby, we explore the scalability of employing wall-pressure to effectively estimate off-the-wall velocity states (e.g. to be of use in real-time control of wall-turbulence). Coherence spectra for wall-pressure and streamwise (or wall-normal) velocity fluctuations collapse when plotted against and thus reveals a Reynolds-number-independent scaling with distance-from-the-wall. When the squared wall-pressure fluctuations are considered instead of the linear wall-pressure term, the coherence spectra for the wall-pressure-squared and velocity are higher in amplitude at wavelengths corresponding to large-scale streamwise velocity fluctuations (e.g. at, the coherence value increases from roughly 0.1 up to 0.3). This higher coherence typifies a modulation effect, because low-frequency content is introduced when squaring the wall-pressure time series. Finally, quadratic stochastic estimation is employed to estimate turbulent velocity fluctuations from the wall-pressure time series only. For each investigated, the estimated time series and a true temporal measurement of velocity inside the turbulent pipe flow yield a normalised correlation coefficient of for all cases. This suggests that wall-pressure sensing can be employed for meaningful estimation of off-the-wall velocity fluctuations and thus for real-time control of energetic turbulent velocity fluctuations at high- applications.

Dacome, G., Lazzarini, L., Talamelli, A., Bellani, G., Baars, W.J. (2025). Scaling of wall-pressure–velocity correlations in high-Reynolds-number turbulent pipe flow. JOURNAL OF FLUID MECHANICS, 1013, 48-1-48-22 [10.1017/jfm.2025.400].

Scaling of wall-pressure–velocity correlations in high-Reynolds-number turbulent pipe flow

Lazzarini, Lorenzo
Secondo
Writing – Original Draft Preparation
;
Talamelli, Alessandro
Supervision
;
Bellani, Gabriele
Writing – Review & Editing
;
Baars, Woutijn J.
2025

Abstract

An experimental study was conducted in the CICLoPE long-pipe facility to investigate the correlation between wall-pressure and turbulent velocity fluctuations in the logarithmic region, at high friction Reynolds numbers . Hereby, we explore the scalability of employing wall-pressure to effectively estimate off-the-wall velocity states (e.g. to be of use in real-time control of wall-turbulence). Coherence spectra for wall-pressure and streamwise (or wall-normal) velocity fluctuations collapse when plotted against and thus reveals a Reynolds-number-independent scaling with distance-from-the-wall. When the squared wall-pressure fluctuations are considered instead of the linear wall-pressure term, the coherence spectra for the wall-pressure-squared and velocity are higher in amplitude at wavelengths corresponding to large-scale streamwise velocity fluctuations (e.g. at, the coherence value increases from roughly 0.1 up to 0.3). This higher coherence typifies a modulation effect, because low-frequency content is introduced when squaring the wall-pressure time series. Finally, quadratic stochastic estimation is employed to estimate turbulent velocity fluctuations from the wall-pressure time series only. For each investigated, the estimated time series and a true temporal measurement of velocity inside the turbulent pipe flow yield a normalised correlation coefficient of for all cases. This suggests that wall-pressure sensing can be employed for meaningful estimation of off-the-wall velocity fluctuations and thus for real-time control of energetic turbulent velocity fluctuations at high- applications.
2025
Dacome, G., Lazzarini, L., Talamelli, A., Bellani, G., Baars, W.J. (2025). Scaling of wall-pressure–velocity correlations in high-Reynolds-number turbulent pipe flow. JOURNAL OF FLUID MECHANICS, 1013, 48-1-48-22 [10.1017/jfm.2025.400].
Dacome, Giulio; Lazzarini, Lorenzo; Talamelli, Alessandro; Bellani, Gabriele; Baars, Woutijn J.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1029410
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