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April 1, 2026Акустический журнал / Acoustical Physics0 citations

Modeling the operation of scalar wave filters – isotropic wavelets – in the field of wall turbulent pressure pulsations

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EKE. B. KudashevLYL. R. Yablonik

Key Points

  • This research aims to evaluate the performance of scalar wave filters in analyzing turbulent wall pressure fluctuations.
  • Estimated results of scalar filtering in homogeneous boundary layers.
  • Focused on two-element wave filters with central and ring receivers.
  • Analyzed the characteristics of scalar spectra under coherent pulsating actions.
  • Two-element wavelet filters yield satisfactory spectral estimation results.
  • Filtering outcomes remain consistent across varied sensitivity distributions.
  • Three-element wave filters significantly enhance filtration quality in short-wave zones.

Abstract

The results of scalar filtering in the field turbulent wall pressure fluctuations under a homogeneous boundary layer are estimated. The main attention is paid to the operation of extremely compact scalar wave filters formed from two receiving elements – a central circular one and an adjacent external ring one. Such a two-element receiver operates as a wave filter and can be treated as an isotropic wavelet if the recorded total signal under coherent pulsating action on the elements is zero. It is established that two-element wavelet filters are capable of providing a satisfactory solution to the problem of estimating the characteristics of a scalar spectrum. The filtering results are close for different smooth distributions of local sensitivity over the radius. The outer diameters of the two-element receivers are approximately 1.5 wavelengths to which the wave filter is tuned. Three-element scalar wave filters-wavelets with two ring elements and an external diameter of approximately 2.2 lengths of the recorded wave are capable of significantly improving the quality of filtration in the short-wave zone of the wave spectrum. The prospects of using the investigated receivers in problems of spatial wavelet analysis of turbulent fields of wall pressure pulsations are noted.

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Cite This Study

Kudashev et al. (2025) studied this question.

synapsesocial.com/papers/69ccb6e416edfba7beb88b17https://doi.org/10.7868/s3034500625050105
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Modeling the Operation of Scalar Wave Filters—Isotropic Wavelets—in the Field of Wall Turbulent Pressure Fluctuations2025
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