English

Spectral Reconstruction for Under-Resolved Turbulence Measurements Using a Variational Cutoff Dissipation Model

Fluid Dynamics 2025-12-25 v1

Abstract

This technical note addresses the challenge of accurate turbulence characterization using robust, bandwidth-limited sensors which fail to resolve the high-wavenumber dissipation range. To correct the resulting underestimation of turbulent kinetic energy (TKE), a novel analytical spectral model is derived from a variational principle governing cascade resistance, yielding a Ginzburg-Landau domain wall solution. Unlike classical asymptotic decay formulations such as the Pao or Pope models, the proposed formulation features bounded spectral support with a hard energetic cutoff at the Kolmogorov wavenumber (kηk_{\eta}) and requires no adjustable parameters beyond the Kolmogorov constant (CKC_K). Validation against high-Reynolds-number experimental data confirms that the model accurately captures the spectral rolloff and achieves superior TKE recovery, restoring over 98\% of the variance from spectra truncated as early as kη=0.15k\eta=0.15, thereby offering a robust tool for industrial and aeroacoustic flow diagnostics.

Keywords

Cite

@article{arxiv.2512.20676,
  title  = {Spectral Reconstruction for Under-Resolved Turbulence Measurements Using a Variational Cutoff Dissipation Model},
  author = {Rishabh Mishra},
  journal= {arXiv preprint arXiv:2512.20676},
  year   = {2025}
}

Comments

This manuscript is submitted as a Technical Note for publication in an AIAA journal for which an abstract is not required; therefore, it does not have an abstract

R2 v1 2026-07-01T08:39:07.013Z