English

Statistics of turbulence and intermittency enhancement in superfluid $^4$He counterflow

Other Condensed Matter 2018-12-05 v1

Abstract

We report a detailed analysis of the energy spectra, second- and high-order structure functions of velocity differences in superfluid 4^4He counterflow turbulence, measured in a wide range of temperatures and heat fluxes. We show that the one-dimensional energy spectrum Exz(ky)E_{xz} (k_y) (averaged over the xzxz-plane, parallel to the channel wall), directly measured as a function of the wall-normal wave-vector kyk_y, gives more detailed information on the energy distribution over scales than the corresponding second-order structure function S2(δy)S_{2}(\delta_y). In particular, we discover two intervals of kyk_y with different apparent exponents: Exz(ky)kymCE_{xz} (k_y)\propto k_y^{-m_C} for kk×k\lesssim k_\times and Exz(ky)kymFE_{xz} (k_y)\propto k_y^{-m_F} for kk×k\gtrsim k_\times. Here k×k_\times denotes wavenumber that separate scales with relatively strong (for kk×k\lesssim k_\times) and relatively weak (for kk×k\gtrsim k_\times) coupling between the normal-fluid and superfluid velocity components. We interpret these kk-ranges as cascade-dominated and mutual friction-dominated intervals, respectively. General behavior of the experimental spectra Exz(ky)E_{xz}(k_y) agree well with the predicted spectra [Phys. Rev. B 97, 214513 (2018)]. Analysis of the nn-th order structure functions statistics shows that in the energy-containing interval the statistics of counterflow turbulence is close to Gaussian, similar to the classical hydrodynamic turbulence. In the cascade- and mutual friction-dominated intervals we found some modest enhancement of intermittency with respect of its level in classical turbulence. However, at small scales, the intermittency becomes much stronger than in the classical turbulence.

Keywords

Cite

@article{arxiv.1810.00507,
  title  = {Statistics of turbulence and intermittency enhancement in superfluid $^4$He counterflow},
  author = {S. Bao and W. Guo and V. S. L'vov and A. Pomyalov},
  journal= {arXiv preprint arXiv:1810.00507},
  year   = {2018}
}