Experimental investigation of intermediate-dissipation range energy spectra in shear turbulence
arXiv:2603.21215
Abstract
The shape of the turbulent energy spectrum in the dissipation range, where viscous effects dominate, remains an open question despite decades of work. We report an experimental investigation of intermediate dissipation range energy spectra in turbulent shear layers at Taylor-scale Reynolds numbers, , ranging from approximately 450 to 1500, which are among the highest achieved in shear flow experiments that resolved small scales. We generated turbulent shear layers in a wind tunnel and measured using nanoscale hot-wire probes with a sensing length that was smaller than the Kolmogorov scale at all . The measurements resolved wavenumbers up to at the lowest and at the highest , where is the highest resolved wave number. In the range , the spectra collapse onto a universal stretched-exponential form, exp, with independent of . This value of stretching exponent, , is consistent with recent empirical and computational studies. The Reynolds-number invariance of is strong evidence for universal scaling in the intermediate dissipation range of high-Reynolds-number shear turbulence.
9 Pages, 4 figures