The emergence of bubble-induced scaling in thermal spectra in turbulence
arXiv:2207.05175 · doi:10.1017/jfm.2023.66
Abstract
We report on the modification of the spectrum of a passive scalar inside a turbulent flow by the injection of large bubbles. While the spectral modification through bubbles is well known and well analyzed for the velocity fluctuations, little is known on how bubbles change the fluctuations of an approximately passive scalar, in our case temperature. Here we uncover the thermal spectral scaling behavior of a turbulent multiphase thermal mixing layer. The development of a spectral scaling is triggered. By injecting large bubbles () with gas volume fractions up to 5\%. For these bubbly flows, the scaling is still observed at intermediate frequencies for low but becomes less pronounced when further increases and it is followed by a steeper slope for larger frequencies. This scaling range extends with increasing gas volume fraction. The scaling exponent coincides with the typical energy spectral scaling for the velocity fluctuations in high Reynolds number bubbly flows. We identify the frequency scale of the transition from the scaling to the scaling and show how it depends on the gas volume fraction.
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