Late-time growth rate, mixing and anisotropy in the multimode narrowband Richtmyer--Meshkov Instability: the -Group Collaboration
arXiv:1706.09991 · doi:10.1063/1.4993464
Abstract
Turbulent Richtmyer--Meshkov instability (RMI) is investigated through a series of high resolution three dimensional smulations of two initial conditions with eight independent codes. The simulations are initialised with a narrowband perturbation such that instability growth is due to non-linear coupling/backscatter from the energetic modes, thus generating the lowest expected growth rate from a pure RMI. By independently assessing the results from each algorithm, and computing ensemble averages of multiple algorithms, the results allow a quantification of key flow properties as well as the uncertainty due to differing numerical approaches. A new analytical model predicting the initial layer growth for a multimode narrowband perturbation is presented, along with two models for the linear and non-linear regime combined. Overall, the growth rate exponent is determined as , in good agreement with prior studies; however, the exponent is decaying slowly in time. is shown to be relatively insensitive to the choice of mixing layer width measurement. The asymptotic integral molecular mixing measures , and which are lower than some experimental measurements but within the range of prior numerical studies. The flow field is shown to be persistently anisotropic for all algorithms, at the latest time having between 49\% and 66\% higher kinetic energy in the shock parallel direction compared to perpendicular and does not show any return to isotropy. The plane averaged volume fraction profiles at different time instants collapse reasonably well when scaled by the integral width, implying that the layer can be described by a single length scale and thus a single . Quantitative data given for both ensemble averages and individual algorithms provide useful benchmark results for future research.
50 pages
References in corpus (1)
Cited by in corpus (9)
- The influence of initial perturbation power spectra on the growth of a turbulent mixing layer induced by Richtmyer-Meshkov instability
- Turbulent transport and mixing in the multimode narrowband Richtmyer-Meshkov instability
- Direct numerical simulation of the multimode narrowband Richtmyer-Meshkov instability
- Reynolds number dependence of turbulence induced by the Richtmyer-Meshkov instability using direct numerical simulations
- On Richtmyer-Meshkov unstable dynamics of three-dimensional interfacial coherent structures with time-dependent acceleration
- Linear Stability of an Impulsively Accelerated Density Interface in an Ideal Two-Fluid Plasma
- On interplay of surface tension and inertial stabilization mechanisms in the interface dynamics with interfacial mass flux
- Turbulence Modelling of Mixing Layers under Anisotropic Strain
- Impact of transverse strain on linear, transitional and self-similar turbulent mixing layers