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Two-dimensional Turbulence in Symmetric Binary-Fluid Mixtures: Coarsening Arrest by the Inverse Cascade

机译:对称二元流体中的二维湍流:逆级联的粗化逮捕

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摘要

We study two-dimensional (2D) binary-fluid turbulence by carrying out an extensive direct numerical simulation (DNS) of the forced, statistically steady turbulence in the coupled Cahn-Hilliard and Navier-Stokes equations. In the absence of any coupling, we choose parameters that lead (a) to spinodal decomposition and domain growth, which is characterized by the spatiotemporal evolution of the Cahn-Hilliard order parameter ϕ, and (b) the formation of an inverse-energy-cascade regime in the energy spectrum E(k), in which energy cascades towards wave numbers k that are smaller than the energy-injection scale kin j in the turbulent fluid. We show that the Cahn-Hilliard-Navier-Stokes coupling leads to an arrest of phase separation at a length scale Lc, which we evaluate from S(k), the spectrum of the fluctuations of ϕ. We demonstrate that (a) Lc ~ LH, the Hinze scale that follows from balancing inertial and interfacial-tension forces, and (b) Lc is independent, within error bars, of the diffusivity D. We elucidate how this coupling modifies E(k) by blocking the inverse energy cascade at a wavenumber kc, which we show is ≃2π/Lc. We compare our work with earlier studies of this problem.
机译:通过对耦合的Cahn-Hilliard和Navier-Stokes方程中的强迫,统计稳定湍流进行广泛的直接数值模拟(DNS),我们研究了二维(2D)二元流体湍流。在没有任何耦合的情况下,我们选择导致(a)旋节线分解和畴生长的参数,其特征是Cahn-Hilliard阶参数parameter的时空演化,以及(b)形成逆能量-能量谱E(k)中的级联状态,其中能量朝着比湍流流体中的能量注入尺度kin j小的波数k层叠。我们表明,Cahn-Hilliard-Navier-Stokes耦合导致长度为Lc的相分离停滞,我们从S(k)(ϕ波动的频谱)进行评估。我们证明了(a)Lc〜LH,由惯性力和界面张力的平衡引起的Hinze尺度,(b)Lc在误差线内独立于扩散率D。我们阐明了这种耦合如何改变E(k )通过在波数kc处阻止逆能量级联,我们显示出≃2π/ Lc。我们将我们的工作与对该问题的早期研究进行了比较。

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