Sahoo Ganapati, Bonaccorso Fabio, Biferale Luca
Department of Physics & INFN, University of Rome Tor Vergata, Via della Ricerca Scientifica 1, 00133 Rome, Italy.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Nov;92(5):051002. doi: 10.1103/PhysRevE.92.051002. Epub 2015 Nov 24.
The effects of the helicity on the dynamics of turbulent flows are investigated. The aim is to disentangle the role of helicity in fixing the direction, the intensity, and the fluctuations of the energy transfer across the inertial range of scales. We introduce an external parameter α that controls the mismatch between the number of positive and negative helically polarized Fourier modes. We present direct numerical simulations of Navier-Stokes equations from the fully symmetrical case, α=0, to the fully asymmetrical case, α=1, when only helical modes of one sign survive. We found a singular dependency of the direction of the energy cascade on α, measuring a positive forward flux as soon as only a few modes with different helical polarities are present. Small-scale fluctuations are also strongly sensitive to the degree of mode reduction, leading to a vanishing intermittency already for values of α∼0.1. If the analysis is restricted to sets of modes with the same helicity sign, intermittency is vanishing for the modes belonging to the minority set, and it is close to that measured on the original Navier-Stokes equations for the other set.
研究了螺旋度对湍流动力学的影响。目的是厘清螺旋度在确定跨惯性尺度范围的能量传递方向、强度和波动方面所起的作用。我们引入一个外部参数α,它控制着正、负螺旋极化傅里叶模式数量之间的不匹配。我们给出了从完全对称情况(α = 0)到完全不对称情况(α = 1,此时只有一种符号的螺旋模式存活)下纳维 - 斯托克斯方程的直接数值模拟。我们发现能量级串方向对α存在奇异依赖性,只要存在少数具有不同螺旋极化的模式,就会测量到正向通量。小尺度波动对模式减少的程度也非常敏感,对于α ∼ 0.1的值,间歇性就已消失。如果分析仅限于具有相同螺旋度符号的模式集,属于少数集的模式间歇性消失,而对于另一集,其间歇性接近在原始纳维 - 斯托克斯方程上测量的值。