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Disentangling the triadic interactions in Navier-Stokes equations

机译:解开Navier-Stokes方程中的三重相互作用

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We study the role of helicity in the dynamics of energy transfer in a modified version of the Navier-Stokes equations with explicit breaking of the mirror symmetry. We select different set of triads participating in the dynamics on the basis of their helicity content. In particular, we remove the negative helically polarized Fourier modes at all wave numbers except for those falling on a localized shell of wave number, vertical bar k vertical bar similar to k(m). Changing k(m) to be above or below the forcing scale, k(f), we are able to assess the energy transfer of triads belonging to different interaction classes. We observe that when the negative helical modes are present only at a wave number smaller than the forced wave numbers, an inverse energy cascade develops with an accumulation of energy on a stationary helical condensate. Vice versa, when negative helical modes are present only at a wave number larger than the forced wave numbers, a transition from backward to forward energy transfer is observed in the regime when the minority modes become energetic enough.
机译:我们在显着破坏镜像对称性的Navier-Stokes方程的修改版本中研究了螺旋度在能量传递动力学中的作用。我们根据其螺旋度内容选择参与动力学的不同三合组。特别是,我们去除了所有波数上的负螺旋偏振傅立叶模,除了那些落在波数的局部壳上的波,垂直线k垂直线类似于k(m)。通过将k(m)更改为强制尺度k(f)之上或之下,我们能够评估属于不同相互作用类别的三合会的能量转移。我们观察到,当负螺旋模仅以小于强制波数的波数存在时,会形成逆能级联,能量积聚在固定的螺旋状冷凝物中。反之亦然,当负螺旋模仅以大于强迫波数​​的波数存在时,当少数模变得足够有能量时,在该状态下会观察到从向后到正向的能量转移。

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