论文标题
自由空间中湍流球形区域的动力和衰减
Dynamics and decay of a spherical region of turbulence in free space
论文作者
论文摘要
我们对自由空间中最初的湍流球形区域进行直接数值模拟(DNS)和大型涡流模拟(LES)。使用晶格绿色的功能方法进行计算,该方法允许将精确的自由空间边界条件强加于紧凑的涡流区域。 LES模拟是通过拉伸的涡流亚网格应力模型进行的。初始条件是球形的,各向同性均匀不可压缩的湍流。我们研究了腐烂的湍流的频谱和统计数据,并将结果与衰减的各向同性湍流进行了比较,包括代表能量谱的不同低波数行为的病例(即K^2对K^4)。在后期,湍流球均以平均半径和整体尺度膨胀,显示出相似的时间增长指数。低波数行为对惯性尺度的影响很小,我们发现衰减率在两种情况下都遵循Saffman(1967)的预测,至少直到约400个初始涡流周转时间。球形区域的边界发展了间歇性,并具有涡旋环的弹出。这些显示出在初始湍流场的整体尺度上发生,并假设由于这种量表上的冲动局部不平衡而发生。
We perform direct numerical simulation (DNS) and large eddy simulation (LES) of an initially spherical region of turbulence evolving in free space. The computations are performed with a lattice Green's function method, which allows the exact free-space boundary conditions to be imposed on a compact vortical region. LES simulations are conducted with the stretched vortex sub-grid stress model. The initial condition is spherically windowed, isotropic homogeneous incompressible turbulence. We study the spectrum and statistics of the decaying turbulence and compare the results with decaying isotropic turbulence, including cases representing different low wavenumber behavior of the energy spectrum (i.e. k^2 versus k^4). At late times the turbulent sphere expands with both mean radius and integral scale showing similar time-wise growth exponents. The low wavenumber behavior has little effect on the inertial scales, and we find that decay rates follow Saffman (1967) predictions in both cases, at least until about 400 initial eddy turnover times. The boundary of the spherical region develops intermittency and features ejections of vortex rings. These are shown to occur at the integral scale of the initial turbulence field and are hypothesized to occur due to a local imbalance of impulse on this scale.