Valente P C, Dallas V
LAETA/IDMEC, Instituto Superior Tecnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.
Department of Applied Mathematics, University of Leeds, Leeds LS2 9JT, United Kingdom.
Phys Rev E. 2017 Feb;95(2-1):023114. doi: 10.1103/PhysRevE.95.023114. Epub 2017 Feb 24.
Direct numerical simulations of homogeneous decaying turbulence with background rotation show the existence of a systematic and significant imbalance between the non-linear energy cascade to small scales and its dissipation. By starting the decay from a statistically stationary and weakly rotating turbulent state, where the dissipation and the energy flux are approximately equal, the data show a growing imbalance between the two until a maximum is reached when the dissipation is about twice the energy flux. This dichotomy of behaviors during decay is reminiscent of the nonequilibrium and the equilibrium regions previously reported for nonrotating turbulence [Valente and Vassilicos, Phys. Rev. Lett. 108, 214503 (2012)PRLTAO0031-900710.1103/PhysRevLett.108.214503]. Note, however, that for decaying rotating turbulence the classical scaling of the dissipation rate ε∝u^{'3}/L (where u^{'} and L are the root mean square fluctuating velocity and the integral length scale, respectively) does not appear to hold during decay, which may be attributed to the effect of the background rotation on the energy cascade. On the other hand, the maximum energy flux holds the scaling Π_{max}∝u^{'3}/L in the initial stage of the decay until the maximum imbalance is reached.
对具有背景旋转的均匀衰减湍流进行的直接数值模拟表明,在向小尺度的非线性能量级串与其耗散之间存在系统且显著的不平衡。从统计上稳定且弱旋转的湍流状态开始衰减,此时耗散和能量通量近似相等,数据显示两者之间的不平衡不断增加,直到耗散约为能量通量的两倍时达到最大值。衰减过程中这种行为的二分法让人想起先前报道的非旋转湍流的非平衡和平衡区域[瓦伦特和瓦西利科斯,《物理评论快报》108, 214503 (2012年)PRLTAO0031 - 900710.1103/PhysRevLett.108.214503]。然而,请注意,对于衰减的旋转湍流,耗散率的经典标度关系ε∝u′³/L(其中u′和L分别是均方根脉动速度和积分长度尺度)在衰减过程中似乎不成立,这可能归因于背景旋转对能量级串的影响。另一方面,在衰减的初始阶段,最大能量通量保持标度关系Πmax∝u′³/L,直到达到最大不平衡。