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Direct Numerical Investigation of Turbulence of Capillary Waves
被引:40
|作者:
Pan, Yulin
[1
]
Yue, Dick K. P.
[1
]
机构:
[1] MIT, Dept Mech Engn, Cambridge, MA 02139 USA
关键词:
GRAVITY-WAVES;
SURFACE;
RANGE;
D O I:
10.1103/PhysRevLett.113.094501
中图分类号:
O4 [物理学];
学科分类号:
0702 ;
摘要:
We consider the inertial range spectrum of capillary wave turbulence. Under the assumptions of weak turbulence, the theoretical surface elevation spectrum scales with wave number k as I-n similar to k(alpha), where alpha = alpha(0) -19/4, energy (density) flux P as P-1/2. The proportional factor C, known as the Kolmogorov constant, has a theoretical value of C = C-0 = 9.85 (we show that this value holds only after a formulation in the original derivation is corrected). The k(-19/4) scaling has been extensively, but not conclusively, tested; the P-1/2 scaling has been investigated experimentally, but until recently remains controversial, while direct confirmation of the value of C-0 remains elusive. We conduct a direct numerical investigation implementing the primitive Euler equations. For sufficiently high nonlinearity, the theoretical k(-19/4) and P-1/2 scalings as well as value of C-0 are well recovered by our numerical results. For a given number of numerical modes N, as nonlinearity decreases, the long-time spectra deviate from theoretical predictions with respect to scaling with P, with calculated values of alpha < alpha(0) and C > C-0, all due to finite box effect.
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