Diffusion of Particles in Fully-Developed Turbulence
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概要
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The relative diffusion of a pair of dye particles in homogeneous steady turbulence is studied form the view point that the turbulent transport is due to the vortex stretching of eddies in the inertial range. Thus, with the aid of Mori's (1980) formula for the vortex stretching, it is shown that the eddy diffusion rate is given by dL_*^2/dt=AL_*^<(4+2μ)/3> with A=A^^^ ε^<1/3> L^<-2μ/3> , where L_*^2(t) is the mean square of the relative distance of the pair at time t,εthe mean rate of the energy transfer form large eddies to small eddies, L the length scale of production range and μthe intermittency exponent. It turns out that A^^^ ≒ 1.39 for μ=0 and 1.22 for μ=1/3, where Kolmogorov's constant is taken to be 1.5. This diffusion law is valid for L > L_*(t)≫l_d, where l_d is the length scale of the dissipation range. Hence it turns out that Richardson's (1926) empirical 4/3 law holds if μ is very small. If L_*(t)≫L_*(0), then L_*^2(t)〜t^<3/(1-μ)> . Therefore, if 0.25≳μ≳0.5 as experiments indicate, then the intermittency correction leads to an appreciable deviation from the t^3 law. The condition L_*(t)< L is written as t< t_L, where L_*(t_L)=L and the upper limit of t_L is given by t^^^ _L≡t_L/(L^2/ε)^<1/3> ≒2.16 for μ=1/3 in the limit L_*(0)/L→0.
- 理論物理学刊行会の論文
- 1982-08-25
著者
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Mori Hazime
Department Of Applied Physics Faculty Of Engineering Kyushu University
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TAKAYOSHI Kiyofumi
Department of Physics, Kyushu University
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Takayoshi Kiyofumi
Department Of Physics Kyushu University
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