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Mixing of Saline Gravity Current Jet into Ambient Freshwater in Weakly Turbulent Regime

机译:在弱湍流区将盐水重力射流混合到环境淡水中

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This paper investigates mixing of a saline water jet into ambient freshwater at rest in a large basin. Reynolds-averaged Navier-Stokes (RANS) and diffusion-convection equations of the saline water volume fraction are used to model the mixing and the propagation of the saline gravity current jet. The comparison of the numerical and experimental front positions shows good agreement for Reynolds and Richardson numbers varying in the ranges 2,222R3,889 and 0.003Ri0.01, respectively. The numerical simulations of the hydrodynamic fields show that the velocity maximum is located at 0.18 z0.5, where z0.5 is the height at which the mean velocity is equal to half the maximum velocity umax. The local gradient Richardson number Rig shows that maximum turbulent mixing occurs at z approximate to z0.5 in the first stage of the gravity current close to the inlet, whereas far from the inlet, the turbulent mixing collapses. The entrainment depends both on the front position and on the values of the isodensity threshold, whereas it is independent of bulk Reynolds and Froude numbers in the narrow ranges (800Rb1200; 0.30.5).
机译:本文研究了在大型盆地中静止时将盐水喷射流与周围淡水的混合情况。盐水体积分数的雷诺平均Navier-Stokes(RANS)和扩散对流方程用于建模盐水重力流的混合和传播。数值和实验前沿位置的比较表明,雷诺数和理查森数分别在2,222

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