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Mass Entrainment Rate of an Ideal Momentum Turbulent Round Jet

机译:大众夹带率理想的动量湍流圆射流

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We propose a two-phase-fluid model for a full-cone turbulent round jet that describes its dynamics in a simple but comprehensive manner with only the apex angle of the cone being a disposable parameter. The basic assumptions are that (i) the jet is statistically stationary and that (ii) it can be approximated by a mixture of two fluids with their phases in dynamic equilibrium. To derive the model, we impose conservation of the initial volume and total momentum fluxes. Our model equations admit analytical solutions for the composite density and velocity of the two-phase fluid, both as functions of the distance from the nozzle, from which the dynamic pressure and the mass entrainment rate are calculated. Assuming a far-field approximation, we theoretically derive a constant entrainment rate coefficient solely in terms of the cone angle. Moreover, we carry out experiments for a single-phase turbulent air jet and show that the predictions of our model compare well with this and other experimental data of atomizing liquid jets.
机译:我们提出了一种用于全锥形湍流圆射流的两相流体模型,其以简单但综合的方式描述其动力学,只有锥体的顶角是一次性参数。基本假设是(i)射流在统计上静止,并且(II)它可以通过两个流体的混合物在动态平衡中的相位近似。为了衍生模型,我们施加了初始体积和总动量通量的保护。我们的模型方程承认用于复合密度和两相流体的速度的分析解,无论是从喷嘴的距离的函数,都计算动态压力和质量夹带速率。假设远场近似,我们理论上完全从锥角衍生恒定的夹带速率系数。此外,我们对单相湍流空气射流进行实验,并表明我们的模型的预测与雾化液体喷射的这种和其他实验数据相比很好。

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