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Numerical simulation of the disintegration of forced liquid jets using volume-of-fluid method

机译:流体体积法强迫液体射流崩解的数值模拟

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The present numerical study investigates the effect of finite sinusoidal velocity modulations imposed on an otherwise unperturbed cylindrical liquid jet issuing into stagnant gas using Volume-of-Fluid (VOF) methodology. Variation of the simulation parameters, comprising of the mean liquid jet velocity, modulation amplitude and frequency grouped together using a set of non-dimensional parameters, leads to the formation of a wide gamut of reproducible liquid structures such as surface waves, upstream/downstream directed bells and chains of droplets similar to those observed in experiments. The computations efficiently capture the diverse flow structures generated by the evolving modulated liquid jet inclusive of several nonlinear dynamics such as growth of surface waves, ligament interaction with shear vortices and its subsequent thinning process. The simulations identify the deterministic behaviour of modulated liquid jets to predict liquid disintegration modes under given set of non-dimensional parameters.
机译:本数值研究研究了使用流体体积(VOF)方法对以其他方式不受干扰的圆柱状液体射流向停滞气体的喷射施加有限正弦波速度调制的影响。模拟参数的变化(包括平均液体射流速度,调制幅度和使用一组无量纲参数组合在一起的频率)会导致形成宽范围的可重现液体结构,例如表面波,上游/下游定向钟形和水滴状链与实验中观察到的相似。该计算有效地捕获了由不断变化的调制液体射流产生的各种流动结构,包括几种非线性动力学,例如表面波的增长,韧带与剪切涡旋的相互作用以及随后的变薄过程。模拟确定了调制液体射流的确定性行为,以预测在给定的无量纲参数集下的液体崩解模式。

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