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Numerical Simulation of Dynamics of the Drop Formation at a Vertical Capillary Tube

机译:垂直毛细管下液滴形成动力学的数值模拟

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The objective of this work is to study the parametric effects on the drop formation. For this, an experimentally verified computational domain that gives an accurate result is developed in the commercial software, FLUENT version 14.0. The numerical simulation of the Navier-Stokes equation has been obtained by combining the volume of fluid model with the finite volume method. To obtain the precise results in the finite volume technique, fine meshing is developed to track the movement of droplet in the air interface. The shape of drop formation obtained through the computational method is being verified with the experimental results available in the literature. The effect of parameters, i.e., viscosity and flow rate, is investigated in detail and also validated with the previous research works. The effect of viscosity on the development of satellite drop formation is also studied. This work is quite good agreement with the experimental work.
机译:这项工作的目的是研究对下降形成的参数效果。为此,在商业软件,流畅的14.0版中开发了一个提供准确结果的实验​​验证的计算域。通过将流体模型与有限体积法相结合来获得Navier-Stokes方程的数值模拟。为了获得有限体积技术的精确结果,开发出细啮合以跟踪空气接口中液滴的运动。通过在文献中可获得的实验结果来验证通过计算方法获得的液滴形成的形状。参数,即粘度和流速的效果详细研究,并在以前的研究作品中验证。还研究了粘度对卫星滴形成发展的影响。这项工作与实验工作相当愉快。

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