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Numerical simulation of bubble separation length in a gas-liquid separator based on the Euler-Lagrange method

机译:基于Euler-Lagrange方法的气液分离器中气泡分离长度的数值模拟

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In this study, the bubble separation behavior in a gas-liquid separator is numerically investigated on the basis of the Euler-Lagrange approach, in which the forces acting on bubbles in a swirling flow field are modeled to calculate the trajectories of the bubbles. By adopting this approach, the effects of five parameters, namely, back pressure, Reynolds number, bubble diameter, void fraction, and swirl number, on separation performance in terms of pressure loss, separation efficiency, separation length, and split ratio are computed and analyzed. On the basis of the analysis, correlations of separation length with the two main parameters are established, which can serve as a basis for the optimal design of separator.
机译:在该研究中,基于欧拉拉格兰·拉格朗朗方法进行数值研究气液分离器中的泡沫分离行为,其中建模起在旋流流场中的气泡作用的力以计算气泡的轨迹。 通过采用这种方法,在压力损失,分离效率,分离长度和分离比方面,五个参数,即背压,雷诺数,气泡直径,空隙分数和旋流数的效果。 分析。 在分析的基础上,建立了与两个主要参数的分离长度的相关性,其可以作为分离器最佳设计的基础。

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