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INITIATION AND STATISTICAL DEVELOPMENT OF SLUG FLOW WITH A HIGH RESOLUTION TWO-FLUID MODEL

机译:高分辨率两流体模型的弹体流动的建立与统计发展

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In the present work, the onset and subsequent development of slug flow in horizontal pipes is investigated by accurately solving the transient one-dimensional version of the Two-Fluid Model using a finite volume technique. Growth of disturbances that eventually bridge the pipe section is an automatic outcome of the solution of the discretized equations in a high resolution mesh, avoiding the need for the commonly used phenomenological models for the stratified to slug transition. Slug dynamics evolve naturally without the need of empirical correlations for slug parameters. This methodology (named "slug-capturing") was proposed before in the literature and the present work represents a rare confirmation of its applicability in predicting this very complex flow regime. Here, different configurations are analyzed and comparisons are performed against different sets of experimental data. Additionally, statistical analysis of the slug parameters is performed and it is shown through comparisons against experimental measurements that this methodology is able not only to provide mean values of e.g. slug and bubble lengths and their evolution inside the pipe, but also shapes of probability density functions (PDFs), with a good degree of accuracy.
机译:在目前的工作中,通过使用有限体积技术精确求解两流体模型的瞬态一维形式,研究了水平管中团状流的产生和随后的发展。最终桥接管段的扰动的增长是高分辨率网格中离散方程求解的自动结果,从而避免了用于从分层到段塞过渡的常用现象学模型。弹头动力学自然地发展,而无需弹头参数的经验相关性。以前在文献中提出了这种方法(称为“塞子捕获”),并且本工作代表了其在预测这种非常复杂的流动状态中的适用性的罕见确认。在这里,分析了不同的配置,并针对不同的实验数据集进行了比较。另外,进行了塞子参数的统计分析,并且通过与实验测量值的比较表明,该方法不仅能够提供例如平均值的平均值。塞子和气泡的长度及其在管道内的演变,以及概率密度函数(PDF)的形状,具有很高的准确性。

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