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An orthogonal numerical simulation experiment study towards the decay characteristics and effective swirl length of the swirling flow in a vortex tool inserted tube

机译:涡旋工具中旋转特性的正交数值模拟实验研究涡流旋转流动的旋转特性及有效旋流长度

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Studying the decay characteristics and effective swirl length of the gas-liquid two-phase swirling flow generated by vortex tools is of great significance for improving its drainage effect. The effective swirl length is a key parameter related to the working performance, installation spacing and downstream pressure dynamics of vortex tools. However, works addressing the effective swirl length are rare in the literature. In this research, the decay characteristics and effective swirl length of a swirling flow and the factors that affect the swirling flow are systematically investigated using the orthogonal numerical simulation experiment method. Good agreements are achieved between existing experimental data and the numerical results of this study. The range analysis results reveal that the helix angle, mandrel diameter and vane axial length play dominant roles in the initial swirl intensity. An increase in the helix angle results in a decrease in the initial swirl intensity, while the mandrel diameter has the opposite effect. The swirl intensity decay rate is mainly affected by the Reynolds number, helix angle and vane axial length; the decay rate has a negative correlation with the first two factors and a positive correlation with the third factor. On this basis, a comprehensive decay model of the swirl intensity is proposed after obtaining the correlations for the geometrical swirl intensity and swirl intensity decay rate. Furthermore, an effective swirl length evaluation method is established, and the optimal vortex tool structure of a typical gas well is obtained with a helix angle of 55 degrees, a mandrel diameter of 38 mm, a vane axial length of 120 mm and a vane width of 15 mm.
机译:研究涡旋工具产生的腐蚀特性和有效旋流长度,对改善其排水效果具有重要意义。有效的旋流长度是与涡旋工具的工作性能,安装间距和下游压力动态相关的关键参数。然而,解决有效旋流长度的作品在文献中很少见。在该研究中,系统地利用正交数值模拟实验方法系统地研究了旋转流动的衰减特性和有效旋流,以及影响旋流流动的因素。在现有的实验数据和本研究的数值结果之间实现了良好的协议。范围分析结果表明,螺旋角度,心轴直径和叶片轴向长度在初始旋流强度中起显性作用。螺旋角的增加导致初始旋流强度的降低,而心轴直径具有相反的效果。旋流强度衰减率主要受雷诺数,螺旋角和叶片长度的影响;衰减率与前两个因素的负相关性和与第三因素的正相关性。在此基础上,提出了旋流强度的综合衰变模型,以获得几何旋流强度和旋流强度衰减率的相关性。此外,建立了有效的涡流长度评估方法,并且通过螺旋角度为55度,心轴直径为38mm,叶片轴长为120mm,叶片宽度的最佳涡旋工具结构获得典型的气体阱。 15毫米。

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