首页> 外文期刊>International Journal of Multiphase Flow >Lagrangian slug flow modeling and sensitivity on hydrodynamic slug initiation methods in a severe slugging case
【24h】

Lagrangian slug flow modeling and sensitivity on hydrodynamic slug initiation methods in a severe slugging case

机译:拉格朗日段塞流模型和严重段塞情况下流体动力学段塞引发方法的敏感性

获取原文
获取原文并翻译 | 示例
           

摘要

Severe slugging is a dynamic two-phase flow phenomenon with regular liquid accumulation and blow-out in flow-line riser geometries. This paper discusses the applicability of a slug tracking model on a case where hydrodynamic slug initiation in a horizontal part of the pipeline upstream the riser base affects the severe slugging cycle period. The given experimental case is from the Shell laboratories in Amsterdam: air-water flow in a 100. m long pipe (65. m horizontal and 35. m-2.54° downwards) followed by a 15. m long vertical riser.A Lagrangian slug and bubble tracking model is described. A two-fluid model is applied in the bubble region and the slug region is treated as incompressible flow, with an integral momentum equation. Slug initiation from unstable stratified flow can be captured directly by solving the two-fluid model on a fine grid (a hybrid capturing and tracking scheme). Alternatively, slug initiation can be made from sub grid models, allowing for larger grid sizes. The sub grid models are based on the two established flow regime transition criteria derived from the stability of stratified flow and from the limiting solution of the unit cell slug flow model.Sensitivity studies on hydrodynamic slug initiation models on the severe slugging characteristics are presented. No hydrodynamic slug initiation (e.g. large grid size in the capturing scheme) overestimates the severe slug period compared with the experiments. Slug capturing and sub grid initiation models both give good predictions for small grid sizes (provided the detailed inlet configuration is included in the capturing case). Good predictions are also shown for larger grid sizes (factor of 50) and sub grid initiation models.The numerical tests show that correct prediction of the severe slugging cycle is sensitive to the initiation of upstream hydrodynamic slugs, but less sensitive to the local structure of the slug flow (frequencies and lengths) in the upstream region.
机译:严重拍击是一种动态的两相流现象,在流水线立管几何结构中有规则的液体积聚和喷出。本文讨论了一种段塞跟踪模型的适用性,在这种情况下,立管基部上游管道水平段的水动力段塞引发会影响严重的段塞周期。给定的实验案例来自阿姆斯特丹的壳牌实验室:空气在100米长的管道(水平65.m,向下35.m-2.54°)中流动,然后是15米长的垂直立管。描述了气泡跟踪模型。将两个流体模型应用于气泡区域,并将段塞区域视为不可压缩流,并带有积分动量方程。通过在精细网格上求解双流体模型(混合捕获和跟踪方案),可以直接捕获来自不稳定分层流的团状引发。或者,可以从子网格模型中进行段塞引发,从而允许更大的网格大小。子网格模型基于分层流的稳定性和单胞弹塞流模型的极限解导出的两个已建立的流态转换准则。提出了关于水动力弹塞初始模型对严重弹头特性的敏感性研究。与实验相比,没有流体动力弹头启动(例如捕获方案中较大的网格尺寸)高估了严重的弹头期。子弹捕获和子网格起始模型都可以为较小的网格尺寸提供良好的预测(前提是捕获案例中包含详细的进气口配置)。对于较大的网格尺寸(50的因子)和子网格起爆模型也显示了良好的预测。数值测试表明,正确的重击周期预测对上游水动力弹丸的启动较为敏感,但对流域局部结构的敏感性较小。上游区域的团状流(频率和长度)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号