首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >MULTIPHASE TRANSIENT SLUGGING FLOW IN SUBSEA OIL AND GAS PRODUCTION
【24h】

MULTIPHASE TRANSIENT SLUGGING FLOW IN SUBSEA OIL AND GAS PRODUCTION

机译:苏丹石油和天然气生产中的多相瞬变流

获取原文

摘要

Slug flow in horizontal pipelines and riser systems in deep sea has been proved as one of the challenging flow assurance issues. Large and fluctuating gas/liquid rates can severely reduce production and, in the worst case, shut down, depressurization or damage topside equipment, such as separator, vessels and compressors. Previous studies are primarily based on experimental investigations of fluid properties with air/water as working media in considerably scaled down model pipes, and the results cannot be simply extrapolated to full scale due to the significant difference in Reynolds number and other fluid conditions. In this paper, the focus is on utilizing practical shape of pipe, working conditions and fluid data for simulation and data analysis. The study aims to investigate the transient multiphase slug flow in subsea oil and gas production based on the field data, using numerical model developed by simulator OLGA and data analysis. As the first step, cases with field data have been modelled using OLGA and validated by comparing with the results obtained using PIPESYS in steady state analysis. Then, a numerical model to predict slugging flow characteristics under transient state in pipeline and riser system was set up using multiphase flow simulator OLGA. One of the highlights of the present study is the new transient model developed by OLGA with an added capacity of newly developed thermal model programmed with MATLAB in order to represent the large variable temperature distribution of the riser in deep water condition. The slug characteristics in pipelines and temperature distribution of riser are analyzed under the different temperature gradients along the water depth. Finally, the depressurization during a shut-down and then restart procedure considering hydrate formation checking is simulated. Furthermore, slug length, pressure drop and liquid hold up in the riser are predicted under the realistic field development scenarios.
机译:水平管道和深海立管系统中的塞流已被证明是具有挑战性的流量保证问题之一。较大的且波动的气/液速率会严重降低产量,在最坏的情况下,停机,降压或损坏顶侧设备(例如分离器,容器和压缩机)。以前的研究主要基于以空气/水为工作介质的流体性质的实验研究,该模型以相当大的比例缩小,并且由于雷诺数和其他流体条件的显着差异,结果不能简单地外推到满量程。在本文中,重点是利用管道的实际形状,工作条件和流体数据进行仿真和数据分析。这项研究的目的是,使用模拟器OLGA开发的数值模型和数据分析,基于现场数据研究海底油气生产中的瞬态多相段塞流。第一步,使用OLGA对具有现场数据的案例进行建模,并通过与在稳态分析中使用PIPESYS获得的结果进行比较来进行验证。然后,使用多相流模拟器OLGA建立了预测管道和立管系统瞬态状态下塞流特性的数值模型。本研究的重点之一是由OLGA开发的新的瞬态模型,并增加了使用MATLAB编程的新开发的热模型的能力,以表示深水条件下立管的较大的温度分布。分析了沿水深不同温度梯度下管道的段塞特性和立管温度分布。最后,模拟了考虑水合物形成检查的停机过程中的降压过程,然后重新启动了过程。此外,在实际的现场开发情景下,还预测了立管中的塞料长度,压降和液体滞留情况。

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