首页> 外文期刊>Flow Measurement and Instrumentation >Two-phase flow metering of heavy oil using a Coriolis mass flow meter: A case study
【24h】

Two-phase flow metering of heavy oil using a Coriolis mass flow meter: A case study

机译:使用科里奥利质量流量计的重油两相流量计量:案例研究

获取原文
获取原文并翻译 | 示例
       

摘要

The use of Coriolis mass flow metering for two-phase (gas/liquid) flow is an emerging theme of both academic research and industrial application, The key issues are maintaining flow-tube operation, and modelling and correcting for the errors induced in the mass flow and density measurements. Experimentally-derived data is used to illustrate that these errors vary most notably with gas void fraction (GVF) and liquid flow rate, but other factors such as flow-tube geometry and orientation, and fluid properties such as viscosity are also influential. While undoubtedly a universal two-phase flow correction model is the ultimate research goal, there is currently no obvious candidate to explain the range of behaviours observed. This paper describes and demonstrates an empirical methodology that has proven effective in developing good correction models for a given choice of Coriolis flow-tube and flow mixture. A growing proportion of the world's oil reserves may be described as "heavy", implying high density and high viscosity. Of the various metering challenges heavy oil poses, one of the most significant is its ready entrainment of gas, and the difficulties entailed in separating gas from the oil, Accurate two-phase measurement of heavy oil is therefore an especially desirable technical goal. Trials were carried out at the National Engineering Laboratory (NEL), Scotland on a 75 mm flowmeter using a high viscosity oil. Flowrates from 1 kg/s to 10 kg/s were examined, with gas void fraction (GVF) up to 80%. The resulting models were tested online in a commercial Coriolis mass flow meter and demonstrated good performance for both steady and slugging two-phase flows, with the corrected measurements typically within l%-5% of the nominal mass flow and density, Field trials in Venezuela have confirmed the performance of this two-phase solution. While research continues into the development of a generic two-phase correction, this case study demonstrates that the current state of the art can provide, for economically important fluids, tailored models with good two-phase flow performance.
机译:将科里奥利质量流量计用于两相(气体/液体)流量是学术研究和工业应用的新兴主题。关键问题是保持流量管的运行以及对质量中引起的误差进行建模和校正。流量和密度测量。实验得出的数据用于说明这些误差随气体空隙率(GVF)和液体流速的变化最为明显,但其他因素(例如流管的几何形状和方向)以及流体特性(例如粘度)也有影响。虽然毫无疑问,通用的两相流修正模型是最终的研究目标,但目前尚无明显的候选者可以解释所观察到的行为范围。本文描述并演示了一种经验方法,该方法已被证明可以有效地为给定的科里奥利流量管和流量混合物选择开发良好的校正模型。世界上越来越多的石油储量可谓“重油”,这意味着高密度和高粘度。在重油带来的各种计量挑战中,最重要的问题之一就是它容易夹带气体,并且难以从油中分离出气体。因此,精确的两相重油测量是特别理想的技术目标。在苏格兰国家工程实验室(NEL)上使用高粘度油在75毫米流量计上进行了试验。检查了从1 kg / s到10 kg / s的流量,气体空隙率(GVF)高达80%。所得模型在商用科里奥利质量流量计上进行了在线测试,并显示出稳定的和迟滞的两相流均具有良好的性能,校正后的测量值通常在标称质量流量和密度的1%-5%之内,委内瑞拉的现场试验已确认此两阶段解决方案的性能。尽管继续研究通用的两相校正技术,但该案例研究表明,对于具有重要经济意义的流体,当前的最新技术可以提供具有良好两相流动性能的定制模型。

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