首页> 外文会议>11th Abu Dhabi international petroleum exhibition amp; conference (ADIPEC) >Combination of Dual-Energy Gamma Ray/Venturi Multiphase Flowmeter and Phase Splitter for Application in Very High Gas Volume Fraction Environment
【24h】

Combination of Dual-Energy Gamma Ray/Venturi Multiphase Flowmeter and Phase Splitter for Application in Very High Gas Volume Fraction Environment

机译:双能伽马射线/文丘里管多相流量计和分相器的组合,可用于极高气体体积分数的环境

获取原文
获取原文并翻译 | 示例

摘要

In mature fields, operators are confronted with wells producing high water cut at low pressure with consequently very high gas volume fraction (GVF). Under these conditions, the net oil flow rate is low and therefore, permanent or periodic testing becomes critical to determine profitability and manage the field production. rnTo optimize and monitor the oil production under these conditions, operators are looking to utilize multiphase flowmetering technologies. Accuracies achievable by inline multiphase flowmeters have greatly improved in recent years, but liquid and water-cut measurement accuracies decrease when the GVF is very high. rnAt low pressure to reduce the GVF, it is necessary to separate a large portion of the gas upstream of the multiphase flowmeter, thus enabling optimum measurement of the liquid and water cut under lower-GVF conditions. rnMarket drivers generally dictated by operator requirements have resulted in the formation of an project team with specific Middle East focus to deliver an operational prototype for a production well testing campaign on a fast track basis. The package comprises a partial separation unit and a dual-energy gamma ray/Venturi meter. rnThe selection of a partial separation design was based on a review of the commercially available solutions capable of handling the large operating range required for use in periodic well testing applications in terms of flow rates and pressure rating. The design comprises gas liquid cylindrical cyclone with tangential inlet. The capacity of each device to ensure a dry gas phase with minimum pressure loss over the complete required operating range was critical in the selection process. rnThis paper presents test results validating that a gas liquid cylindrical cyclone located upstream of a dual-energy gamma ray/Venturi meter is an effective partial separation system. With an inlet GVF of 99% and 90% of the inlet gas extracted by the partial separation system, the GVF at the multiphase flowmeter condition is below 90%, and accurate measurement of the 3 phases is achieved.
机译:在成熟的油田中,操作员面对的井在低压下产生高含水率,因此产生很高的瓦斯体积分数(GVF)。在这些条件下,净油流量低,因此,永久性或定期测试对于确定盈利能力和管理现场生产至关重要。为了在这些条件下优化和监控石油产量,运营商正在寻求利用多相流量计技术。近年来,在线多相流量计可实现的精度已大大提高,但是当GVF很高时,液体和含水率测量精度会降低。为了降低GVF,在低压下,有必要在多相流量计的上游分离大部分气体,从而能够在较低GVF条件下对液体和水的流量进行最佳测量。 rn通常由操作员要求决定的市场驱动因素导致组建了一个专门针对中东的项目团队,以便为快速进行生产井测试活动提供操作原型。该包装包括部分分离装置和双能伽马射线/文丘里计。 rn选择部分分离的设计是基于对市场上可买到的解决方案的审查,这些解决方案在流量和压力额定值方面能够处理定期测井应用中所需的较大工作范围。该设计包括带有切向入口的气液圆柱形旋风分离器。在选择过程中,每个设备确保在整个要求的工作范围内具有最小压力损失的干燥气相的能力至关重要。 rn本文提出了测试结果,验证了位于双能伽马射线/文丘里计的上游的气液圆柱形旋风分离器是有效的部分分离系统。通过部分分离系统提取的进气的GVF为99%和90%,在多相流量计条件下的GVF低于90%,并且可以精确测量三相。

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