井干预

现场试验评估非放射性多相流量计

本研究的目的是对非核多相流量计进行现场测试,并评估其在严苛运行条件下的性能。

图1-放射性MPFM。
图1-放射性MPFM。
来源:SPE 229654。

非核多相流量计(MPFM)为传统的核式流量计系统提供了一种替代方案,它既能满足环境和监管方面的要求,又能保持测量精度和可靠性。本研究旨在对非核MPFM进行现场测试,并评估其在严苛工况下的性能。结果表明,该非核MPFM在回流作业中测量油、水和气的多相流量时表现可靠,其测量精度与传统分离器数据相比处于可接受的误差范围内,并且在不同的流量条件下均具有良好的重复性。

非核多相流测量

本研究中使用的多参数流量监测系统(MPFM)具备全方位、非核能功能,并拥有增强的数据智能和简易的操作特性。该技术专为各种生产环境而设计,包括重油和湿气应用,可实时、精确地监测单个或多个油井。

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Well intervention

Field Tests Evaluate Nonradioactive Multiphase Flowmeters

The objective of this study is to field test a non-nuclear multiphase flowmeter and assess its performance under challenging operating conditions.

Fig. 1—Nonradioactive MPFM.
Fig. 1—Nonradioactive MPFM.
Source: SPE 229654.

Non-nuclear multiphase flowmeters (MPFMs) offer an alternative to traditional nuclear-based flow-metering systems, addressing environmental and regulatory concerns while potentially maintaining measurement accuracy and reliability. The objective of this study was to field test a non-nuclear MPFM and assess its performance under challenging operating conditions. The non-nuclear MPFM demonstrated reliable performance in measuring multiphase flow rates of oil, water, and gas during flowback operations, with measurement accuracy within an acceptable margin of error compared with conventional separator data, with good repeatability under varying flow conditions.

Non-Nuclear Multiphase-Flow Measurement

The MPFM deployed in this study offers full-range, non-nuclear capabilities with enhanced data intelligence and operational simplicity. This technology is engineered for versatile production environments, including heavy-oil and wet-gas applications, and monitors individual or group wells accurately in real time.

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