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Fast downhole fluid viscosity and density measurements using a self-oscillating tuning fork device

机译:快速井下液体粘度和密度测量使用自振荡调谐叉装置

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The ability to characterize fluids as they are being produced is of great importance for reservoir management in the petroleum industry. Real-time information about changes in flow characteristics and fluid composition during production requires downhole (or surface) measurements that are able to probe the properties of the fluid in time scales shorter than those of the characteristic flow speeds. In this work, we demonstrate the use of a tuning fork sensor for fast viscosity and density measurements which would enable the characterization of transient fluid properties such as in multiphase flows of liquids. This functionality is enabled by using a piezoelectric tuning fork as the frequency defining element in an oscillator circuit. The feedback loop in the oscillator circuit is continuously turned on and off to allow the tuning fork to ring up and ring down. By monitoring the frequency and the decay rate during ring-down, transient changes in density and viscosity can be obtained within milliseconds in liquids. The compact measurement scheme implemented here allows us to use the tuning fork as a flow detection and fluid characterization sensor in an untethered well-logging tool for rapid downhole well diagnostics.
机译:能够在制造时表征流体,这对于石油工业中的水库管理非常重要。关于生产过程中的流动特性和流体组合物的变化的实时信息需要井下(或表面)测量,该测量能够探测比特征流速短的时间刻度的流体的性质。在这项工作中,我们证明了使用调谐叉传感器以快速粘度和密度测量,这将使瞬态流体性质如诸如多相流动的液体中的表征。通过使用压电调谐叉作为振荡器电路中的频率定义元件来实现该功能。振荡器电路中的反馈回路连续打开和关闭,以允许调谐叉响起并响起。通过监测扭转期间的频率和衰减速率,可以在液体中毫秒内获得密度和粘度的瞬态变化。在此实现的紧凑测量方案允许我们在不可立井井诊断中使用调谐叉作为流量检测和流体表征传感器,以便快速井下井井诊断。

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