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Non-Intrusive Microwave System for Multiphase Flow Metering

机译:用于多相流量计量的非侵入式微波系统

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Accurate and reliable measurement of oil, gas and water flow rates as they flow along a pipe as a mixture continues to be a challenging problem in the oil and gas industry. Most of the solutions rely on radioactive sources. This paper explores the use of microwave sensors for flow rate measurement. Microstrip Patch sensors in transmission mode and a near field coaxial probe in reflection mode are used to estimate water fraction even in lossy (saline) medium using physics based models with minimal calibration. Reflection measurements from the Patch sensors are used to estimate gas fraction using empirical models which can enable measurement of gas in high loss cases. Gas velocity is measured from cross correlation. A low cost 5-port measuring instrument was built to do reliable reflection and transmission measurements over a wide temperature range. The microwave system was tested in in-house and external flow loops and in the field under varying temperatures and flow conditions and test results are presented in this paper.
机译:当它们沿着一个管作为混合物流动的油,气和水的流率精确可靠的测量仍然是在石油和天然气行业具有挑战性的问题。大多数解决方案依靠放射源。本文探讨对流量测量的使用微波传感器。在透射模式和反射模式的近场同轴探针微带贴片传感器被用来估计,即使在有损(盐水)中使用基于物理模型以最小的校准水分数。从贴片传感器反射测量使用经验模型,其可以使气体的测量在高损耗的情况下用于估计气体馏分。气体速度是从互相关测量。一个低成本的,5端口测量仪器建在很宽的温度范围内做可靠反射和传输测量。微波系统在内部和外部循环流和外地不同温度下进行测试和流动条件和试验结果列于本文提出。

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