Downhole Flow Sensor System Launched

Flow level pressure

Downhole Flow Sensor System Launched

10 Oct, 2011

Published over 14 years ago. See the latest and most current information on Flow level pressure.

Emerson Process Management has launched its new downhole flow sensor system. The new system will, for the first time, generate multiphase flow measurements from downhole in the well, leading to increased operator understanding of reservoir flow and zonal contributions from wells and increased production control and optimisation.

“Probably the single piece of data operators want to know most about, as part of their reservoir monitoring activities today, is the flow from individual wells. Yet, the growing complexity of well architecture, with an increase in multilateral and multi-zone wells, has led to operators having to settle on total production flow data rather than flow from specific well zones”, said Terje Baustad of Emerson Process Management.

“That’s why the Roxar Downhole Flow Sensor System represents such a step-change in reservoir monitoring and flow assurance. We have taken multiphase measurement downhole to provide full multiphase measurements, including fluid fractions and flow rates, from either single bore or multilateral well configurations and to help operators increase field recovery.”

The Roxar Downhole Flow Sensor System includes a new water cut measurement tool based on dual velocity measurements and a density sensor, measuring the density of flow effluent using gamma rays. The system can operate at pressures and temperatures of up to 10,000 psi and 150 ºC respectively. A compact and easy to use solution; the 3.5” tool and ¼” cable is compact and easy to install, fitting in both thin zones between packers and in 7” liner/casing. There is a single conductor for all tools including the downhole gauge and the system can be retrofitted to existing subsea monitoring systems without the need for modifications. Measurements are performed in the tubing through non-intrusive sensors.

PIN 27.2 Apr/May 2026

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