TY - JOUR AU - Jansen, T. H. AB - A robust fibre optic flow sensor has been developed to measure liquid or gas flows at ambient temperatures up to 300 ÂșC and pressures up to 100 bar. While such environmental conditions are typical in pressurized steam systems in the oil and gas industry (downhole and surface), wider applications are envisaged. The flow sensor uses a specially-designed bluff body to generate vortex-induced pressure fluctuations as a function of flow. The pressure fluctuations result in mechanical strain fluctuations in the sensor plate which is attached to the bluff-body. This is detected by means of a Fibre Bragg Grating (FBG). The frequency of the pressure fluctuations is proportional to the flow velocity and is measured by analyzing the spectrum of the FBG sensor signal. Flow velocity measurements ranging from ~1 m/s to ~25 m/s have been demonstrated. Special mechanical design, gluing and packaging processes have been developed to enable applications at high temperatures and high pressures (HPHT). Although the working principle is the same as for conventional vortex flow meters, this flow sensor does not require electronics, which is a great advantage at high temperatures. TI - Development of a FBG vortex flow sensor for high-temperature applications JO - Proceedings of SPIE DO - 10.1117/12.886051 DA - 2011-05-15 UR - https://www.deepdyve.com/lp/spie/development-of-a-fbg-vortex-flow-sensor-for-high-temperature-FK4M6DAPtd SP - 77536V EP - 77536V-4 VL - 7753 IS - 1 DP - DeepDyve ER -