Articles liés à Differential Dielectric Sensor: Analysis and Experimental...

Differential Dielectric Sensor: Analysis and Experimental Investigation of a Modular Differential Dielectric Sensor for Use in Multiphase Separation, Process Measurement and Control - Couverture souple

Xiang, Dong

 
9783836485814: Differential Dielectric Sensor: Analysis and Experimental Investigation of a Modular Differential Dielectric Sensor for Use in Multiphase Separation, Process Measurement and Control

Synopsis

In subsea processing systems, oil industry increasingly demands accurate and stable continuous measurement of the percent water in crude oil production streams (watercut) over the entire 0 to 100% range. Differential Dielectric Sensors (DDS) have been developed as independent tools connected with multiphase meters for process management and composition measurement. DDS is unique in its use of very low noise and high sensitivity differential measurements between two identical sensors and the use of physics based models for multiphase flow characterization. Existing watercut tools predominantly depend on empirical data and correlations that are sensitive to fluid properties and therefore are limited in their general applicability. The main objective of this work is to develop appropriate mathematical models for the sensor. Finite Element Analysis (FEA) and experimental investigations have been conducted to validate the sensor analytical models. This study provides the scientists and engineers a powerful tool for process management and control in the oil industry.

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Présentation de l'éditeur

In subsea processing systems, oil industry increasingly demands accurate and stable continuous measurement of the percent water in crude oil production streams (watercut) over the entire 0 to 100% range. Differential Dielectric Sensors (DDS) have been developed as independent tools connected with multiphase meters for process management and composition measurement. DDS is unique in its use of very low noise and high sensitivity differential measurements between two identical sensors and the use of physics based models for multiphase flow characterization. Existing watercut tools predominantly depend on empirical data and correlations that are sensitive to fluid properties and therefore are limited in their general applicability. The main objective of this work is to develop appropriate mathematical models for the sensor. Finite Element Analysis (FEA) and experimental investigations have been conducted to validate the sensor analytical models. This study provides the scientists and engineers a powerful tool for process management and control in the oil industry.

Biographie de l'auteur

Dr. Dong Xiang received his Ph.D. degree in Mechanical Engineering and M.S. degree in Electrical Engineering from the University of Tulsa, USA. He also holds M.S. and B.S. degrees separately form Chongqing University and Sichuan Institute of Technology, China. Now he works as senior project engineer in Core Laboratories LP, USA.

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