DocumentCode :
719931
Title :
Gas-water two-phase flow characterization with ERT and multivariate MLE
Author :
Nana Wang ; Chao Tan ; Feng Dong
Author_Institution :
Tianjin Key Lab. of Process Meas. & Control, Tianjin Univ., Tianjin, China
fYear :
2015
fDate :
11-14 May 2015
Firstpage :
57
Lastpage :
61
Abstract :
Gas-water two-phase flow widely exists in scientific researches and industrial production processes. Identification of flow regimes and understanding of inherent flow behaviors are significant to the accurate measurement of gas-water two-phase flow parameters. The maximum Lyapunov exponent (MLE) is a degree of quantitative description to a nonlinear dynamical system. Compared with single time series, the MLE of a multivariate time series provides more comprehensive information regarding the system´s dynamics. In order to characterize and identify the flow patterns of gas-water two-phase flow, the MLE of multivariate time series is extracted from an electrical resistance tomography (ERT). The MLE verifies that gas-water two-phase flow is a complex nonlinear dynamic system. The value of MLE can characterize and thus identify the flow pattern changes with the superficial velocity ratio of gas-water two-phase flow regime.
Keywords :
electrical resistivity; flow visualisation; nonlinear dynamical systems; pattern formation; time series; tomography; two-phase flow; water; H2O; electrical resistance tomography; gas-water two-phase flow pattern characterization; maximum Lyapunov exponent; multivariate MLE; multivariate time series; nonlinear dynamical system; superficial velocity ratio; Electrodes; Fluid flow measurement; Image reconstruction; Maximum likelihood estimation; Plugs; Time series analysis; Voltage measurement; electrical resistance tomography; flow regime; gas-water two-phase flow; maximum Lyapunov exponent; multivariate time series;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation and Measurement Technology Conference (I2MTC), 2015 IEEE International
Conference_Location :
Pisa
Type :
conf
DOI :
10.1109/I2MTC.2015.7151240
Filename :
7151240
Link To Document :
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