Title :
Optical measurement system for two-phase flow in horizontal small tube based on photodiode arrays
Author :
Ji, Haifeng ; Fu, Chong ; Huang, Zhiyao ; Wang, Baoliang ; Li, Haiqing
Author_Institution :
Dept. of Control Sci. & Eng., Zhejiang Univ., Hangzhou, China
Abstract :
Based on photodiode array, an optical measurement system is established for gas-liquid two-phase flow in small tubes. A method is proposed for characterization and flow regime identification of gas-liquid two-phase flow. In the experiment, different flow regimes are observed in a horizontal glass tube with inner diameter of 4.02mm and outer diameter of 6.12mm, and voltage signals are obtained from the 8-element photodiode array through sensing circuits. Probability density function (PDF) and Fourier transform are used for the analysis on signal characteristics of flow regimes. To identify flow regimes, eigenvalues of the statistics are calculated, then the principal component analysis (PCA) is implemented to reduce the dimensionality of data sets, finally support vector machine (SVM) is applied for identification. Experimental results show that the optical system based on photodiode array is effective in the measurement of gas-liquid two-phase flow parameters in small tubes. The proposed method proves effective in characterization and flow regime identification of gas-liquid two-phase flow, and the experimental results are satisfactory.
Keywords :
Fourier transforms; eigenvalues and eigenfunctions; flow measurement; photodiodes; pipe flow; principal component analysis; signal processing; support vector machines; two-phase flow; Fourier transform; PCA; PDF; SVM; eigenvalues; flow characterization; flow regime identification; flow regime signal characteristics; gas-liquid two phase flow; horizontal glass tube; horizontal small tube flow; optical measurement system; photodiode arrays; principal component analysis; probability density function; sensing circuits; size 4.02 mm; size 6.12 mm; support vector machine; voltage signals; Computer vision; Electron tubes; Image motion analysis; Optical variables measurement; Photodiodes; Principal component analysis; Support vector machines; flow regime; gas-liquid two-phase flow; identification; optical measurement technique; photodiode array; small tube;
Conference_Titel :
Instrumentation and Measurement Technology Conference (I2MTC), 2012 IEEE International
Conference_Location :
Graz
Print_ISBN :
978-1-4577-1773-4
DOI :
10.1109/I2MTC.2012.6229312