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KMID : 0364920080330010013
Journal of Radiation Protection and Research
2008 Volume.33 No. 1 p.13 ~ p.20
The Flow-rate Measurements in a Multi-phase Flow Pipeline by Using a Clamp-on Sealed Radioisotope Cross Correlation Flowmeter
Kim Jin-Seop

Jung Sung-Hee
Kim Jong-Bum
Kim Jae-Ho
Lee Na-Young
Abstract
The flow rate measurements in a multi-phase flow pipeline were evaluated quantitatively by means of a clamp-on sealed radioisotope based on a cross correlation signal processing technique. The flow rates were calculated by a determination of the transit time between two sealed gamma sources by using a cross correlation function following FFT filtering, then corrected with vapor fraction in the pipeline which was measured by the -ray attenuation method. The pipeline model was manufactured by acrylic resin(ID. 8 cm, L=3.5 m, t=10 mm), and the multi-phase flow patterns were realized by an injection of compressed N2 gas. Two sealed gamma sources of 137Cs (E=0.662 MeV, factor=0.326 R h-1 m2 Ci-1) of 20 mCi and 17 mCi, and radiation detectors of 2 2 NaI(Tl) scintillation counter (Eberline, SP-3) were used for this study. Under the given conditions(the distance between two sources: 4D(D; inner diameter), N/S ratio: 0.12~0.15, sampling time t: 4msec), the measured flow rates showed the maximum. relative error of 1.7 % when compared to the real ones through the vapor content corrections(6.1 %~9.2 %). From a subsequent experiment, it was proven that the closer the distance between the two sealed sources is, the more precise the measured flow rates are. Provided additional studies related to the selection of radioisotopes their activity, and an optimization of the experimental geometry are carried out, it is anticipated that a radioisotope application for flow rate measurements can be used as an important tool for monitoring multi-phase facilities belonging to petrochemical and refinery industries and contributes economically in the light of maintenance and control of them.
KEYWORD
Sealed gamma-ray source, Cross correlation, Multi-phase flow pipe, Fourier transform, NaI(Tl) scintillation counter, Flowmeter, Industrial process diagnosis
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