Title :
Measurement of discrete phase concentration and velocity in gas/solid two-phase flow
Author :
Wentao Li ; Jun Ye
Author_Institution :
Sch. of Inf. Eng., Inner Mongolia Univ. of Sci. & Technol., Baotou, China
Abstract :
Research of the velocity, dimension, position and manifold of the gas/solid two-phase flow is of great significance, as the flow is a widely existed and complicated pattern of multiphase flows in industrial processes. In this paper, the discrete phase concentration and velocity measurement of gas/solid two-phase fluid which cocurrent flows from bottom to top in vertical pipe is simulated and studied based on the cross-correlation theory of random processes and capacitance measurement system. With Monte-Carlo method, researchers built the gas/solid two phase flow model, and studied the measure method of discrete phase concentration and velocity under “concretionary” and “non concretionary” flow pattern conditions, and analysed the influence of the configuration parameters of capacitance sensors and the velocity, flow pattern and concentration distribution of discrete phase on the cross-correlation velocity measurement system. Matlab simulation results showed that building the gas/solid two-phase flow model and studying the cross-correlation velocity measurement system with Monte-Carlo method is valid, and this method provided a reasonable and effective way to facilitate further development of discrete phase concentration and velocity measuring technique.
Keywords :
Monte Carlo methods; capacitance measurement; capacitive sensors; electrohydrodynamics; flow measurement; flow simulation; pattern formation; pipe flow; random processes; two-phase flow; velocity measurement; Matlab simulation; Monte-Carlo method; capacitance measurement system; capacitance sensors; cocurrent flows; concentration distribution; configuration parameter; cross-correlation theory; cross-correlation velocity measurement system; discrete phase concentration measurement; gas/solid two-phase flow dimension; gas/solid two-phase flow manifold; gas/solid two-phase flow model; gas/solid two-phase flow position; gas/solid two-phase flow velocity; industrial processes; multiphase flows; nonconcretionary flow pattern condition; random processes; velocity measuring technique; vertical pipe; Atmospheric measurements; Fluid flow measurement; Particle measurements; Phase measurement; Sensors; Solids; Velocity measurement; concentration measurement; cross-correlation; gas/solid two-phase flow; monte-carlo method; velocity measurement;
Conference_Titel :
Image and Signal Processing (CISP), 2013 6th International Congress on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-4799-2763-0
DOI :
10.1109/CISP.2013.6745224