A High-Resolution Resistive Probe for Nonlinear Analysis of Two-Phase Flows
Author(s) -
Luciano Cantelli,
Alberto Fichera,
A. Pagano
Publication year - 2011
Publication title -
journal of thermodynamics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.112
H-Index - 11
eISSN - 1687-9252
pISSN - 1687-9244
DOI - 10.1155/2011/491350
Subject(s) - resistive touchscreen , nonlinear system , temporal resolution , computer science , image resolution , calibration , electrical impedance , porosity , electronic engineering , materials science , optics , artificial intelligence , physics , computer vision , engineering , electrical engineering , quantum mechanics , composite material
Two-phase flow dynamics are highly complex, due to the strong coupling of various independent mechanisms and as demonstrated by the existence of a variety of flow patterns. The adoption of appropriate tools for nonlinear time series analysis tools may lead to a deeper insight in this complexity but requires high quality time series.This study describes a procedure appositely assessed in order to realise an impedance void fraction sensor of resistive type characterised by high-spatial and -temporal resolution. These characteristics have been accomplished through an appropriate geometrical design of the probe electrodes, aiming at obtaining a thin measurement volume so to improve the probe spatial resolution, and through the electronic assessment of the data acquisition system, improving its temporal resolution. A new calibration procedure has been also defined, based on an estimation of void fraction through a code for automatic extraction of bubble contours and the correction of image distortions
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