A High-Resolution Resistive Probe for Nonlinear Analysis of Two-Phase Flows

L. Cantelli, A. Fichera, A. Pagano
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引用次数: 14

Abstract

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.
用于两相流非线性分析的高分辨率电阻探头
两相流动力学是高度复杂的,由于各种独立机制的强耦合,并由各种流型的存在所证明。采用合适的非线性时间序列分析工具可以更深入地了解这种复杂性,但需要高质量的时间序列。本研究描述了一种适当评估的程序,以实现具有高时空分辨率的电阻型阻抗空隙率传感器。这些特点都是通过对探头电极进行适当的几何设计来实现的,旨在获得较薄的测量体积,从而提高探头的空间分辨率,并通过对数据采集系统的电子评估来提高其时间分辨率。本文还定义了一种新的校准程序,该程序通过自动提取气泡轮廓和校正图像畸变的代码来估计空隙率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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