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首页> 外文期刊>Journal of Thermodynamics >A High-Resolution Resistive Probe for Nonlinear Analysis of Two-Phase Flows
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A High-Resolution Resistive Probe for Nonlinear Analysis of Two-Phase Flows

机译:用于两相流非线性分析的高分辨率电阻探头

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摘要

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 theelectronic 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.
机译:由于各种独立机制之间的强耦合,并且由于各种流型的存在,两相流动力学非常复杂。为非线性时间序列分析工具采用适当的工具可能会导致对此复杂性有更深入的了解,但需要高质量的时间序列。这项研究描述了一种适当评估的程序,以实现以高空间和时间分辨率为特征的电阻型阻抗空隙比传感器。这些特性是通过对探针电极进行适当的几何设计(旨在获得较薄的测量体积以提高探针空间分辨率)以及通过对数据采集系统进行电子评估以改善其时间分辨率来实现的。基于通过气泡自动提取和图像失真校正的代码对空隙率的估计,还定义了一种新的校准程序。

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