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COMPARISON OF FLOW PATTERN DETECTION SYSTEMS FOR PHYSICAL HETEROGENEOUS MIXTURE BASED ON LABORATORY RESEARCH

机译:基于实验室研究的物理非均相混合物流动模式检测系统的比较

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The complicated and complex nature of two-phase mixture flow phenomenon itself requires detection, monitoring and description of flow pattern influence on the dynamic parameters of mixture flow. The experimental research documentation, and control of real mixture flow requires detection, monitoring and measurement of many parameters associated with concentration, velocity and pressure with their distributions in time and space. In addition to the complexity of two-phase mixture flow, there is difficulty in comparing results of experiments from different publications due to the limitation in documentation in the used measurement techniques as well as experimental methodologies.Four often used measurement methods for flow pattern detection were identified, developed and implemented in the constructed vertical experimental system. This computer-aided experimental system (CAES) was used to generate all typical flow patterns in vertical flow and measure all chosen dynamic parameters (concentration, pressure, and interfacial phenomenon)simultaneously. In this CAES the flow pattern detection system is composed of the application of two different electromagnetic methods (capacitive, and resistive), a pressure fluctuation method and an optical method. In the reported experimental research on vertical adiabatic air-water flow, results were obtained using all four chosen measurement methods simultaneously. The results allowed a direct comparison of the efficiency of each method in terms of individual ability and sensitivity in the detection of flow patterns. The different sensitivity and abilities of individual methods to detect flow patterns were documented and discussed.
机译:两相混合流动现象本身的复杂和复杂性质需要对混合流量的动态参数的流动模式的检测,监测和描述。实验研究文献和实际混合流的控制需要检测,监测和测量与时间和空间的分布相关的许多参数,其分布。除了两相混合流的复杂性之外,由于使用的测量技术中的文献中的限制以及实验方法,难以比较不同出版物的实验结果。 在构造的垂直实验系统中鉴定了四种通常使用用于流动模式检测的测量方法。这种计算机辅助实验系统(CAES)用于在垂直流动中产生所有典型的流动模式,并测量所有所选择的动态参数(浓度,压力和界面现象) 同时。在该连接中,流动模式检测系统由两种不同电磁方法(电容和电阻)的应用组成,压力波动方法和光学方法。在报告的垂直绝热空气流动的实验研究中,使用所有四种所选择的测量方法同时获得结果。结果允许在检测流模式检测中的个体能力和灵敏度方面直接比较各方法的效率。记录并讨论了单个方法检测流模式的不同敏感性和能力。

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