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Comparison of differential pressure model based on flow regime for gas/liquid two-phase flow

机译:基于气/液两相流流量的差压模型的比较

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Gas/liquid two-phase flow in horizontal pipe is very common in many industry processes, because of the complexity and variability, the real-time parameter measurement of two-phase flow, such as the measurement of flow regime and flow rate, becomes a difficult issue in the field of engineering and science. The flow regime recognition plays a fundamental role in gas/liquid two-phase flow measurement, other parameters of two-phase flow can be measured more easily and correctly based on the correct flow regime recognition result. A multi-sensor system is introduced to make the flow regime recognition and the mass flow rate measurement. The fusion system is consisted of temperature sensor, pressure sensor, cross-section information system and v-cone flow meter. After the flow regime recognition by cross-section information system, comparison of four typical differential pressure (DP) models is discussed based on the DP signal of v-cone flow meter. Eventually, an optimum DP model has been chosen for each flow regime. The experiment result of mass flow rate measurement shows it is efficient to classify the DP models by flow regime.
机译:水平管中的气/液两相流量在许多工业过程中非常常见,由于复杂性和可变性,两相流量的实时参数测量,例如测量流动状态和流速,变成了工程与科学领域的困难问题。流动方案识别在气/液两相流量测量中起着基本作用,可以基于正确的流动制度识别结果更容易且正确地测量两相流的其他参数。引入多传感器系统以使流动方案识别和质量流量测量。融合系统由温度传感器,压力传感器,横截面信息系统和V-CONE流量计组成。在通过截面信息系统的流动方案识别之后,基于V-CONE流量计的DP信号讨论了四种典型差压(DP)模型的比较。最终,已为每个流动制度选择最佳DP模型。质量流量测量的实验结果表明,通过流动制度对DP模型进行分类是有效的。

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