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Void fraction detection in a gas-liquid two-phase flow using a propagation attenuation method

机译:使用传播衰减方法在气液两相流中的空隙分数检测

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Based on the principle of the attenuation of an acoustic wave propagating in a gas-liquid two-phase flow, an experiment has been designed to measure the void fraction. The experiment system is consisted of three segments which are pressure stabilizing control system, ultrasonic measurement system and bubble injection system. The measurement process is three steps. First, a reference experiment is performed to acquire the received signal amplitude in pure liquid. Then, measurement of the received signal amplitude in different void fraction is accomplished. Last, the relationship between void fraction and signal amplitude attenuation is given on which the void fraction of two-phase flow can be detected. It is confirmed that void fraction detection using the present method achieves successfully.
机译:基于在气液两相流中传播的声波传播的声波的衰减原理,设计了一种实验来测量空隙率。实验系统由三个段组成,该段是压力稳定控制系统,超声测量系统和泡沫注射系统。测量过程是三个步骤。首先,执行参考实验以在纯液体中获取接收的信号幅度。然后,完成在不同空隙部分中的接收信号幅度的测量。最后,给出了空隙率和信号幅度衰减之间的关系,其可以检测到两相流的空隙部分。确认使用本方法的空隙分数检测成功实现。

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