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IN THE MICROBUBBLE GENERATOR WITH A VENTURI TUBE

机译:在带有文丘里管的微泡发生器中

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Microbubbles are tiny bubbles with less than 1 mm diameter. These bubbles are utilized in various engineering fields, and it is very important to understand physics of flow with microbubbles. Especially, void fraction is one of the significant parameter for two-phase flow. Thus, developments of real-time measurement systems of void fraction are required. In the nuclear power engineering, electrical void fraction measurement methods have been proposed as one of the real-time measurement techniques. In the present study, we apply this method to a microbubble generator with a venturi tube and examine the performance of the generator. Constant electrical current method is adopted as electrical measurement method of void fraction. Microbubbles are generated with a bubble collapse phenomenon through a venturi tube. We can generate microbubbles in high void fraction. However, mechanism of bubble collapse in a ventrui tube is not made clear and void fraction distribution toward flow direction is less understood. The applicability of constant electrical current method in bubbly flow and the process of the bubble breakup in a venturi tube are discussed. In this experiment, a voltage between two electrodes in the generator is measured with various gas-liquid volume flows as inlet conditions. From results we succeeded to measure the void fraction profile in the venturi tube with constant electrical current method. The void fractions achieve a peak before the bubble collapse and it decreased drastically for 10 mm after collapse.
机译:微泡是小气泡,直径小于1毫米。这些气泡在各种工程领域中使用,并且了解用微泡的流量的物理学非常重要。特别是,空隙分数是两相流的重要参数之一。因此,需要的空隙分数的实时测量系统的发展。在核电工程中,已经提出了电空隙率测量方法作为实时测量技术之一。在本研究中,我们将该方法应用于带有Venturi管的微泡发生器并检查发电机的性能。采用恒定电流法作为空隙率的电气测量方法。通过泡沫塌陷现象通过文丘里管产生微泡。我们可以在高空隙部分中产生微泡。然而,Neverrui管中的气泡塌陷机理不是明确的,并且朝向流动方向的空隙分数分布不太了解。讨论了恒定电流法在气泡流动中的适用性和文丘里管中的气泡分解的过程。在该实验中,用各种气液体积流动作为入口条件的各种气液体积测量发电机中的两个电极之间的电压。从结果,我们成功地测量了恒定电流法的文丘里管中的空隙分数曲线。空隙级分在泡泡塌陷之前达到峰值,并且在坍塌后它在10毫米下降10毫米。

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