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The Study of Fluid Dynamics in Countercurrent Multi-Stage Micro-Extraction System

机译:逆流多级微型提取系统中流体动力学研究

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Compare to the conventional extraction systems, the microextractoin systems are more efficient. However, difficulty in achieving countercurrent two-phase flow is a barrier to its application. The human cardiovascular system gives us inspiration to solve the problem in the micro-fluidic system. In our previous work, a bionic system simulating the cardiovascular system was built to realize a countercurrent multi-stage micro-extraction. We mainly studied the fluid dynamics of the two phase flow in the system in the present work. TBP-kerosene/water two phase system was used as the test system. The pressure on several key points of the system was measured by pressure sensors and the pressure-flow relationship was investigated under different flow ratio, pulse frequency and stroke. The pressure at all points changed continuously and periodically. When the pulse frequency was increased, the amplitude of the pressure change gets bigger. The reason was that the flow velocity in the system get higher and flow resistance caused the increasing of the pressure amplitude.
机译:与传统的提取系统相比,微萃取素系统更有效。然而,实现逆流两相流的难度是其应用的障碍。人体心血管系统为我们提供了解决微流体系统中的问题的灵感。在我们以前的工作中,建立了模拟心血管系统的仿生系统,以实现逆流的多级微型提取。我们主要研究了本作系统中的两个相流的流体动力学。 TBP-煤油/水两相系统用作测试系统。通过压力传感器测量系统的几个关键点的压力,并在不同的流量比下进行压力流动关系,脉冲频率和行程。所有点的压力连续且定期地改变。当脉冲频率增加时,压力变化的幅度变大。原因是系统中的流速获得更高,流动阻力导致压力幅度的增加。

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