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Preliminary investigation of fluid flow in meso-scale rectangular tube

机译:中间尺度矩形管中流体流动的初步研究

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The fluid flow associated with micro and meso scale devices is currently of interest. Experiments were performed to study the fluid flow in meso-scale channels. A straight flow tube was fabricated with 1.0x4.0mm~2 in rectangular cross section and 200mm in length, which was made of quartz for flow visualization and PIV measurements. Reynolds numbers were ranged from 311 to over 3105. The corresponding pressure drop was from 0.65KPa to over 16.58KPa between the inlet and outlet of the tube. The micro PIV was developed to measure the velocity distribution in the tube. A set of microscope object lens was mounted ahead of CCD camera to obtain optimized optical magnification on the CCD chip. The velocity distributions near the outlet of the tube were measured to obtain full-developed flow. A CW laser beam was focused directly on the test section by a cylinder lens to form a small light sheet. Thus, high power density of light was formed on the view region. It is very important to the experiment while the velocity of the flow reaches to a few meters per second within millimeter scale. In this case, it is necessary to reduce exposure time to microseconds for PIV measurements. In the present paper, the experimental results are compared with the classical theories.
机译:与微型和中间尺度装置相关的流体流是目前的感兴趣的。进行实验以研究中间尺度通道中的流体流动。直流管以矩形横截面为1.0×4.0mm〜2,长度为200mm,由石英为流动可视化和PIV测量。雷诺数是从311范围到超过3105相应压降为从0.65KPa到超过16.58KPa管的入口和出口之间。开发了微PIV以测量管中的速度分布。一组显微镜对象镜头安装在CCD相机面前,以在CCD芯片上获得优化的光学放大倍数。测量管道附近的速度分布以获得全发育的流动。 CW激光束通过汽缸透镜直接聚焦在测试部分上,以形成小光片。因此,在视图区域上形成了高功率密度的光密度。实验非常重要,而流程的速度达到毫米尺度的速度达到每秒几米。在这种情况下,需要将曝光时间降低到微秒用于PIV测量。在本文中,将实验结果与经典理论进行比较。

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