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利用micro-PIV测量矩形微管道内流量 被引量:2

The flowrate measurement in a rectangular microchannel by micro-PIV
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摘要 利用微观粒子图像测速技术(micro-PIV)测量了矩形微管道内低雷诺数下速度矢量场,并以此为基础计算微管道内流体体积流量。微管道水力直径为83μm,横截面深宽比为0.155,长度为17mm。实验中获得雷诺数分别为47、127和215三工况下管道中心水平截面内速度分布。与理论速度剖面比较,管道中心的测量速度值吻合很好,偏差控制在±2%以内。利用中心速度值结合层流解析解计算微管道内平均流速和体积流量。经过误差分析得到该方法测量误差约为3.3%。实验结果表明,利用micro-PIV技术完全可以实现微通道流量的高精度测量。 The velocity fields in a rectangular microchannel were obtained by micro particle image velocimetry(micro-PIV),with low Reynolds numbers.Based on the measurment of velocity fields,the flow rate was calculated.The microchannel was 17mm long with a hydraulic diameter 83μm and the aspect ratio of the microchannel cross-section was 0.155.The horizontal volocity fields on middle plane under Renolds number of 47,127 and 215 were gained.The results show that the measured velocity data were consistent with the theoretical velocity profiles in the middle region,and the deflection was within ±2%.The mean velocity and volumn flow were calculated with the center velocity data and the formula of laminar flow in rectangular duct.The measurement errro was 3.3% approximately.The experimental results show that high accurate flow rate measurement can be realized by micro-PIV techniques.
出处 《实验流体力学》 EI CAS CSCD 北大核心 2011年第2期92-95,共4页 Journal of Experiments in Fluid Mechanics
基金 航空集团航空基金项目(20085644005)
关键词 MICRO-PIV 微管道 流量 micro-PIV microchannel flowrate
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  • 1PETRAK D, RAUH H. Micro-flow metering and viscosity measurement of low viscosity Newtonian fluids using a fibreoptiacl spatial filter technique [J]. Flow Measurement and Instrumentation, 2009, 20: 49-56. 被引量:1
  • 2BOPP S, DURST F, HOLWEG J. Alaser Doppler sensor for flowrate measurements [J].Flow Measurement and Instrumentation, 1989, 1: 31-38. 被引量:1
  • 3王健..微尺度流场的PIV测量[D].清华大学,2005:
  • 4唐洪武等编著..现代流动测试技术及应用[M].北京:科学出版社,2009:292.
  • 5王昊利,王元.微通道水流量的显微可视化测量[J].计量学报,2009,30(1):25-28. 被引量:3
  • 6SHAH R K, LONDON A L. Laminar flow forced convection in duct[M]. New York: Academic, 1978. 被引量:1
  • 7ZHENG X, LI Z H. Measurement of velocty profiles in a rectangular microchannel with aspect ratio α = 0. 35 [J].Exp Fluids, 2008, 8:951-959. 被引量:1
  • 8HUANG H, DABIRI D, GHARIB M. On errors of digital particle image velocimetry[J]. Meas. Sci. Teehnol, 1997, 8(12) :1427-1440. 被引量:1

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