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首页> 外文期刊>Physics of fluids >Huge reduction in pressure drop of water, glycerol/water mixture, and aqueous solution of polyethylene oxide in high speed flows through micro-orifices
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Huge reduction in pressure drop of water, glycerol/water mixture, and aqueous solution of polyethylene oxide in high speed flows through micro-orifices

机译:大量流经微孔的水,甘油/水混合物和聚环氧乙烷水溶液的压降大大降低

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摘要

Microfluid mechanics is one of the most exciting research areas in modern fluid mechanics and fluid engineering because of its many potential industrial and biological applications. In the present study, pressure drops (PDs) were measured for water, a 50/50 glycerol/water mixture, and a 0.1% aqueous solution of polyethylene oxide (PEO) 8000 flowing at high velocities through various sizes of micro-orifice. It was found that the measured PD of water and the glycerol/water mixture agrees with the prediction of the Navier-Stokes equation for orifices 100 and 400 mu m in diameter, but it is lower for orifices less than 50 mu m in diameter. In particular, the measured maximum PD was almost two orders of magnitude lower than the prediction for the 10 and 5 mu m diameter orifices. The glycerol/water mixture, possessing a viscosity ten times higher than water, provided nearly the same PDs as water when the reduction was generated. The solution of PEO produced a lower PD than water and the glycerol/water mixture except for the 400 mu m diameter orifice. Several factors, including orifice shape, deformation of orifice foil, wall slip, transition, cavitation, and elasticity were considered but the evidence suggests that the reduction in PD may be caused by wall slip or the elasticity induced in a flow of high elongational rate.
机译:微流体力学是现代流体力学和流体工程中最令人兴奋的研究领域之一,因为它具有许多潜在的工业和生物学应用。在本研究中,测量了水,50/50甘油/水混合物和0.1%的聚环氧乙烷(PEO)8000水溶液在各种尺寸的微孔中高速流动时的压降(PDs)。发现水和甘油/水混合物的测量PD与直径为100和400μm的孔的Navier-Stokes方程的预测一致,但对于直径小于50μm的孔则较低。特别是,测得的最大PD几乎比直径为10和5微米的孔口的预测值低两个数量级。具有比水高十倍的粘度的甘油/水混合物在产生还原时提供与水几乎相同的PD。 PEO溶液产生的PD比水和甘油/水混合物的PD低,但孔径为400微米。考虑了孔口形状,孔口箔片变形,壁滑移,过渡,空化和弹性等多种因素,但有证据表明,PD降低可能是由壁滑移或高伸长率流动引起的弹性引起的。

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