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Electroosmotic flow velocity measurements in a square microchannel

机译:方形微通道中的电渗流速测量

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摘要

Experiments were performed using a microparticle image velocimetry (MPIV) for 2D velocity distributions of electroosmotically driven flows in a 40-mm-long microchannel with a square cross section of 200×200 μm. Electroosmotic flow (EOF) bulk fluid velocity measurements were made in a range of streamwise electric field strengths from 5 to 25 kV/m. A series of seed particle calibration tests can be made in a 200×120×24,000-μm untreated polydimethyl siloxane (PDMS channel incorporating MPIV to determine the electrophoretic mobilities in aqueous buffer solutions of 1× TAE, 1× TBE, 10 mM NaCl, and 10 mM borate. A linearonlinear (due to Joule heating) flow rate increase with applied field was obtained and compared with those of previous studies. A parametric study, with extensive measurements, was performed with different electric field strength and buffer solution concentration under a constant zeta potential at wall for each buffer. The characteristics of EOF in square microchannels were thus investigated. Finally, a composite correlation of the relevant parameters was developed in the form of within ±1% accuracy for 99% of the experimental data.
机译:使用微粒图像测速(MPIV)进行实验,在一个40mm长的微通道中以200×200μm的正方形横截面对电渗流进行二维速度分布。电渗流(EOF)整体流体速度测量是在5至25kV / m的流向电场强度范围内进行的。可以在200×120×24,000μm未经处理的聚二甲基硅氧烷(PDMS通道结合了MPIV)中进行一系列种子颗粒校准测试,以确定1×TAE,1×TBE,10mM NaCl和1×TAE缓冲水溶液中的电泳迁移率。 10 mM硼酸盐。获得线性/非线性(由于焦耳加热)流速随施加电场的增加,并与以前的研究进行比较。在广泛的测量条件下,采用不同的电场强度和缓冲溶液浓度进行了参数研究每个缓冲液在壁上具有恒定的zeta电位,从而研究了方形微通道中EOF的特征,最后,对于99%的实验数据,相关参数的复合相关性以±1%的精度形成。

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