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Apparent fluid slip at hydrophobic microchannel walls

机译:疏水微通道壁的表观流体滑移

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Micron-resolution particle image velocimetry is used to measure the velocity profiles of water flowing through 30x300 mum channels. The velocity profiles are measured to within 450 nm of the microchannel surface. When the surface is hydrophilic (uncoated glass), the measured velocity profiles are consistent with solutions of Stokes' equation and the well-accepted no-slip boundary condition. However, when the microchannel surface is coated with a 2.3 nm thick monolayer of hydrophobic octadecyltrichlorosilane, an apparent velocity slip is measured just above the solid surface. This velocity is approximately 10% of the free-stream velocity and yields a slip length of approximately 1 mum. For this slip length, slip flow is negligible for length scales greater than 1 mm, but must be considered at the micro- and nano scales. (C) 2002 American Institute of Physics. [References: 11]
机译:微米级分辨率的粒子图像测速仪用于测量流过30x300妈妈通道的水的速度分布。测得的速度分布在微通道表面的450 nm以内。当表面是亲水的(未镀膜的玻璃)时,测得的速度分布与Stokes方程的解和公认的防滑边界条件一致。但是,当微通道表面涂有2.3 nm厚的疏水性十八烷基三氯硅烷单层时,在固体表面正上方测量到表观速度滑移。该速度约为自由流速度的10%,滑移长度约为1毫米。对于这种滑移长度,对于大于1 mm的长度刻度,滑移流量可以忽略不计,但必须在微米和纳米刻度上考虑。 (C)2002美国物理研究所。 [参考:11]

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