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Application of lattice Boltzmann method to simulate a pressure-affected electroosmotic pump with hydrophobic thermally-jumped walls and temperature-sensitive operating fluid

机译:晶格Boltzmann方法在疏水性热跳壁上模拟压力影响的电镀泵和温度敏感的工作流体

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The present work attempts to show the accuracy of lattice Boltzmann method (LBM) to study a liquid flow with volumetric forces of electroosmotic and pressure gradient over hydrophobic surfaces. Navier boundary condition, slip velocity and temperature jump are taken into account. The flow has temperature-dependent physical properties and is assumed to be laminar, steady and viscous. Joule heating effects and velocity distribution within channel are studied and verified by comparing the numerically computed slip length with the coefficient of velocity derivative at the wall. The results show that unlike no-slip condition, velocity and temperature magnitude in the middle and near wall regions have approximately the same significant growth. Slip amplifies the effect of fluid properties changes on the wall heat transfer rate; because it increases the temperature derivative at the channel wall.
机译:目前的工作试图展示格子玻璃板方法(LBM)的准确性,以研究液体流动在疏水表面上具有电渗和压力梯度的体积力的液体流动。纳米米边界条件,滑动速度和温度跳跃。流动具有温度依赖性的物理性质,并且假设是层状,稳定和粘性的。通过将数值计算的滑动长度与墙壁的速度衍生系数进行比较,研究和验证了颈际效果和速度分布。结果表明,与无滑移条件不同,中间和近壁区域的速度和温度幅度不同,具有大致相同的显着增长。滑动放大流体性能变化对壁传热速率的影响;因为它增加了通道墙壁处的温度衍生物。

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