咨询与建议

看过本文的还看了

相关文献

该作者的其他文献

文献详情 >Effect of boundary slip on ele... 收藏

Effect of boundary slip on electroosmotic flow in a curved rectangular microchannel

作     者:刘勇波 Yong-BoLiu

作者机构:College of Mathematics ScienceInner Mongolia Normal UniversityHohhot 010022China Inner Mongolia Center for Applied MathematicsHohhot 010022China 

出 版 物:《Chinese Physics B》 (中国物理B(英文版))

年 卷 期:2024年第33卷第7期

页      面:303-309页

核心收录:

学科分类:080704[工学-流体机械及工程] 07[理学] 080103[工学-流体力学] 08[工学] 0807[工学-动力工程及工程热物理] 070102[理学-计算数学] 0701[理学-数学] 0702[理学-物理学] 0801[工学-力学(可授工学、理学学位)] 

基  金:Project supported by the Natural Science Foundation of Inner Mongolia of China(Grant No.2021BS01008) the Program for Innovative Research Team in Universities of Inner Mongolia Autonomous Region(Grant No.NMGIRT2323) the Scientific Research Funding Project for introduced high level talents of IMNU(Grant No.2020YJRC014) 

主  题:electroosmotic flow(EOF) curved rectangular microchannels slip boundary conditions 

摘      要:The aim of this study is to numerically investigate the impact of boundary slip on electroosmotic flow(EOF) in curved rectangular microchannels. Navier slip boundary conditions were employed at the curved microchannel walls. The electric potential distribution was governed by the Poisson–Boltzmann equation, whereas the velocity distribution was determined by the Navier–Stokes equation. The finite-difference method was employed to solve these two equations. The detailed discussion focuses on the impact of the curvature ratio, electrokinetic width, aspect ratio and slip length on the velocity. The results indicate that the present problem is strongly dependent on these parameters. The results demonstrate that by varying the dimensionless slip length from 0.001 to 0.01 while maintaining a curvature ratio of 0.5 there is a twofold increase in the maximum velocity. Moreover, this increase becomes more pronounced at higher curvature ratios. In addition, the velocity difference between the inner and outer radial regions increases with increasing slip length. Therefore, the incorporation of the slip boundary condition results in an augmented velocity and a more non-uniform velocity distribution. The findings presented here offer valuable insights into the design and optimization of EOF performance in curved hydrophobic microchannels featuring rectangular cross-sections.

读者评论 与其他读者分享你的观点

用户名:未登录
我的评分