...
首页> 外文期刊>Micro and Nanosystems >A Study of MHD-Induced Mixing in Microfluidics Using CFD Simulations
【24h】

A Study of MHD-Induced Mixing in Microfluidics Using CFD Simulations

机译:使用CFD模拟研究MHD诱导的微流体混合

获取原文
获取原文并翻译 | 示例

摘要

A comprehensive study of a two dimensional MHD (magnetohydrodynamics) micro stirrer with different electrode configurations covering a wide parameter space has been conducted by using computational fluid dynamics simulations. The wall of the circular cavity stirrer acts as the counter electrode. Cylindrical rods ranging in number from one to four, placed inside the cavity act as working electrodes. When two fluids are placed initially in the two halves of the cavity separated by an axial plane, the periodic flow reversal causes stretching, folding and breaking of the interface between the two fluids; an increase in the interfacial area; and enhanced mixing. Parametric studies conducted by varying the time period of the potential difference and the magnitude of the magnetic field intensity show that both significantly influence mixing quality. By having more complex geometries by increasing the number of working electrodes and choosing their locations inside the cavity, and by implementing specific switching schemes for the potential difference on the electrode pairs, secondary flows could be generated which introduced complex chaotic advection and enhanced mixing compared to the configuration with a single working electrode. This work adds to the relatively small body of work that relies on numerical simulations to study MHD microfluidic mixing problems. It also establishes numerical simulations as a tool for optimal design of MHD-based lab-on-a-chip applications.
机译:通过使用计算流体动力学模拟,已经对具有不同电极配置的二维MHD(磁流体动力学)微搅拌器进行了全面研究,该电极结构覆盖了宽的参数空间。圆形空腔搅拌器的壁用作反电极。放置在腔体内的数量为1至4的圆柱棒可作为工作电极。当最初将两种流体放置在由轴向平面隔开的空腔的两半中时,周期性的换流会导致两种流体之间的界面拉伸,折叠和破坏;界面面积的增加;和增强的混合。通过改变电势差的时间段和磁场强度的大小进行的参数研究表明,两者都显着影响混合质量。通过增加工作电极的数量并选择其在腔体内的位置来具有更复杂的几何形状,并通过针对电极对上的电势差实施特定的切换方案,可以产生二次流动,从而引入复杂的对流并增强混合效果。具有单个工作电极的配置。这项工作增加了相对较小的工作量,该工作量依赖于数值模拟来研究MHD微流体混合问题。它还将数值模拟作为优化基于MHD的芯片实验室应用设计的工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号