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Rapid and efficient mixing in low Reynolds number microfluidic systems via short-distance flow through an electrospun nanofiber mat: A computational analysis

机译:低雷诺数微流体系统中的短距离流经静电纺纳米纤维毡,可快速有效地混合:计算分析

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摘要

This report presents the development of a comprehensive method by which electrospun nanofibers and their mixing effects may be modeled with a combination of custom scripts and ANSYS 14.0 software. A customizable and entirely automated workflow is realized, through which accurate models and results may be generated without requiring in-depth understanding of the underlying computational fluid dynamics principles. The automation process spans all simulation phases, starting with realistic fiber modeling via a custom script and followed by input specifications, automatic generation of the necessary geometry, export of the resulting computational mesh into ANSYS Fluent, control of computational solvers governing fluid flow and species mixing models, and ending with the automation of ANSYS CFD-Post to output solution data. This method is presented in a step-by-step manner through a case study of a Y-shaped microfluidic channel with an embedded electrospun nanofiber mat, the mixing performance of which is determined in this report's conclusion.
机译:本报告介绍了一种综合方法的开发,通过该方法,可以结合使用自定义脚本和ANSYS 14.0软件对静电纺纳米纤维及其混合效果进行建模。实现了可定制的,完全自动化的工作流程,通过该工作流程可以生成准确的模型和结果,而无需深入了解基础计算流体动力学原理。自动化过程涵盖了所有模拟阶段,从通过自定义脚本进行逼真的纤维建模开始,然后是输入规范,自动生成必要的几何形状,将生成的计算网格导出到ANSYS Fluent,控制控制流体流动和混合的计算求解器模型,最后以ANSYS CFD-Post自动化输出解决方案数据。通过对带有嵌入式电纺纳米纤维毡的Y形微流体通道的案例研究,逐步介绍了该方法,其混合性能由本报告的结论确定。

著录项

  • 作者

    Georgescu Andrei;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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