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Computational methodology for the development of microdevices and microreactors with ANSYS CFX

机译:用ANSYS CFX开发Microdevice和MicroreActors的计算方法

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摘要

In the present paper, a computational methodology for the development of microdevices and microreactors are presented. The methodology was based on Computational Fluid Dynamics (CFD), i.e., the solution of transport equations governing the flow field. The methodology presents a step-by-step tutorial for modeling and simulation of such microdevices that can be used by beginner or experienced users. The proposed methodology was employed in two study cases: fluid mixing and fluid mixing accompanied by chemical reaction. Two new geometry designs were evaluated: a micrometric scale channel with triangular cross section (MT) and a millimeter range scaled channel (MTB). It is expect that the reported methodology contributes to the popularization of CFD usage among researchers, scientists and Microfluidic enthusiasts. Also, it can motivate future studies to focus firstly on geometry optimization by numerical simulations, providing a faster and economical way to develop microdevices.?A CFD-based methodology was presented for the development of microdevices and microreactors?The methodology can be used in distinct fluid mixing and chemical reaction systems?Numerical simulation allows a faster microdevice development procedure with costs reductions.
机译:在本文中,提出了一种用于开发微生物和微反应器的计算方法。该方法基于计算流体动力学(CFD),即控制流场的传输方程的解决方程。该方法介绍了可以由初学者或经验丰富的用户使用的这种微生物的建模和模拟的逐步教程。所提出的方法在两种研究病例中使用:流体混合和流体混合伴有化学反应。评估了两个新的几何设计:带有三角形横截面(MT)和毫米范围缩放通道(MTB)的微米刻度通道。预计报告的方法有助于研究人员,科学家和微流体爱好者之间的差价合约使用。此外,它可以激发未来的研究,首先通过数值模拟来专注于几何优化,提供更快和经济的开发Microdemices的方法。基于CFD的方法是为了开发微生物和微反应器?该方法可以用作不同的方法流体混合和化学反应系统?数值模拟允许更快的MicroDevice开发程序,减少成本。

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