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Simulation and experimental investigation of planar micromixers with short-mixing-length

机译:混合长度短的平面微混合器的仿真与实验研究

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Mixing laminar flows in short lengths is an important issue in chemical, biochemical and medical reactions. This work presents a numerical and experimental investigation on planar micromixers for obtaining an optimum micromixer with short mixing length. The numerical investigation of eight planar micromixers with two different chambers and four obstacle geometries is carried out by using three dimensional (3D) Navier-Stokes equations at the range of 0.1-40 of the Reynolds (Re) number. In total, 40 simulations (eight micromixers at five Re numbers) were done and the optimum micromixer was obtained by the analysis of the simulation data. The optimum micromixer has 0.89 and 0.99 mixing efficiency at Re = 0.1 and 40 respectively at the short distance of 1.18 mm from the origin. In addition, the effect of the chamber and obstacle geometry on mixing efficiency and pressure drop at the range of 0.1-40 of Re have been investigated. The results show that the chamber geometry manifests itself at a low Re number and obstacle geometry is significant at a high Re for mixing efficiency and pressure drop. The optimum micromixer was fabricated, tested and compared with the simulation results and both of them show a similar behavior in the mixing process.
机译:短距离混合层流是化学,生化和医学反应中的重要问题。这项工作提出了对平面微混合器的数值和实验研究,以获得具有短混合长度的最佳微混合器。使用三维(3D)Navier-Stokes方程,在雷诺数(Re)数的0.1-40范围内,对具有两个不同腔室和四个障碍几何形状的八个平面微型混合器进行了数值研究。总共进行了40次模拟(在5个Re数下有8个微型混合器),并通过分析模拟数据获得了最佳的微型混合器。最佳的微型混合器在距原点1.18毫米的短距离处,在Re = 0.1和40时分别具有0.89和0.99的混合效率。另外,研究了腔室和障碍物几何形状对Re的0.1-40范围内的混合效率和压降的影响。结果表明,对于混合效率和压降而言,腔室的几何形状表现为低Re数,而障碍物的几何形状则表现为高Re。最佳的微混合器进行了制造,测试并与仿真结果进行了比较,两者在混合过程中均表现出相似的行为。

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