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Experimental and CFD studies on the intensified micromixing performance of micro-impinging stream reactors built from commercial T-junctions

机译:由商用T型结构建的微冲击流反应器的强化微混合性能的实验和CFD研究

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摘要

A micro-impinging stream reactor (MISR) at the size of ~1 mm has been built from commercial T-junctions and steel micro-capillaries, which has advantages of intensified micromixing and easy construction. By using a big-sized and very short outlet tube, the two injecting streams could impinge intensely within the limited chamber of the T-junction to achieve a quick mixing at the micro-scale. The effects of both operating parameters and geometric parameters of MISR, e.g., inlet jet Reynolds number (Rej), volumetric flow ratio (R), outlet configuration, outlet length (L), and inlet diameter (di), on the micromixing efficiency have been studied by experiments with the Villermaux-Dushman reaction as well as by computational fluid dynamics (CFD) method. Both experimental and numerical results agreed well and demonstrated that the inlet jet Reynolds number (Rej) and inlet size played a key role for the micromixing performance. The outlet configuration also had a great influence on micromixing, but the effects of the length of outlet channel were insignificant. This work showed that MISR will have a great potential for both reaction and separation process intensifications.
机译:已经从商业T型结和钢微毛细管建造了一个约1毫米大小的微冲击流反应器(MISR),它具有增强微混合和易于构造的优点。通过使用大尺寸且非常短的出口管,两条喷射流可在T形结的有限腔室内强烈撞击,从而实现微量的快速混合。 MISR的操作参数和几何参数(例如入口射流雷诺数(Rej),体积流量比(R),出口构造,出口长度(L)和入口直径(di))对微混合效率的影响通过Villermaux-Dushman反应以及计算流体力学(CFD)方法进行了实验研究。实验和数值结果均吻合良好,并表明入口射流雷诺数(Rej)和入口尺寸对微混合性能起关键作用。出口配置对微混合也有很大的影响,但是出口通道长度的影响并不明显。这项工作表明,MISR对于增强反应和分离过程都具有巨大的潜力。

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