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Optimization methodology of operation of orifice-shaped micromixer based on micro-jet concept

机译:基于微射流概念的孔口形微混合器运行优化方法

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摘要

To establish an optimization methodology for the emulsification process in microchannels, we have investigated the relationship between the channel geometry of micromixers and the size of the formed droplets. We focus the channel geometry of orifice including the sudden contraction and expansion of the flow. The experimental results indicate that the channel geometry is effective in producing fine droplets, and that the mean droplet diameter is predicted on the basis of the pressure drop due to convection and the energy dissipation rate in the mixer chamber irrespective of the orifice geometry. In the orifice-shaped micromixer, the kinetic energy given to a fluid by contraction is dissipated within the order of milliseconds by the formation of a jet flow of the order of several hundreds of micrometers; we have named this jet “micro-jet.” On the basis of this mechanism, the energy dissipation rate in a micro-jet, εjet, is quantified. The mean droplet diameter is proportional to View the MathML source irrespective of the channel geometry of the mixer. Using this formulation, we have integrated the geometric parameters of the orifice and the physical properties of the fluids into the expression of εjet to establish an optimization methodology of the droplet formation in the orifice-shaped micromixer.
机译:为了建立微通道中乳化过程的优化方法,我们研究了微混合器的通道几何形状与形成的液滴尺寸之间的关系。我们关注孔口的通道几何形状,包括流量的突然收缩和膨胀。实验结果表明,通道几何形状可有效地产生细小液滴,并且基于孔对流造成的压降和混合器腔室中的能量耗散率,与节流孔的几何形状无关,可预测平均液滴直径。在孔形微混合器中,通过形成流体的动能通过形成数百微米量级的射流而在几毫秒内消散。我们将这架喷气机命名为“微型喷气机”。基于此机制,可以对微喷射εjet中的能量耗散率进行量化。无论混合器的通道几何形状如何,平均液滴直径均与X射线源成正比。使用此公式,我们将孔的几何参数和流体的物理特性集成到εjet表达式中,从而建立了在孔形微混合器中形成液滴的优化方法。

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