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Micro molecular tagging velocimetry for analysis of gas flows in mini and micro systems

机译:微分子标记测速仪用于分析微型和微型系统中的气流

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A new micro molecular tagging velocimetry (mu MTV) setup has been developed to analyze velocity fields in confined internal gas flows. MTV is a little-intrusive velocimetry technique. It relies on the properties of molecular tracers which can experience relatively long lifetime luminescence once excited by a laser beam with an appropriate wavelength. The technique has been validated for acetone seeded flows of argon inside a 1 mm depth rectangular minichannel, with a multilayer design offering two optical accesses. Velocity profiles have been obtained using a specific data reduction process, with a resolution in the order of 15 mu m. The experimental data are compared to theoretical velocity profiles of compressible pressure-driven flows. A good agreement is observed, except close to the walls, where the accuracy would still need to be improved. Following these first results obtained at atmospheric pressure, the influence of pressure on the luminescence intensity of acetone molecules is analyzed. The obtained data lead to a discussion of MTV applicability to rarefied flows and its possible use for a direct measurement of velocity slip at the channel walls.
机译:已经开发出一种新的微分子标记测速仪(mu MTV)装置来分析受限内部气流中的速度场。 MTV是一种侵入式测速技术。它依赖于分子示踪剂的特性,一旦被适当波长的激光束激发,分子示踪剂就会经历相对较长的寿命发光。该技术已针对1 mm深度矩形微型通道内丙酮注入的氩气流动进行了验证,其多层设计可提供两个光学通道。使用特定的数据缩减过程已获得了速度剖面,分辨率约为15微米。将实验数据与可压缩压力驱动流的理论速度曲线进行比较。观察到了很好的一致性,除了靠近墙外,仍然需要提高精度。根据在大气压下获得的这些最初结果,分析了压力对丙酮分子发光强度的影响。所获得的数据引起了对MTV对稀薄流的适用性及其在直接测量通道壁速度滑移中可能应用的讨论。

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