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通过分子标记测速法测量滑移流态下通道气体流动的速度

Velocity Measurements in Channel Gas Flows in the Slip Regime by means of Molecular Tagging Velocimetry.

作者信息

Fratantonio Dominique, Rojas-Cárdenas Marcos, Barrot Christine, Baldas Lucien, Colin Stéphane

机构信息

Los Alamos National Laboratories, Physics Division, Los Alamos, NM 87545, USA.

Institut Clément Ader (ICA), Université de Toulouse CNRS, INSA, ISAE-SUPAERO, Mines-Albi, UPS, 31400 Toulouse, France.

出版信息

Micromachines (Basel). 2020 Apr 2;11(4):374. doi: 10.3390/mi11040374.

Abstract

Direct measurements of the slip velocity in rarefied gas flows produced by local thermodynamic non-equilibrium at the wall represent crucial information for the validation of existing theoretical and numerical models. In this work, molecular tagging velocimetry (MTV) by direct phosphorescence is applied to argon and helium flows at low pressures in a 1-mm deep channel. MTV has provided accurate measurements of the molecular displacement of the gas at average pressures of the order of 1 kPa. To the best of our knowledge, this work reports the very first flow visualizations of a gas in a confined domain and in the slip flow regime, with Knudsen numbers up to 0.014. MTV is cross-validated with mass flowrate measurements by the constant volume technique. The two diagnostic methods are applied simultaneously, and the measurements in terms of average velocity at the test section are in good agreement. Moreover, preliminary results of the slip velocity at the wall are computed from the MTV data by means of a reconstruction method.

摘要

对由壁面处局部热力学非平衡产生的稀薄气体流动中的滑移速度进行直接测量,是验证现有理论和数值模型的关键信息。在这项工作中,通过直接磷光的分子标记测速法(MTV)被应用于1毫米深通道内低压下的氩气和氦气流。MTV在平均压力约为1 kPa时提供了气体分子位移的精确测量。据我们所知,这项工作首次报道了在受限区域且处于滑移流态的气体流动可视化,克努森数高达0.014。MTV通过定容技术与质量流量测量进行交叉验证。两种诊断方法同时应用,测试段平均速度的测量结果吻合良好。此外,通过一种重建方法从MTV数据中计算出了壁面处滑移速度的初步结果。

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