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首页> 外文期刊>Journal of Fluid Mechanics >Mass flow rate measurements in a microchannel, from hydrodynamic to near free molecular regimes
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Mass flow rate measurements in a microchannel, from hydrodynamic to near free molecular regimes

机译:从流体动力学到接近自由分子状态的微通道中质量流量测量

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摘要

Helium mass flow rates in a microchannel were measured, for a wide Knudsen-number range, in isothermal steady conditions. The flow Knudsen numbers, considered here, cover the range from continuum slip regime to the near free molecular regime. We used a single-channel system involved in an experimental platform more powerful than those previously used. The experimental errors and uncertainties were accurately investigated and estimated. In the continuum slip regime, it was found that the first-order approach is pertinent for Knudsen number between 0.03 and 0.3. Moreover, the slip coefficient was deduced by comparing the experiments with the theoretical first-order slip continuum approach. For Knudsen number between 0.03 and 0.7, a polynomial second-power form is proposed for the mass flow rate expression. Otherwise, the experimental results on the mass flow rate were compared with theoretical values calculated from kinetic approaches over the 0.03-50 Knudsen number range, and an overall agreement appears through the comparison. It was also found, when the Knudsen number increased, that the wall influence on measurement occurred first through the accommodation process in the transition regime followed by the wall influence through the aspect ratio in the free molecular regime.
机译:在等温稳定条件下,针对宽的努森数范围,测量了微通道中的氦气质量流速。此处考虑的流动克努森数涵盖了从连续滑移态到接近自由分子态的范围。我们使用了包含在实验平台中的单通道系统,该系统比以前使用的系统功能更强大。实验误差和不确定性得到了准确的调查和估计。在连续滑移状态下,发现对于Knudsen数介于0.03和0.3之间的情况,一阶方法是相关的。此外,通过将实验与理论一阶滑移连续谱方法进行比较,推导出滑移系数。对于介于0.03和0.7之间的克努森数,提出了多项式二次幂形式来表示质量流量。否则,将质量流量的实验结果与通过动力学方法在0.03-50 Knudsen数范围内计算的理论值进行比较,通过比较得出总体共识。还发现,当Knudsen数增加时,壁对测量的影响首先通过过渡过程中的调节过程发生,然后通过自由分子状态中的长径比发生壁影响。

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