论文标题
稀有气流经过液滴:内部和外部流之间的相互作用
Rarefied gas flow past a liquid droplet: interplay between internal and external flows
论文作者
论文摘要
关于毫米大小的液滴的实验和理论研究表明,在较低的雷诺数中,循环水滴上的阻力与刚性球上的阻力之间的差异很小(小于1%)(Leclair等人,J。Atmos。Sci。虽然在高粘度比(液体与气体)上的球形液滴上的阻力大致相同,但在相同尺寸的刚性球体上的阻力大致相同,而在稀有气体上,稀有气流上的稀有气体流量与稀有气流相同的量相同,而在稀有的气流上,其他感兴趣的量(例如温度)与刚性液滴相同的情况有所不同。本文的目的是研究球形微铅/纳米光的内部运动的影响 - 使其直径与周围气体的平均自由路径相当 - 对阻力力及其整体动力学。为此,通过考虑液滴内部的内部运动以及考虑气体中的动力学作用来分析研究,通过考虑液体的内部运动来分析地研究缓慢的稀疏气体流动的缓慢稀疏气体的问题。针对不同值的knudsen数值,热导率的比率和粘度比的详细结果,用于液滴内外的压力和温度曲线。本工作中获得的阻力的结果与文献中存在的理论和实验结果非常吻合。
Experimental and theoretical studies on millimetre-sized droplets suggest that at low Reynolds number the difference between the drag force on a circulating water droplet and that on a rigid sphere is very small (less than 1 %) (LeClair et al., J. Atmos. Sci., vol. 29, 1972, pp. 728-740). While the drag force on a spherical liquid droplet at high viscosity ratios (of the liquid to the gas), is approximately the same as that on a rigid sphere of the same size, the other quantities of interest (e.g. the temperature) in the case of a rarefied gas flow over a liquid droplet differ from the same quantities in the case of a rarefied gas flow over a rigid sphere. The goal of this article is to study the effects of internal motion within a spherical microdroplet/nanodroplet -- such that its diameter is comparable to the mean free path of the surrounding gas -- on the drag force and its overall dynamics. To this end, the problem of a slow rarefied gas flowing over an incompressible liquid droplet is investigated analytically by considering the internal motion of the liquid inside the droplet and also by accounting for kinetic effects in the gas. Detailed results for different values of the Knudsen number, the ratio of the thermal conductivities and the ratio of viscosities are presented for the pressure and temperature profiles inside and outside the liquid droplet. The results for the drag force obtained in the present work are in good agreement with the theoretical and experimental results existing in the literature.