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A numerical study on the influence of liquid properties on gas-focused micro-jets

机译:液体性质对气体聚焦微射流影响的数值研究

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In this paper we present a numerical study on the influence of liquid properties on gas-focused micro-jets, such as used for sample delivery in serial femtosecond crystallography. The study is based on solving mixture formulation of Newtonian, compressible two-phase model with the finite volume method and algebraic volume of fluid for treatment of the phase-interface. The density, viscosity and surface tension of the focused fluid span around the material properties of pure water in the range of ±30%, thus representing a large range of possible sample delivery fluids. Fixed liquid and helium gas flow rates are used for jet focusing and the length, diameter, velocity and temperature of the jet are assessed as a function of material properties of the liquid. A thicker and slower jet is observed in case of increased density and surface tension of the focused fluid, while change in liquid viscosity has no effect on flow characteristics.
机译:在本文中,我们对液体特性对以气体为中心的微射流(例如用于系列飞秒晶体学中的样品输送)的影响进行了数值研究。该研究的基础是用有限体积法和流体的代数体积求解牛顿型可压缩两相模型的混合配方,以处理相界面。聚焦流体的密度,粘度和表面张力围绕纯水的材料特性在±30%的范围内变化,因此代表了可能的样品输送流体的较大范围。使用固定的液体和氦气流速进行射流聚焦,并根据液体的材料特性评估射流的长度,直径,速度和温度。在聚焦流体的密度和表面张力增加的情况下,观察到较厚且较慢的射流,而液体粘度的变化对流动特性没有影响。

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