IFP Energies nouvelles , 1 et 4 avenue de Bois-Préau, 92852 Rueil-Malmaison Cedex, France.
EPFL , LFMI, Bâtiment ME A2, Station 9, CH-1015 Lausanne, Switzerland.
Langmuir. 2017 Mar 14;33(10):2531-2540. doi: 10.1021/acs.langmuir.7b00076. Epub 2017 Mar 3.
In this paper, we present a dynamic microfluidic tensiometer able to perform measurements over more than four decades and which is suitable for high throughput experimentations. This tensiometer is able to withstand hard conditions such as high pressure, high temperature, high salinity, and crude oil. It is made of two coaxial capillaries in which two immiscible fluids are injected. Depending on the flow rate of each phase, either droplets or jetting will be obtained. The transition between these two regimes relies on the Rayleigh-Plateau instability. This transition can be theoretically computed thanks to a linear analysis based on the convective and absolute instabilities theory. From this model, the interfacial tension between the two phases can be calculated.
本文提出了一种动态微流张力计,能够进行超过四个数量级的测量,适用于高通量实验。该张力计能够承受高压、高温、高盐度和原油等恶劣条件。它由两个同轴毛细管组成,其中注入两种不混溶的流体。根据各相的流速,可得到液滴或射流。这两种状态之间的转变依赖于瑞利-普兰特尔不稳定性。这种转变可以通过基于对流和绝对不稳定性理论的线性分析来理论计算。根据该模型,可以计算出两相之间的界面张力。