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Effect of advancing velocity and fluid viscosity on the dynamic contact angle of petroleum hydrocarbons

机译:前进速度和流体粘度对石油烃动态接触角的影响

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The goal of this research was to study the effect of advancing velocity and liquid viscosity on the dynamic contact angle between a solid surface and various hydrocarbons. The Wilhelmy plate technique was used to measure the dynamic contact angle at advancing velocities between 20 and 264 mu m/s. In addition to hydrocarbons, two silicon oils were also tested for comparison purposes. The results indicate that advancing velocity and oil viscosity have a significant effect on the dynamic contact angle for both hydrocarbon and silicon oils. For example, the advancing contact angle for viscous (1540 mPa s at 15 °C) oils was up to 2 times higher at 200 mu m/s than at 20 mu m/s. As a result, it is recommended that when values for dynamic contact angles are reported, the advancing velocity at which they were measured be indicated. This will ensure correct data interpretation, meaningful comparison between various studies, and better prediction of multiphase flow or adhesion processes that depend on the dynamic contact angle.
机译:这项研究的目的是研究前进速度和液体粘度对固体表面与各种碳氢化合物之间动态接触角的影响。威廉(Wilhelmy)平板技术用于在20至264μm / s的速度下测量动态接触角。除烃外,还测试了两种硅油以进行比较。结果表明,前进速度和油粘度对烃油和硅油的动态接触角都有很大影响。例如,粘性油(在15°C下为1540 mPa s)的前进接触角在200μm / s下比在20μm/ s下高2倍。结果,建议当报告动态接触角的值时,应指示测量它们的前进速度。这将确保正确的数据解释,各种研究之间的有意义的比较以及对取决于动态接触角的多相流或粘附过程的更好预测。

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