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首页> 外文期刊>International Journal of Thermophysics >Accurate Determination of Liquid Viscosity and Surface Tension Using Surface Light Scattering (SLS): Toluene Under Saturation Conditions Between 260 and 380 K
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Accurate Determination of Liquid Viscosity and Surface Tension Using Surface Light Scattering (SLS): Toluene Under Saturation Conditions Between 260 and 380 K

机译:使用表面光散射(SLS)准确测定液体粘度和表面张力:饱和条件下260至380 K之间的甲苯

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摘要

Earlier reported values of the liquid kinematic viscosity and surface tension of the reference fluid toluene between 263 and 383 K under saturation conditions from surface light scattering have been recalculated. For this, an improved data evaluation scheme based on an exact description of the hydrodynamic capillary wave problem for a liquid-vapor interface has been applied. The maximum adjustments amount to 0.9 and 0.6% for the liquid kinematic viscosity and surface tension, respectively. These changes are within the uncertainties as stated in our original work which demonstrates that for the surface light scattering technique a total uncertainty of better than 1.0% for both properties of interest also holds for the revised data of the present work. Thus, in spite of the additional complexity connected with this very precise data evaluation procedure presented here, the surface light scattering technique could still be used with less complexity for a reliable determination of surface tension and liquid kinematic viscosity with an accuracy comparable or even better than that of conventional methods. While almost all of these conventional methods determine viscosity and surface tension in a relative manner with two completely different sets of experimental equipment, for the surface light scattering technique no calibration procedure is needed and both properties can be determined simultaneously without any extra effort.
机译:已重新计算了在饱和条件下通过表面光散射在263至383 K之间的液体运动粘度和参考流体甲苯的表面张力的先前报告值。为此,已经应用了基于对液-气界面的流体动力学毛细波问题的精确描述的改进的数据评估方案。液体运动粘度和表面张力的最大调整量分别为0.9%和0.6%。这些变化在我们的原始工作中所述的不确定性之内,这表明对于表面光散射技术,所关注的两个特性的总不确定性都优于1.0%,这对于当前工作的修订数据也成立。因此,尽管与此处介绍的这种非常精确的数据评估程序相关联的额外复杂性,表面光散射技术仍可以以较低的复杂性使用,以可靠地确定表面张力和液体运动粘度,其精度可与甚至更好常规方法。尽管几乎所有这些常规方法都使用两组完全不同的实验设备以相对的方式确定粘度和表面张力,但对于表面光散射技术,不需要校准程序,并且无需任何额外努力即可同时确定两种性质。

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