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对三元混合物基准的贡献:在地面和轨道实验室中测量质量分数为0.8/0.1/0.1的三元混合物THN/IBB/nC12的索雷特系数、扩散系数和热扩散系数。

Contribution to the benchmark for ternary mixtures: Measurement of the Soret, diffusion and thermodiffusion coefficients in the ternary mixture THN/IBB/nC12 with 0.8/0.1/0.1 mass fractions in ground and orbital laboratories.

作者信息

Mialdun A, Legros J-C, Yasnou V, Sechenyh V, Shevtsova V

机构信息

MRC, Université Libre de Bruxelles (ULB), av. F. Roosevelt, 50, Brussels, Belgium,

出版信息

Eur Phys J E Soft Matter. 2015 Apr;38(4):27. doi: 10.1140/epje/i2015-15027-2. Epub 2015 Apr 27.

Abstract

We have determined the Soret (ST), diffusion (D, and thermodiffusion (DT) coefficients in a ternary mixture of tetralin-isobutylbenzene-n-dodecane with a composition of 0.80/0.10/0.10 by mass fraction at a temperature of 298K. The Soret coefficients were measured in the microgravity experiment DCMIX1 and on the ground by optical digital interferometry (ODI) using two lasers with different wavelengths. The values of the Soret coefficients were determined from the stationary separation of the components using two- and six-parameter fits. The diffusion coefficients were independently measured using the Taylor Dispersion Technique in the ground laboratory, and the thermodiffusion coefficients were derived from known ST and matrix D. The processing of the data from the DCMIX experiment conducted on the International Space Station is discussed in detail. The multi-user design of the on-board instrument causes perturbations in the component separation. Several recommendations are suggested for improving the quality of the microgravity results. For example, we demonstrated that the tomography reconstruction of the 3-D concentration field allows to restore the underestimated component separation resulting from the spatial non-linearity of the temperature field. Furthermore, to avoid errors in component separation due to mass exchange between the working liquid volume and the expansion volume at the top of the cell, we suggest considering the evolution of the separation only in the lower half of the cell. The results of this study displayed reasonable quantitative agreement between the microgravity and ground experiments.

摘要

我们已经测定了在温度为298K时,质量分数组成为0.80/0.10/0.10的四氢化萘-异丁基苯-正十二烷三元混合物中的索雷特(ST)系数、扩散(D)系数和热扩散(DT)系数。索雷特系数是在微重力实验DCMIX1中以及在地面上通过光学数字干涉测量法(ODI)使用两种不同波长的激光进行测量的。索雷特系数的值是通过使用双参数和六参数拟合从组分的静态分离中确定的。扩散系数是在地面实验室中使用泰勒色散技术独立测量的,热扩散系数是从已知的ST和基体D推导出来的。详细讨论了在国际空间站上进行的DCMIX实验数据的处理。机载仪器的多用户设计会导致组分分离受到干扰。提出了一些提高微重力结果质量的建议。例如,我们证明了三维浓度场的层析成像重建能够恢复因温度场的空间非线性而被低估的组分分离。此外,为了避免由于工作液体体积与池顶部膨胀体积之间的质量交换而导致的组分分离误差,我们建议仅考虑池下半部分的分离演变。这项研究的结果表明微重力实验和地面实验之间在定量上具有合理的一致性。

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