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The DCMIX project: Measurement of thermodiffusion processes in ternary mixtures on ground and in space

机译:DCMIX项目:测量地面和太空中三元混合物中的热扩散过程

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摘要

Ternary mixtures play an important role as model systems for the understanding of non-isothermal transport phenomena in liquids. The DCMIX project of ESA aims to establish reliable reference data for the Soret effect in ternary liquids and serves as a nucleus for ground based work. Up to now, three DCMIX campaigns have been carried out aboard the International Space Station ISS. The investigated ternary mixtures are dodecane/isobutylbenzene/tetralin (DCMIX1), methanol/toluene/cyclohexane (DCMIX2) and water/ethanol/triethylene glycol (DCMIX3). DCMIX4 is scheduled for 2018. The microgravity experiments are performed by means of the SODI instrument, a digital Mach-Zehnder interferometer. In order to fully characterize a ternary mixture, it is necessary to extract six independent parameters from the measured data, which is particularly difficult in case of similar diffusion eigenvalues. A detailed analysis shows that, nevertheless, stable values for the thermodiffusion and the Soret coefficients can be obtained. Additional errors arise from the inversion of the contrast factor matrix, which is frequently ill-conditioned. Besides first data from the DCMIX3 microgravity experiments, which have been coordinated by our group at the University of Bayreuth, we review some important results from the DCMIX1 campaign. These include a benchmark with the participation of a number of different groups and the measurement of a complete data set for the DCMIX1 system in the laboratory. The latter results can be rationalized on the basis of the so-called thermophobicity concept previously introduced for binary mixtures.
机译:三元混合物作为模型系统在理解液体中的非等温传输现象中起着重要作用。 ESA的DCMIX项目旨在为三元液体中的Soret效应建立可靠的参考数据,并充当地基工作的核心。截至目前,国际空间站ISS上已进行了3次DCMIX活动。研究的三元混合物为十二烷/异丁苯/四氢化萘(DCMIX1),甲醇/甲苯/环己烷(DCMIX2)和水/乙醇/三甘醇(DCMIX3)。 DCMIX4计划于2018年发布。微重力实验是通过数字Mach-Zehnder干涉仪SODI仪器进行的。为了完全表征三元混合物,必须从测量数据中提取六个独立的参数,这在相似的扩散特征值的情况下尤其困难。详细的分析表明,尽管如此,仍可以获得稳定的热扩散值和Soret系数。对比度系数矩阵的求逆经常会引起疾病,因此会产生其他误差。除了来自拜罗伊特大学的小组协调的DCMIX3微重力实验的第一批数据之外,我们还回顾了DCMIX1活动的一些重要结果。其中包括基准测试,其中有许多不同的小组参与,并且在实验室中测量了DCMIX1系统的完整数据集。可以基于先前针对二元混合物引入的所谓的憎热性概念来合理化后者的结果。

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