Giraudet Cédric, Bataller Henri, Sun Yifei, Donev Aleksandar, Ortiz de Zárate José M, Croccolo Fabrizio
Laboratoire des Fluides Complexes et leurs Réservoirs - UMR5150, Université de Pau et des Pays de l'Adour, 1 Allée du Parc Montaury, 64600, Anglet, France.
Erlangen Graduate School in Advanced Optical Technologies (SAOT), Friedrich-Alexander-Universität, 91052, Erlangen, Germany.
Eur Phys J E Soft Matter. 2016 Dec;39(12):120. doi: 10.1140/epje/i2016-16120-8. Epub 2016 Dec 12.
In a recent letter (C. Giraudet et al., EPL 111, 60013 (2015)) we reported preliminary data showing evidence of a slowing-down of non-equilibrium fluctuations of the concentration in thermodiffusion experiments on a binary mixture of miscible fluids. The reason for this slowing-down was attributed to the effect of confinement. Such tentative explanation is here experimentally corroborated by new measurements and theoretically substantiated by studying analytically and numerically the relevant fluctuating hydrodynamics equations. In the new experiments presented here, the magnitude of the temperature gradient is changed, confirming that the system is controlled solely by the solutal Rayleigh number, and that the slowing-down is dominated by a combined effect of the driving force of buoyancy, the dissipating force of diffusion and the confinement provided by the vertical extension of the sample cell. Moreover, a compact phenomenological interpolating formula is proposed for easy analysis of experimental results.
在最近的一封信件中(C. 吉劳德等人,《欧洲物理快报》111, 60013 (2015)),我们报告了初步数据,这些数据显示了在互溶流体二元混合物的热扩散实验中,浓度非平衡涨落出现减缓的证据。这种减缓的原因被归因于限制效应。在此,通过新的测量对这种初步解释进行了实验验证,并通过对相关涨落流体动力学方程进行解析和数值研究,从理论上证实了这一解释。在本文所展示的新实验中,改变了温度梯度的大小,证实该系统仅由溶质瑞利数控制,并且这种减缓主要由浮力驱动力、扩散耗散力以及样品池垂直延伸所提供的限制的综合效应主导。此外,还提出了一个紧凑的唯象插值公式,以便于对实验结果进行分析。