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Rayleigh-Bénard convection in binary mixtures with separation ratios near zero

机译:分离比接近零的二元混合物中的Rayleigh-Bénard对流

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We present an experimental study of convection in binary mixtures with separation ratios Psi close to zero. Measurements of the Hopf frequency for Psi <0 were used to determine the relationship between Psi and the mass concentration x with high precision. These results are consistent with but more precise than earlier measurements by conventional techniques. For Psi >0, we found that the pattern close to onset consisted of squares. Our data give the threshold of convection rc=Rc/Rc0 (Rc is the critical Rayleigh number of the mixture and Rc0 that of the pure fluid) from measurements of the refractive-index power of the pattern as revealed by a very sensitive quantitative shadowgraph method. Over the range Psi <~ 0.011, corresponding to rc >~ 0.2, these results are in good agreement with linear stability analysis. The measured refractive-index power varies by six orders of magnitude as a function of r and for r >~ 0.55 is in reasonable agreement with predictions based on the ten-mode Lorenz-like Galerkin truncation of Müller and Lücke [H. W. Müller and M. Lücke, Phys. Rev. A 38, 2965 (1988)]. For smaller r, the model predicts a cancellation between contributions to the refractive index from concentration and temperature variations, which does not seem to occur in the physical system. Determinations of the wave numbers of the patterns near onset are consistent with the theoretically predicted small critical wave numbers at positive Psi . As r approaches one, we find that q approaches the critical wave number qc0~=3 of the pure fluid.
机译:我们提出了分离比Psi接近零的二元混合物中对流的实验研究。 Psi <0的霍普夫频率测量用于高精度确定Psi与质量浓度x之间的关系。这些结果与传统技术的早期测量结果一致,但更为精确。当Psi> 0时,我们发现接近开始的模式由正方形组成。我们的数据通过非常敏感的定量阴影图方法显示的图案折射率折光力的测量得出对流阈值rc = Rc / Rc0(Rc是混合物的临界瑞利数,Rc0是纯流体的临界瑞利数) 。在Psi <〜0.011的范围内,对应于rc>〜0.2,这些结果与线性稳定性分析非常吻合。测得的折射率功效随r的变化而变化了六个数量级,并且当r>〜0.55时,与基于Müller和Lücke的十模Lorenz状Galerkin截断的预测合理吻合[H. W.Müller和M.Lücke,物理学。 Rev.A 38,2965(1988)]。对于较小的r,模型预测浓度和温度变化对折射率的贡献之间会发生抵消,这似乎在物理系统中不会发生。确定接近发作模式的波数与理论预测的正Psi小临界波数一致。当r接近1时,我们发现q接近纯流体的临界波数qc0〜= 3。

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