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Numerical simulations studies of the convective instability onset in a supercritical fluid - (PPT)

机译:超临界流体中对流不稳定发作的数值模拟 - (PPT)

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Numerical simulation studies are reported for the convection of a supercritical fluid, ~3He, in a Rayleigh-Benard cell. The calculations provide the temporal profile ΔT(t) of the temperature drop across the fluid layer. In a previous article, systematic delays in the onset of the convective instability in simulations relative to experiments were reported, as seen from the ΔT(t) profiles. They were attributed to the smallness of the noise which is needed to start the instability. Therefore i) homogeneous temperature noise and ii) spatial lateral periodic temperature variations in the top plate were programmed into the simulations, and ΔT(t) compared with that of an experiment with the same fluid parameters. An effective speed-up in the instability onset was obtained, with the best results obtained through the spatial temperature variations with a period of 2L, close to the wavelength of a pair of convections rolls. For a small amplitude of 0.5 μK, this perturbation gave a semiquantitative agreement with experimental observations. Results for various noise amplitudes are presented and discussed in relation to predictions by El Khouri and Carles.
机译:据报道了数值模拟研究用于对瑞利苯甲纤维的超临界流体〜3He的对流。该计算提供了在流体层上的温度下降的时间轮廓Δt(t)。在前一篇文章中,报道了在ΔT(t)型材中所见的模拟中对流稳定性的发作中的系统延迟。它们归因于开始不稳定所需的噪声的小。因此,I)均匀的温度噪声和II)与具有相同流体参数的实验相比,将顶板中的空间横向周期温度变化进行编程为模拟,ΔT(t)。获得了不稳定性发作中的有效加速,通过空间温度变化获得的最佳结果,其周期为2L,接近一对对流辊的波长。对于0.5μk的小振幅,这种扰动与实验观察结果进行了半定量协议。展示和讨论了各种噪声幅度的结果,以与El Khouri和Carles的预测相关。

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