首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Rayleigh-Benard percolation transition of thermal convection in porous media: Computational fluid dynamics, NMR velocity mapping, NMR temperature mapping - art. no. 056301
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Rayleigh-Benard percolation transition of thermal convection in porous media: Computational fluid dynamics, NMR velocity mapping, NMR temperature mapping - art. no. 056301

机译:多孔介质中热对流的Rayleigh-Benard渗流转变:计算流体力学,NMR速度图,NMR温度图-艺术。没有。 056301

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Stationary thermal convection and heat conduction were studied in random-site percolation clusters in a Rayleigh-Benard configuration experimentally by NMR microscopy techniques and numerically with the aid of a finite volume method. The porosity of the percolation clusters, and the temperature difference applied to the convection cell were varied. Two-dimensional percolation networks were generated with the aid of a random-number algorithm. The resulting clusters were used as templates for the fabrication of model objects. The convective velocity distribution of silicon oil or ethylene glycol filled into the pore space was mapped and evaluated in the form of histograms. The flow patterns visualized in the simulated and the measured velocity maps show good coincidence. In the histograms, two velocity regimes can be distinguished and attributed to local convection rolls responsible for the low-velocity part, and cluster-spanning flow loops characterized by a high-velocity cut-off, respectively. The maximum velocity as a function of the porosity and the overall temperature difference is shown to be indicative for the hydro-thermodynamic Rayleigh-Benard instability and the geometrical percolation threshold. The coincidence of the Rayleigh-Benard instability (modified for porous media) and the percolation transition (modified for closed loops) gives rise to a new critical phenomenon termed the Rayleigh-Benard percolation transition. It occurs at a certain combination of the porosity and the overall temperature difference in the cell. Temperature maps were recorded with the aid of a relaxation-based NMR technique. The consequence of different thermal conductivities in the matrix and in the fluid is that horizontal-temperature gradients arise even in the absence of flow. This leads to a superposition of uncritical convective flow driven by the horizontal-temperature gradients whenever closed-loop pathways are possible and the critical Rayleigh-Benard convection based on vertical-temperature gradients. [References: 25]
机译:通过NMR显微镜技术并在有限体积法的帮助下,以瑞利-贝纳德(Rayleigh-Benard)构型在随机位置的渗流团簇中研究了稳态热对流和热传导。渗流团簇的孔隙率和应用于对流单元的温差是变化的。借助随机数算法生成了二维渗滤网络。所得的簇用作制造模型对象的模板。绘制填充到孔隙中的硅油或乙二醇的对流速度分布,并以直方图的形式进行评估。在模拟的和测得的速度图中可视化的流动模式显示出良好的一致性。在直方图中,可以区分两个速度状态,分别归因于负责低速部分的局部对流辊和以高速截止为特征的跨簇流动环。最大速度随孔隙率和总温差的变化显示出流体热力学瑞利-贝纳德不稳定性和几何渗透阈值。 Rayleigh-Benard不稳定性(针对多孔介质进行了修改)和渗流转变(针对闭环进行了修改)的巧合引起了一种新的临界现象,称为Rayleigh-Benard渗流转变。它是在孔隙率和电池中总温差的某种组合下发生的。借助于基于弛豫的NMR技术记录温度图。基质和流体中不同的热导率的结果是,即使没有流动,也会出现水平温度梯度。每当可能出现闭环路径时,这将导致由水平温度梯度驱动的非临界对流和基于垂直温度梯度的临界Rayleigh-Benard对流叠加。 [参考:25]

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