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PORE-SCALE MODELING OF NATURAL CONVECTION IN RECONSTRUCTED POROUS MEDIA

机译:重构多孔介质中自然对流的尺度模型

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The utilization of porous media can enhance the heat transfer process due to its large heat transfer area within limited space. The natural convection in porous media widely exists in various heat transfer equipment and the related flow and heat transfer in porous spaces is one complicated transport phenomenon, for which the accurate prediction is challenging. Pore-scale models can predict transport phenomena in porous media in pore space, which can be used in the modeling of flow and heat transfer in porous media under local thermal non-equilibrium condition. The pore-scale study includes the reconstruction of porous structure and the direct numerical simulation of transport phenomena in the pore spaces. In this paper, the geometrical reconstruction approach was developed to generate the porous region using the tomographic reconstruction, which is one nondestructive imaging technique. The porous sample was scanned on a micro-CT scanner with micrometer resolution. 2D sliced scan images were obtained and then stacked to reconstruct the 3D porous geometry. A double-population thermal lattice Boltzmann model was established to predict the natural convection in reconstructed porous media at pore scale.
机译:多孔介质的利用由于其在有限空间内的大传热面积而可以增强传热过程。多孔介质中的自然对流广泛存在于各种传热设备中,并且在多孔空间中相关的流动和传热是一种复杂的传输现象,对此进行准确的预测具有挑战性。孔尺度模型可以预测孔隙空间中多孔介质中的运移现象,可用于在局部热非平衡条件下对多孔介质中的流动和传热进行建模。孔隙尺度研究包括多孔结构的重建和孔隙空间中迁移现象的直接数值模拟。在本文中,开发了一种几何重建方法以使用断层摄影重建技术生成多孔区域,这是一种无损成像技术。在具有微米分辨率的微型CT扫描仪上扫描多孔样品。获得2D切片扫描图像,然后堆叠以重建3D多孔几何形状。建立了双种群热晶格玻尔兹曼模型,以预测孔尺度下重构多孔介质中的自然对流。

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