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Effects of Mesh Generation on Modelling Aluminium Anode Baking Furnaces

机译:网格生成对铝阳极烘烤炉建模的影响

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Anode baking is critical in carbon anode production for aluminium extraction. Operational and geometrical parameters have a direct impact on the performance of anode baking furnaces (ABF), and hence on the resulting anode quality. Gas flow patterns, velocity field, pressure drop, shear stress and turbulent dissipation rate are the main operational parameters to be optimised, considering a specific geometry that is discretised as a mesh. Therefore, this paper aims to establish the need to generate an appropriate mesh to perform accurate numerical simulations of three-dimensional turbulent flow in a single section of an ABF. Two geometries are considered for generating three meshes, using COMSOL and cfMesh, with different refinement zones. The three meshes are used for creating nine incompressible isothermal turbulent flow models, with varying operational parameters. Velocity field, convergence and turbulent viscosity ratio in the outlet of fuel inlet pipes are the quantification criteria. Quantification criteria have shown that a better physical representation is obtained by refining in the whole combustion zone. COMSOL Multiphysics’ built-in mesh generator allows quadrilateral, tetrahedron and hexahedron shapes. Adaptive cell sizes and shapes have a place within modelling, since refining a mesh in appropriate zones brings the Peclet number down when the incompressible isothermal turbulent flow is simulated.
机译:阳极烘烤在铝促液中的碳阳极生产中至关重要。操作和几何参数对阳极烘焙炉(ABF)的性能直接影响,因此在得到的阳极质量上。气体流动模式,速度场,压降,剪切应力和湍流耗散率是要优化的主要操作参数,考虑到被离散的几何形状作为网格。因此,本文旨在建立生成适当网格的需要,以在ABF的单个部分中执行三维湍流流的准确数值模拟。考虑两个几何形状用于使用COMSOL和CFMESH产生三个网格,具有不同的细化区域。三个网格用于产生九个不可压缩的等温湍流流量模型,具有不同的操作参数。燃料入口管道出口中的速度场,收敛和湍流粘度比是定量标准。定量标准表明,通过精制整个燃烧区来获得更好的物理表示。 COMSOL Multiphysics的内置网格发生器允许四边形,四面体和六面体形状。自适应电池尺寸和形状在建模中具有一个地方,因为当模拟不可压缩的等温湍流流动时,在适当的区域中精炼网格使Peclet号下降。

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