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Solution of transient direct-chill aluminium billet casting problem with simultaneous material and interphase moving boundaries by a meshless method

机译:用无网格方法解决同时有材料和相间运动边界的瞬态直接冷铝坯铸造问题

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This paper uses a recently developed upgrade of the classical meshless Kansa method for solution of the transient heat transport in direct-chill casting of aluminium alloys. The problem is characterised by a moving mushy domain between the solid and the liquid phase and a moving starting bottom block that emerges from the mould during the process. The solution of the thermal field is based on the mixture continuum formulation. The growth of the domain and the movement of the bottom block are described by activation of additional nodes and by the movement of the boundary nodes through the computational domain, respectively. The domain and boundary of interest are divided into overlapping influence areas. On each of them, the fields are represented by the multiquadrics radial basis function collocation on a related sub-set of nodes. Time stepping is performed in an explicit way. The governing equation is solved in its strong form, i.e. no integrations are performed. The polygonisation is not present and the method is practically independent of the problem dimension. Realistic boundary conditions and temperature variation of material properties are included. An axisymmetric transient test case solution is shown at different times and its accuracy is verified by comparison with the reference finite volume method results.
机译:本文使用了最新开发的经典无网格Kansa方法的升级版,以解决铝合金直接冷铸中的瞬态传热问题。该问题的特征在于,在固相和液相之间有一个糊状的运动区域,以及在加工过程中从模具中冒出来的起始底部块。热场的解决方案基于混合物的连续体公式。域的增长和底部块的移动分别通过附加节点的激活和边界节点在计算域中的移动来描述。感兴趣的域和边界分为重叠的影响区域。在每个节点上,这些字段都由节点的相关子集上的多二次径向基函数搭配表示。时间步进是一种显式的方式。控制方程以其强形式求解,即不执行积分。不存在多边形化,并且该方法实际上与问题维度无关。包括了实际的边界条件和材料特性的温度变化。在不同的时间显示了轴对称的瞬态测试案例解决方案,并通过与参考有限体积方法的结果进行比较来验证其准确性。

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