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A smoothed particle hydrodynamics-phase field method with radial basis functions and moving least squares for meshfree simulation of dendritic solidification

机译:具有径向基函数的平滑粒子流体动力学相法和移动最小二乘法,用于树突凝固的网格纤维仿真

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We present a robust and efficient approach to meshfree phase-field (PF) simulation of dendritic solidification on arbitrary domain geometries using smoothed particle hydrodynamics (SPH). We use radial basis functions (RBFs) and moving least squares (MLS) as alternative approaches for constructing kernel approximation functions exhibiting a higher order of consistency than traditional kernel functions used in SPH. In the proposed smoothed particle hydrodynamics-phase field method (SPH-PFM), proper discretization of the PF order parameter at the diffuse interface region can be easily accomplished independently from the particle spacing resolution used for computing the thermal field distribution. We use an implicit geometry construction approach to automatically generate virtual boundary particles to impose Neumann-type boundary conditions at the domain boundaries. We solve the Allen-Cahn equation locally at particles constructed at a narrow band around the interface region. Additionally, only first-order derivatives of the meshfree approximation functions are needed in our implementation to solve the governing equations. Mathematical formulation and detailed analysis will be presented and discussed where we investigate the effect of the meshfree approximation scheme on the final morphology of the grown dendrite.
机译:我们在使用平滑的粒子流体动力学(SPH)上,在任意域几何形状上提出了一种稳健和有效的树突凝固的模拟凝固方法。我们使用径向基函数(RBF)和移动最小二乘(MLS)作为构造展示比SPH中使用的传统内核函数更高阶的核心近似函数的替代方法。在所提出的平滑粒子流体动力学 - 期间方法(SPH-PFM)中,可以容易地从用于计算热场分布的粒子间隔分辨率容易地完成漫射接口区域处的PF级参数的适当离散化。我们使用隐式几何构建方法自动生成虚拟边界粒子以在域边界处施加Neumann型边界条件。我们在界面区域周围构造的颗粒处局部地解决亚洲CAHN方程。此外,我们的实施中只需要网格映近似函数的一阶导数来解决管理方程。将介绍和讨论数学制剂和详细分析,在我们探讨了网上近似方案对生长枝晶的最终形态的影响。

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