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Finite element study of three-dimensional flow and heat transfer in mold filling process

机译:模具灌装过程三维流动和传热的有限元研究

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Mold filling process was analyzed on the finite element framework. Mold filling process is a problem involving flow and heat transfer with moving free surfaces. Due to the simplicity and flexibility of the fixed grid system, this study employed the VOF (Volume of Fluid)-based algorithm in solving the moving boundary problem. This study adopted a method in which the shape of the free surface is assumed to be a plane within an element and utilized the concept of the fluid-richness vector (orientation vector) in order to define the plane which identifies the free surface. Combined with the linear geometric representation of the free surface, the semi-implicit scheme with respect to the temporal domain is proposed to advance the flow front. To show the versatility and availability of the current scheme, three-dimensional mold filling processes are simulated.
机译:在有限元框架上分析了模具填充过程。模具灌装过程是涉及流动和热传递的问题,具有移动自由表面。由于固定电网系统的简单性和灵活性,本研究采用了基于求解波动边界问题的基于VOF(流体的体积)算法。该研究采用了一种方法,其中假设自由表面的形状是元件内的平面,并利用流体 - 富有载体(定向向量)的概念,以限定识别自由表面的平面。结合自由表面的线性几何表示,提出了相对于时间域的半隐式方案来推进流动前沿。为了显示电流方案的多功能性和可用性,模拟了三维模具填充过程。

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