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AN ADAPTIVE STREAMLINE TRACKING METHOD FOR THREE-DIMENSIONAL CFD VELOCITY FIELDS BASED ON THE LAW OF MASS CONSERVATION

机译:基于质量守恒定律的三维CFD速度场自适应流线跟踪方法

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This paper proposes an adaptive streamline tracking method for three-dimensional CFD velocity fields. We assume that the multiplication of an unknown scalar function and the linear interpolation of a CFD velocity field satisfy the law of mass conservation and then derive the expressions of the scalar function. The adaptive streamline tracking method subdivides a hexahedron of hexahedral meshes into smaller hexahedra when there are points in the hexahedron at which the scalar function equals to infinity and then seeks more data of the CFD velocity fields at the vertices of the smaller hexahedra if the values of the CFD velocity field are unknown. The subdivision can be an infinity process. We introduce a threshold number to measure how many times we will subdivide the hexahedra in the initial mesh. The accuracy of computation depends on the initial mesh and the threshold number. Exact tangent curves for linear vector fields are used to draw streamline segments in tetrahedra that are obtained from subdividing hexahedra. Examples in the last section show that the adaptive streamline tracking method can be used to draw more accurate streamlines if we choose a larger threshold number.
机译:提出了一种用于三维CFD速度场的自适应流线跟踪方法。我们假设未知标量函数的乘法和CFD速度场的线性插值满足质量守恒定律,然后推导出标量函数的表达式。自适应流线跟踪方法是在六面体中存在标量函数等于无穷大的点时,将六面体网格的六面体细分为较小的六面体,然后在较小的六面体的顶点处查找CFD速度场的更多数据。 CFD速度场未知。细分可以是无穷大的过程。我们引入一个阈值数,以测量在初始网格中细分六面体的次数。计算的准确性取决于初始网格和阈值数。线性向量场的精确切线曲线用于绘制四面体中的流线段,这些流线段是通过细分六面体获得的。上一节中的示例显示,如果我们选择较大的阈值数,则可以使用自适应流线跟踪方法绘制更准确的流线。

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