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Apparatus and method for computing unsteady flows by direct solution of the vorticity equation

机译:通过涡度方程直接求解来计算非定常流量的装置和方法

摘要

Fluid flow characteristics are calculated directly from a two dimensional rface model of the object. A plurality of surface nodes with defined boundary conditions are established on the surface model. Consecutive layers of nodes are created a preset distance outward from said surface model. Curved panels are defined passing through three nodes at a layer, and a surface shape function is established for each panel from previous panels or from the boundary conditions. The fluid flow velocity for the next layer is developed from the velocities calculated at the previous layer and the shape function. Triangular elements are created by connecting a node on the next layer with two nodes from the previous layer to form an element. First and second vorticity gradients can be calculated for the current node at a time segment from the parameters associated with the previous layer of interest nodes at that time increment. This can be combined with the calculated diffusion velocity for the node to produce a rate of change of vorticity with respect to time which can be used to calculate the velocity of the fluid at the node.
机译:流体流动特性直接从对象的二维面模型计算得出。在表面模型上建立具有定义边界条件的多个表面节点。从所述表面模型向外建立预设距离的节点连续层。定义弯曲的面板,使其穿过一层的三个节点,并根据先前的面板或边界条件为每个面板建立表面形状函数。从上一层计算出的速度和形状函数可以得出下一层的流体流速。通过将下一层的一个节点与上一层的两个节点相连以形成一个元素来创建三角形元素。可以根据与该时间增量的感兴趣节点的先前层相关联的参数,在某个时间段为当前节点计算第一和第二涡度梯度。可以将其与为节点计算的扩散速度相结合,以产生相对于时间的涡度变化率,该速率可以用于计算节点处的流体速度。

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