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Artificial relations between quantities at nearest nodes or cells and the Newton iteration procedure for the modified pressure correction method

机译:修正压力校正方法的最近节点或单元处的数量与牛顿迭代程序之间的人工关系

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In this article a method for calculation of the finite-difference Navier-Stokes equations with a time step Δt = h/u_(flow) (h is the average cell's size, u_(flow) flow velocity) at the minimal expenses of computer time is suggested. To realize the Newton-type iteration scheme and in order to avoid solving large-volume linear systems of equations for points k, which contain the variations of unknowns not only at the point k but also at points k′ neighbouring with the point k, we replace the unknown relations between the variations of quantities at nearest points k and k′ with artificial ones. Therefore the unknowns at the point k can be directly determined via equations at the point k and one does not need to apply complicated technique. The introduction of artificial relations between the variations of quantities at nearest nodes or cells and the use of approximate equality c′ ≈ -c relating geometric coefficients of both displaced and usual cells make it possible to obtain formulas for correct rates of change of the residuals of the equations. Consequently, only four global iterations and 4 to 5 (in average) inner pressure correction iterations for every global iteration suffice to provide the convergence.
机译:本文中一种计算时间差为Δt= h / u_(flow)(h是平均像元大小,u_(flow)流速)的有限差分Navier-Stokes方程的方法,而花费的计算机时间最少建议。为了实现牛顿型迭代方案,并且为了避免求解点k的大体积线性方程组,我们不仅在点k处而且在与点k相邻的点k'处都包含未知数的变化,用人工方法代替最近的点k和k'的量变化之间的未知关系。因此,可以通过点k上的方程式直接确定点k上的未知数,并且不需要应用复杂的技术。在最近的节点或单元的数量变化之间引入人工关系,以及使用与置换和普通单元的几何系数相关的近似等式c'≈-c,使得有可能获得公式的正确残差变化率。等式。因此,对于每个全局迭代,仅四个全局迭代和4至5个(平均)内部压力校正迭代就足以提供收敛。

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