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Improving the speed and accuracy of projection-type incompressible flow solvers

机译:提高投射式不可压缩流量求解器的速度和精度

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摘要

Superseding so-called first-generation incompressible flow solvers of the projection type (based on Taylor-Galerkin advection, second-order pressure damping and element-based data structures), the current, second-generation solvers (based on high-order upwind advection, fourth-order pressure damping and edge-based data structures) have now been in use for half a decade and have proven remarkably robust and efficient for many large-scale problems. In order to achieve higher accuracy and speed, these solvers have recently been enhanced in a variety of ways: (a) substepping for advection, (b) implicit treatment of advective terms via SGS and GMRES-LU-SGS iterative solvers, (c) fully implicit, time-accurate advancement of pressure and velocities, and (d) linelet preconditioning for the pressure-Poisson equation. The combined effect of these third-generation improvements leads to speedups of the order of O(1:5—1:10), with similar or even better temporal accuracy, as demonstrated on a variety of academic and industrial problems.
机译:取代了投影类型的所谓第一代不可压缩流求解器(基于Taylor-Galerkin对流,二阶压力阻尼和基于元素的数据结构),当前的第二代求解器(基于高阶逆风对流) ,四阶压力阻尼和基于边缘的数据结构)已经使用了五年,并且已经证明对于许多大规模问题都非常强大和有效。为了获得更高的精度和速度,最近以各种方式增强了这些求解器的功能:(a)对流的子步骤;(b)通过SGS和GMRES-LU-SGS迭代求解器隐式处理对流项;(c)压力和速度的完全隐式,时间精确的进展,以及(d)压力-泊松方程的小波预处理。这些第三代改进的综合效果导致了O(1:5-1:10)数量级的加速,具有相似甚至更好的时间精度,这在各种学术和工业问题上都得到了证明。

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