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The implicit formulation of flux-vector-splitting scheme with application to transonic flows

机译:通量矢量分裂方案的隐式表示及其在跨音速流中的应用

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摘要

This paper presents an efficient implicit solver for transonic shock-tube flow, generated for a needle-free epidermal delivery of powdered vaccines. This transient transonic flow exhibits complicated flow phenomena. We proposed a unique method of implicit formation on the basis of analysing a model equation, which can separately deal with convection, diffusion and source terms. By combining this idea with flux-vector-splitting, an implicit flux-vector-splitting solver of the Navier-Stokes equations, which can avoid approximate-factorization (AF) or block-bidiagonalization, is developed. Numerical experiments show that it has obvious superiority over the conventional flux-vector-splitting scheme in terms of convergence and computing cost, meanwhile maintaining a high accuracy and robustness.
机译:本文提出了一种高效的隐式求解器,用于跨音速激波管流动,可用于无针表皮输送粉状疫苗。这种瞬时跨音速流动表现出复杂的流动现象。我们在分析模型方程的基础上提出了一种独特的隐式形成方法,该方法可以分别处理对流,扩散和源项。通过将此思想与通量矢量分解相结合,开发了可避免近似因式分解(AF)或块二对角化的Navier-Stokes方程的隐式通量矢量分解求解器。数值实验表明,与传统的磁通矢量分离方案相比,它在收敛性和计算成本上具有明显的优越性,同时保持了较高的精度和鲁棒性。

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