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Variable high-order multiblock overlapping grid methods for mixed steady and unsteady multiscale viscous flows, part II: hypersonic nonequilibrium flows

机译:可变高阶多块重叠网格方法,用于混合稳态和非稳定性多尺度粘性流动,第二部分:超声波非QuiBribrium流动

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The variable high-order multiblock overlapping (overset) grids method of Sjogreen & Yee (CiCP, Vol.5, 2008) for a perfect gas has been extended to nonequilibrium flows. This work makes use of the recently developed high-order well-balanced shock-capturing schemes and their filter counterparts (Wang et al., J. Comput. Phys., 2009, 2010) that exactly preserve certain non-trivial steady state solutions of the chemical nonequilibrium governing equations. Multiscale turbulence with strong shocks and flows containing both steady and unsteady components is best treated by mixing of numerical methods and switching on the appropriate scheme in the appropriate subdomains of the flow fields, even under the multiblock grid or adaptive grid refinement framework. While low dissipative sixth- or higher-order shock-capturing filter methods are appropriate for unsteady turbulence with shocklets, second- and third-order shock-capturing methods are more effective for strong steady or nearly steady shocks in terms of convergence. It is anticipated that our variable high-order overset grid framework capability with its highly modular design will allow an optimum synthesis of these new algorithms in such a way that the most appropriate spatial discretizations can be tailored for each particular region of the flow. In this paper some of the latest developments in single block high-order filter schemes for chemical nonequilibrium flows are applied to overset grid geometries. The numerical approach is validated on a number of test cases characterized by hypersonic conditions with strong shocks, including the reentry flow surrounding a 3D Apollo-like NASA Crew Exploration Vehicle that might contain mixed steady and unsteady components, depending on the flow conditions.
机译:可变高阶的多嵌段重叠(溢流)网格对于理想气体Sjogreen&议(CICP,5卷,2008年)的方法已经延伸到非平衡流动。这项工作利用了最近开发的高位均衡震荡捕获方案及其过滤同行(Wang等人,J COMPUT,物理学,2009年,2010年)恰好保持一定的非平凡稳态解化学非平衡控制方程。具有较强的冲击多尺度紊流和含有稳定和不稳定分量流最好由数值方法混合并在所述流场的相应的子域的适当方式切换,即使在多嵌段网格或自适应网格细化框架处理,。而低耗散sixth-或更高阶休克捕获过滤器的方法适用于具有小激波,二阶和三阶休克捕获方法不稳定的湍流是用于会聚方面强稳定或几乎稳定的冲击更有效。可以预料,我们的可变高阶溢流网格以其高度模块化设计框架能力将允许这些新算法的最佳合成以这样的方式,最合适的空间离散化可以为流的每个特定区域进行定制。在本文中的一些在单块的高阶滤波器的方案为化学非平衡流的最新发展被施加到溢流网格几何形状。数字方法进行了验证在若干测试案例,其特征在于具有较强的冲击高超音速的条件下,包括围绕流动折返三维阿波罗状NASA乘员探索飞行器可能包含混合稳定和不稳定的部件,这取决于流动条件。

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