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High-order numerical methods for unsteady flows around complex geometries

机译:复杂几何周围非定常流动的高阶数值方法

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摘要

This work deals with high-order numerical methods for unsteady flows around complex geometries. In order to cope with the low-order industrial Finite Volume Method, the proposed technique consists in computing on structured and unstructured zones with their associated schemes: this is called a hybrid approach. Structured and unstructured meshes are then coupled by a nonconforming grid interface. The latter is analyzed in details with special focus on unsteady flows. It is shown that a dedicated treatment at the interface avoids the reflection of spurious waves. Moreover, this hybrid approach is validated on several academic test cases for both convective and diffusive fluxes. The extension of this hybrid approach to high-order schemes is limited by the efficiency of unstructured high-order schemes in terms of computational time. This is why a new approach is explored: The Spectral Difference Method. A new framework is especially developed to perform the spectral analysis of Spectral Discontinuous Methods. The Spectral Difference Method seems to be a viable alternative in terms of computational time and number of points per wavelength needed for a given application to capture the flow physics.
机译:这项工作涉及复杂几何周围非定常流动的高阶数值方法。为了应对低阶工业有限体积法,所提出的技术在于对结构化和非结构化区域及其相关方案进行计算:这称为混合方法。然后,结构化和非结构化网格通过不合格的网格界面耦合。对后者进行了详细分析,特别关注不稳定流量。结果表明,界面处的专用处理避免了杂散波的反射。此外,这种混合方法在对流和扩散通量的几个学术测试案例中得到了验证。这种混合方法向高阶方案的扩展受限于非结构化高阶方案在计算时间方面的效率。这就是为什么探索一种新方法的原因:“光谱差异法”。特别开发了一个新的框架来执行光谱不连续方法的光谱分析。就计算时间和给定应用程序捕获流物理学所需的每个波长的点数而言,谱差法似乎是一种可行的替代方法。

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    Vanharen Julien;

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  • 年度 2017
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