论文标题

高阶不连续的Galerkin方案的有效滑动网格接口方法

An Efficient Sliding Mesh Interface Method for High-Order Discontinuous Galerkin Schemes

论文作者

Dürrwächter, Jakob, Kurz, Marius, Kopper, Patrick, Kempf, Daniel, Munz, Claus-Dieter, Beck, Andrea

论文摘要

滑动网格是在计算流体动力学中处理变形域的强大方法,其中该域的不同部分是相对运动的。在本文中,我们将滑动网格方法的有效实施到不连续的galerkin可压缩式Navier-Stokes求解器中,并将其应用于1-1/2级涡轮机的大型涡流模拟。该方法基于迫击炮方法,并且是高阶精度。它可以处理具有各种接口形状的三维滑动网格接口。对于最常见的情况,对于平面界面,保守性和自由流的保存将确保。我们强调有效的并行实施。我们的实现几乎没有计算和存储开销。通过确保有关通信伙伴和数据分类的先验信息,通过MPI通过MPI进行动态变化的网格拓扑中的节点通信将减少到最低限度。我们提供绩效和扩展结果,显示了实施策略的能力。除了分析验证计算和收敛结果外,我们还提出了1-1/2阶段Aachen涡轮测试用例的壁分辨的隐式LE,作为大型实用应用示例。

Sliding meshes are a powerful method to treat deformed domains in computational fluid dynamics, where different parts of the domain are in relative motion. In this paper, we present an efficient implementation of a sliding mesh method into a discontinuous Galerkin compressible Navier-Stokes solver and its application to a large eddy simulation of a 1-1/2 stage turbine. The method is based on the mortar method and is high-order accurate. It can handle three-dimensional sliding mesh interfaces with various interface shapes. For plane interfaces, which are the most common case, conservativity and free-stream preservation are ensured. We put an emphasis on efficient parallel implementation. Our implementation generates little computational and storage overhead. Inter-node communication via MPI in a dynamically changing mesh topology is reduced to a bare minimum by ensuring a priori information about communication partners and data sorting. We provide performance and scaling results showing the capability of the implementation strategy. Apart from analytical validation computations and convergence results, we present a wall-resolved implicit LES of the 1-1/2 stage Aachen turbine test case as a large scale practical application example.

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