论文标题

通过光谱/HP元素方法对高性能公路汽车进行与行业相关的隐式大涡流模拟

Industry-Relevant Implicit Large-Eddy Simulation of a High-Performance Road Car via Spectral/hp Element Methods

论文作者

Mengaldo, Gianmarco, Moxey, David, Turner, Michael, Moura, Rodrigo C., Jassim, Ayad, Taylor, Mark, Peiro, Joaquim, Sherwin, Spencer J.

论文摘要

我们将基于光谱/HP元素方法的高保真大型模拟(LES)技术成功地部署到工业流问题上,这些技术的特征是高雷诺数和复杂的几何形状。特别是,我们描述了执行真实汽车的隐式LE所需的数值方法,软件开发和步骤,即元素RP1模型。据作者所知,此模拟代表了整个真实汽车几何形状的第一个五阶准确瞬态LE。此外,这构成了一个关键的里程碑,以大大扩展行业中当前允许的计算设计信封,在该行业中,稳态建模仍然是标准。为此,为了克服网格生成和求解器技术的障碍以实现该模拟,必须做出许多新的发展,我们在本文中进行了详细介绍。主要目的是向工业和应用数学社区介绍,这是将学术发展转化为工业工具的可行途径,可以大大提高高端工程利益相关者的分析和设计能力。使用学术驱动的开源框架Nektar ++实现了新颖的发展和结果。

We present a successful deployment of high-fidelity Large-Eddy Simulation (LES) technologies based on spectral/hp element methods to industrial flow problems, which are characterized by high Reynolds numbers and complex geometries. In particular, we describe the numerical methods, software development and steps that were required to perform the implicit LES of a real automotive car, namely the Elemental Rp1 model. To the best of the authors' knowledge, this simulation represents the first fifth-order accurate transient LES of an entire real car geometry. Moreover, this constitutes a key milestone towards considerably expanding the computational design envelope currently allowed in industry, where steady-state modelling remains the standard. To this end, a number of novel developments had to be made in order to overcome obstacles in mesh generation and solver technology to achieve this simulation, which we detail in this paper. The main objective is to present to the industrial and applied mathematics community, a viable pathway to translate academic developments into industrial tools, that can substantially advance the analysis and design capabilities of high-end engineering stakeholders. The novel developments and results were achieved using the academic-driven open-source framework Nektar++.

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