首页> 外文会议>AIAA SciTech forum and exposition >Model reduction for hypersonic aerodynamics via conservative LSPG projection and hyper-reduction
【24h】

Model reduction for hypersonic aerodynamics via conservative LSPG projection and hyper-reduction

机译:通过保守的LSPG投影和超简化来简化高超声速空气动力学模型

获取原文

摘要

High-speed aerospace engineering applications rely heavily on computational fluid dynamics (CFD) models for design and analysis due to the expense and difficulty of flight tests and experiments. This reliance on CFD models necessitates performing accurate and reliable uncertainty quantification (UQ) of the CFD models. However, it is very computationally expensive to run CFD for hypersonic flows due to the fine grid resolution required to capture the strong shocks and large gradients that are typically present. Additionally, UQ approaches are "many-query" problems requiring many runs with a wide range of input parameters. One way to enable computationally expensive models to be used in such many-query problems is to employ projection-based reduced-order models (ROMs) in lieu of the (high-fidelity) full-order model. In particular, the least-squares Petrov-Galerkin (LSPG) ROM (equipped with hyper-reduction) has demonstrated the ability to significantly reduce simulation costs while retaining high levels of accuracy on a range of problems including subsonic CFD applications [1, 2]. This allows computationally inexpensive LSPG ROM simulations to replace the full-order model simulations in UQ studies, which makes this many-query task tractable, even for large-scale CFD models. This work presents the first application of LSPG to a hypersonic CFD application. In particular, we present results for LSPG ROMs of the HIFiRE-1 in a three-dimensional, turbulent Mach 7.1 flow, showcasing the ability of the ROM to significantly reduce computational costs while maintaining high levels of accuracy in computed quantities of interest.
机译:由于飞行测试和实验的费用和困难,高速航空工程应用严重依赖于计算流体动力学(CFD)模型进行设计和分析。这种对CFD模型的依赖使得必须对CFD模型执行准确而可靠的不确定性量化(UQ)。但是,由于要捕获通常存在的强烈震动和大梯度所需的精细网格分辨率,因此对超音速流运行CFD的计算量非常大。此外,UQ方法是“许多查询”问题,需要使用大量输入参数进行多次运行。使计算上昂贵的模型可用于此类多查询问题的一种方法是采用基于投影的降阶模型(ROM)代替(高保真)全阶模型。特别是,最小二乘的Petrov-Galerkin(LSPG)ROM(配备了超简化功能)已证明能够显着降低仿真成本,同时在包括亚音速CFD应用在内的一系列问题上保持较高的准确性[1,2] 。这使得计算上不昂贵的LSPG ROM模拟可以代替UQ研究中的全阶模型模拟,这使得即使对于大规模CFD模型,此多次查询任务也很容易处理。这项工作介绍了LSPG在高超声速CFD应用程序中的第一个应用程序。尤其是,我们在HI湍流7.1 Mach三维流中呈现HIFiRE-1的LSPG ROM的结果,展示了ROM显着降低计算成本的能力,同时在所关注的计算数量上保持了较高的准确性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号