论文标题

降低了准地藻方程的订单模型:简短的调查

Reduced Order Models for the Quasi-Geostrophic Equations: A Brief Survey

论文作者

Mou, Changhong, Wang, Zhu, Wells, David R., Xie, Xuping, Iliescu, Traian

论文摘要

降低的订单模型(ROM)是计算模型,其维度明显低于通过经典数值离散化获得的尺寸(例如有限元,有限差,有限量或光谱方法)。因此,ROM已用于加速许多查询问题的数值模拟,例如不确定性量化,控制和形状优化。基于投影的ROM在流体流的数值模拟中特别成功。在这项简短的调查中,我们总结了准地球形式(QGE)的一些最新ROM开发(也称为内向型涡度方程),这些方程是地球物理流的简化模型,旋转起着核心作用,例如中层海洋盆地中的风驱动海洋循环。由于QGE代表了海洋流的有效数值模拟与大规模海洋动力学的准确表示之间的实际折衷,因此这些方程经常用于测试新的海洋流量数值方法。 ROM还在QGE上进行了各种环境测试,以了解它们在有效的海洋流量数值模拟中的潜力。 In this paper, we survey the ROMs developed for the QGE in order to understand their potential in efficient numerical simulations of more complex ocean flows: We explain how classical numerical methods for the QGE are used to generate the ROM basis functions, we outline the main steps in the construction of projection-based ROMs (with a particular focus on the under-resolved regime, when the closure problem needs to be addressed), we illustrate the ROMs in the numerical simulation of the QGE用于各种环境,我们在对地球物理流的QGE和更复杂模型的ROM探索中提出了几种潜在的未来研究途径。

Reduced order models (ROMs) are computational models whose dimension is significantly lower than those obtained through classical numerical discretizations (e.g., finite element, finite difference, finite volume, or spectral methods). Thus, ROMs have been used to accelerate numerical simulations of many query problems, e.g., uncertainty quantification, control, and shape optimization. Projection-based ROMs have been particularly successful in the numerical simulation of fluid flows. In this brief survey, we summarize some recent ROM developments for the quasi-geostrophic equations (QGE) (also known as the barotropic vorticity equations), which are a simplified model for geophysical flows in which rotation plays a central role, such as wind-driven ocean circulation in mid-latitude ocean basins. Since the QGE represent a practical compromise between efficient numerical simulations of ocean flows and accurate representations of large scale ocean dynamics, these equations have often been used in the testing of new numerical methods for ocean flows. ROMs have also been tested on the QGE for various settings in order to understand their potential in efficient numerical simulations of ocean flows. In this paper, we survey the ROMs developed for the QGE in order to understand their potential in efficient numerical simulations of more complex ocean flows: We explain how classical numerical methods for the QGE are used to generate the ROM basis functions, we outline the main steps in the construction of projection-based ROMs (with a particular focus on the under-resolved regime, when the closure problem needs to be addressed), we illustrate the ROMs in the numerical simulation of the QGE for various settings, and we present several potential future research avenues in the ROM exploration of the QGE and more complex models of geophysical flows.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源