Applications of the vortex-surface field to flow visualization, modelling and simulation

IF 2.8 Q2 MECHANICS
Yue Yang, Shiying Xiong, Zhen Lu
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引用次数: 0

Abstract

We review the progress on the applications of the vortex-surface field (VSF). The VSF isosurface is a vortex surface consisting of vortex lines. Based on the generalized Helmholtz theorem, the VSF isosurfaces of the same threshold at different times have strong coherence. As a general flow diagnostic tool for studying vortex evolution, the numerical VSF solution is first constructed in a given flow field by solving a pseudo-transport equation driven by the instantaneous frozen vorticity, and then the VSF evolution is calculated by the two-time method. From the database of numerical simulations or experiments, the VSF can elucidate mechanisms in the flows with essential vortex dynamics, such as isotropic turbulence, wall flow transition, flow past a flapping plate and turbulence–flame interaction. The characterization of VSFs reveals the correlation between robust statistical features and the critical quantities needed to be predicted in engineering applications, such as the friction coefficient in transition, thrust in bio-propulsion and growth rate in interface instability. Since the VSF evolution captures the essential Lagrangian-based dynamics of vortical flows, it inspires novel numerical methods on cutting-edge hardware, e.g. graphic and quantum processors.
涡面场在流动可视化、建模和仿真中的应用
本文综述了涡面场的应用进展。VSF等值面是由涡线组成的涡面。基于广义Helmholtz定理,在不同时刻具有相同阈值的VSF等值面具有强相干性。作为研究涡旋演化的通用流动诊断工具,首先在给定流场中,通过求解瞬时冻结涡量驱动的伪输运方程,构建数值求解的VSF解,然后采用二次法计算VSF演化。从数值模拟或实验的数据中,VSF可以解释具有基本涡动力学的流动机制,如各向同性湍流、壁面流动过渡、经过扑翼板和湍流-火焰相互作用。VSFs的特性揭示了鲁棒统计特征与工程应用中需要预测的临界量之间的相关性,例如过渡摩擦系数,生物推进中的推力和界面不稳定性的增长率。由于VSF的演化捕捉到了基本的基于拉格朗日的涡流动力学,它激发了在尖端硬件上的新颖数值方法,例如图形和量子处理器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.40
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0.00%
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