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Open Access

Novel adaptive IMEX two-step Runge-Kutta temporal discretization methods for unsteady flows

Xueyu QINa,bJian YUa,bXin ZHANGa,bZhenhua JIANGa,bChao YANa,b( )
National Key Laboratory of Computational Fluid Dynamics, Beihang University, Beijing 100191, China
School of Aeronautic Science and Engineering, Beihang University, Beijing 100191, China

Peer review under responsibility of Editorial Committee of CJA

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Abstract

Efficient and accurate simulation of unsteady flow presents a significant challenge that needs to be overcome in computational fluid dynamics. Temporal discretization method plays a crucial role in the simulation of unsteady flows. To enhance computational efficiency, we propose the Implicit-Explicit Two-Step Runge-Kutta (IMEX-TSRK) time-stepping discretization methods for unsteady flows, and develop a novel adaptive algorithm that correctly partitions spatial regions to apply implicit or explicit methods. The novel adaptive IMEX-TSRK schemes effectively handle the numerical stiffness of the small grid size and improve computational efficiency. Compared to implicit and explicit Runge-Kutta (RK) schemes, the IMEX-TSRK methods achieve the same order of accuracy with fewer first derivative calculations. Numerical case tests demonstrate that the IMEX-TSRK methods maintain numerical stability while enhancing computational efficiency. Specifically, in high Reynolds number flows, the computational efficiency of the IMEX-TSRK methods surpasses that of explicit RK schemes by more than one order of magnitude, and that of implicit RK schemes several times over.

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Chinese Journal of Aeronautics

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Cite this article:
QIN X, YU J, ZHANG X, et al. Novel adaptive IMEX two-step Runge-Kutta temporal discretization methods for unsteady flows. Chinese Journal of Aeronautics, 2025, 38(8). https://doi.org/10.1016/j.cja.2025.103442

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Received: 07 July 2024
Revised: 09 October 2024
Accepted: 14 November 2024
Published: 27 February 2025
© 2025 The Author(s). Chinese Society of Aeronautics and Astronautics.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).