Computational fluid dynamics grid technology development
DOI:
https://doi.org/10.54097/fcis.v1i3.2110Keywords:
Computational fluid dynamics, Mesh technology, InterdisciplinaryAbstract
This paper reviews the development of computational fluid dynamics, especially computational aerodynamics. This paper summarizes the achievements of CFD in grid technology, analyzes the existing problems and perplexities, and prospects its development trend. The CFD grid technology includes structured grid, unstructured grid, hybrid grid and overlapping grid.
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References
Zhang Leicheng, Guo Xiaodong, Zhao Enduo, He Feng.Development of Computational Fluid Dynamics (CFD) [A]. Beijing Mechanics Society.
Proceedings of the 23rd Annual Conference of Beijing Mechanics Society [C]. Beijing Mechanics Society: Beijing Mechanics Society,2017:3.
Yu Jinwei, Feng Xiaofeng.Review of Computational Fluid Dynamics [J]. Modern Manufacturing Technology & Equipment,2013(06):2526+28.
Sun Liqiang, Wang Di, Zhu Hongbo, Li Fan, Wei Yaodong.Research progress on design and CFD simulation of three-phase separator [J]. Petrochemical Equipment Technology,2017,38(04):6-12+5.
Van Leer B. CFD education: past, present, future. AIAA paper, 1999-0910, 1999 Yan Chao.Computational fluid dynamics methods and applications.Beijing: Beihang University Press, 2006
Mavriplis D J. Aerodynamic drag prediction using un-structured mesh solvers. In: CFD-Based Drag Prediction and Reduction. Deconoinck H, Sermus K, van Dam C.
Eds. VKI Lecture Notes, Von K´arm´an Inst. for Fluid Dynamics, Rhode-Saint-Gen`ese, Belgium, Mar. 2003
Levy D W, Thacker M D. Comparison of unstructured cell and node-based schemes for the Euler equations. AIAA paper, 1999-3185, 1999.


