Improving the Performance of Lattice Boltzmann Method with Pipelined Algorithm on A Heterogeneous Multi-zone Processor

Author:

Zhang Qingyang,Xu Lei,Chen Rongliang,Chen Lin,Chen Xinhai,Wang Qinglin,Liu Jie,Yang Bo

Publisher

Springer Nature Switzerland

Reference27 articles.

1. Reyhanian, E., Dorschner, B., Karlin, I.V.: Thermokinetic lattice Boltzmann model of nonideal fluids. Phys. Rev. E 102(2), 020103 (2020)

2. Feiger, B., Vardhan, M., Gounley, J., et al.: Suitability of lattice Boltzmann inlet and outlet boundary conditions for simulating flow in image-derived vasculature. Commun. Numer. Methods Eng. 35(6), e3198 (2019)

3. Han, M., Ooka, R., Kikumoto, H.: Lattice Boltzmann method-based large-eddy simulation of indoor isothermal airflow. Int. J. Heat Mass Transf. 130, 700–709 (2019)

4. Xu, L., Chen, R., Cai, X.C.: Parallel finite-volume discrete Boltzmann method for inviscid compressible flows on unstructured grids. Phys. Rev. E 103(2), 023306 (2021)

5. Guo, W., Jin, C., Li, J.: High performance lattice Boltzmann algorithms for fluid flows. In: 2008 International Symposium on Information Science and Engineering, pp. 33–37. IEEE, Shanghai (2008)

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