Adaptive resizing-based multi-resolution particle method
Author:
Affiliation:
1. Department of Systems Innovation, The University of Tokyo
2. Hitachi Research Laboratory, Hitachi Ltd.
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/mej/advpub/0/advpub_21-00309/_pdf
Reference48 articles.
1. Belotserkovskiia, O. M. , Denisenkoa, V. V. , Konyukhovb, A. V. , Oparina, A. M. , Troshkina, O. V. and Chechetkinc, V. M. , Numerical stability analysis of the Taylor-Couette flow in the two-dimensional case, Computational Mathematics and Mathematical Physics, Vol. 49, No. 4, (2009), pp. 729-742.
2. Bochev, P. and Lehoucq, R.B., On the finite element solution of the pure Neumann problem, SIAM Review, Vol.47, No.1 (2005), pp. 50-66.
3. Chen, X., Sun, Z.G., Liu, L. and Xi, G., Improved MPS method with variable-size particles, International Journal for Numerical Methods in Fluids, Vol.80, No.6 (2016), pp. 358-374.
4. Chow, A.D., Rogers, B.D., Lind, S.J. and Stansby, P.K., Incompressible SPH (ISPH) with fast Poisson solver on a GPU, Computer Physics Communications, Vol.226 (2018), pp. 81-103.
5. Colagrossi, A. and Landrini, M., Numerical simulation of interfacial flows by smoothed particle hydrodynamics, Journal of Computational Physics, Vol.191, No.2 (2003), pp. 448-475.
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