Eulerian numerical method for simulation of explosion problems

Tianbao Ma*, Jianguo Ning, Cheng Wang

*Corresponding author for this work

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Abstract

This paper presents an adaptive grid subdivision algorithm based on the Youngs' interface reconstruction algorithm to treat the advection of the mixed grids in the multi-material Eulerian method. The advantage of this algorithm is that it only needs to calculate the advection between pure grids, escaping the complexity encountered in the advection of mixed grids with two materials. In addition, this algorithm is a multi-dimensional advection algorithm, and it can decrease the error encountered in the direction-split advection algorithm. In order to verify the efficiency of the proposed adaptive grid subdivision algorithm in the actual physical field, it is added to the indigenously developed EXPLOSION-2D simulation software, and some numerical tests are performed to demonstrate the utility of this algorithm. The simulation results verify that the adaptive grid subdivision algorithm is simple and efficient.

Original languageEnglish
Pages (from-to)497-500
Number of pages4
JournalModern Physics Letters B
Volume23
Issue number3
DOIs
Publication statusPublished - 30 Jan 2009

Keywords

  • Adaptive grid subdivision
  • Eulerian method
  • Youngs' algorithm

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Ma, T., Ning, J., & Wang, C. (2009). Eulerian numerical method for simulation of explosion problems. Modern Physics Letters B, 23(3), 497-500. https://doi.org/10.1142/S0217984909018746