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Numerical Simulation of Impact and Dynamic Deformation Based on Two-Step Eulerian Method

Two-Step Eulerian 기법 기반 충돌 및 동적 변형 해석

  • Published : 2006.08.31

Abstract

In this paper, numerical algorithms applied in two-step eulerian scheme are investigated and implemented. Element quantities are advected with donor or van Leer algorithm. Nodal quantities are advected with Simplifed ALE [SALE] algorithm. Material interfaces are determined with Simple Line Interface Calculation [SLIC] algorithm. Practical aspects considered for code development are addressed in detail. The results of developed two-step Eulerian code are verified by comparing with those from pure lagrangian scheme and commercial code.

본 연구에서는 Lagrangian 단계와 Remap 단계로 이루어진 Two-step Eulerian 기법에 적용되는 수치기법에 대해 살펴보고, 이를 구현하였다. 요소 값은 donor cell 과 van Leer 기법으로 이류처리 하였고, 절점 값은 Simplifed ALE [SALE] 기법으로 이류처리 하였으며, 재료 경계면은 Simple Line Interface Calculation [SLIC] 기법으로 결정하였다. 또한, 프로그램 구현 과정과 Lagrangian 단계와 Remap 단계의 연결 시 주의 깊게 고려해야할 사항들에 대해 자세히 기술하였다. 본 연구를 통해 구현된 Two-step Eulerian 코드의 검증을 위해, 순수 Lagrangian 기법, 그리고 상용코드의 결과와 비교하여 해석 결과의 정확성을 검증하였다.

Keywords

References

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