| 구분 |
수치계산 및 영상해석 세미나 |
| 일정 |
2017-11-08(수) 16:00~18:00 |
| 세미나실 |
129동 104호 |
| 강연자 |
한주영 (에이브이엘, 오스트리아) |
| 담당교수 |
강명주 |
| 기타 |
|
A semi-implicit scheme of inflow-based gradient (IBG) finite volume method is proposed to
solve the G-equation model in premixed turbulent combustion. In order to overcome small time
step caused by CFL restriction in polyhedron mesh, a semi-implicit method is used in IBG
finite volume method inspired by (1, 2). Moreover, a conventional approximation of turbulent
transport term in the G-variance equation is reviewed and compared with a mathematically
correct tangential diffusion term. A sub-face tessellation technique is introduced to prevent
deteriorating the order of convergence in case of distorted hexahedron cells. The implementation
is very straightforward and easily combined with a conventional finite volume code. A
higher order of convergence in numerical examples on polyhedron meshes is illustrated for each
velocity term in the G-equation. Some numerical results in real engine cases are also presented.
(1) K. Mikula, M. Ohlberger, A New Level Set Method for Motion in Normal Direction Based on a
Semi-Implicit Forward-Backward Diffusion Approach, SIAM Journal of Scientific Computing 32
(2010) 1527–1544.
(2) K. Mikula, M. Ohlberger, Inflow-Implicit/Outflow-Explicit Scheme for Solving Advection Equations,
In: J.F. et al. (ed.) Finite Volumes for Complex Applications VI - Problems & Perspectives,
Springer Proceedings in Mathematics 4 1 (2011) 683–691.