Quadrilateral-Triangular Mixed Grid System for Numerical Analysis of Incompressible Viscous Flow

비압축성 점성 유동의 수치적 해석을 위한 사각형-삼각형 혼합 격자계

  • 심은보 (금오공과대학교 기계공학과) ;
  • 박종천 (금오공과대학교 기계공학과) ;
  • 류하상 (서울대학교 기계석계학과 대학원)
  • Published : 1996.03.01

Abstract

A quadrilateral-triangular mixed grid method for the solution of incompressible viscous flow is presented. The solution domain near the body surface is meshed using elliptic grid geneator to acculately simulate the viscous flow. On the other hand, we used unstructured triangular grid system generated by advancing front technique of a simple automatic grid generation algorithm in the rest of the computational domain. The present method thus is capable of not only handling complex geometries but providing accurate solutions near body surface. The numerical technique adopted here is PISO type finite element method which was developed by the present author. Investigations have been made of two-dimensional unsteady flow of Re=550 past a circular cylinder. In the case of use of the unstructured grid only, there exists a considerable amount of difference with the existing results in drag coefficient and vorticity at the cylinder surface; this may be because of the lack of the grid clustering to the surface that is a inevitable requirement to resolve the viscous flow. However, numerical results on the mixed grid show good agreements with the earlier computations and experimental data.

Keywords