An accurate and efficient method for automatic deformation of unstructured polyhedral grids to simulate the flow induced by the motion of solid objects

Citations

WEB OF SCIENCE

1
Citations

SCOPUS

2

초록

In the present study, an efficient numerical method to deform an unstructured polyhedral grid for accurate simulations of a flow induced by a moving solid object is proposed. In order to overcome inefficiency of the existing methods based on the vertices of a computational cell, the present approach deforms the polyhedral grids adaptively using a network based on the centre of each computational cell. It is shown that the proposed method provides with an improved efficiency for an arbitrary Lagrangian-Eulerian (ALE) simulation of a flow with a moving solid object compared to the existing methods based on the vertices. It is also shown that a polyhedral grid results in a better numerical accuracy than a triangular grid. The present numerical methods were applied to flows around a fixed and oscillating circular cylinder with various Reynolds numbers and oscillating frequencies. The produced numerical results were verified against aerodynamic characteristics of the previous numerical studies.

키워드

unstructured polyhedral grid; spring analogy; computational fluid dynamics; CFD; arbitrary Lagrangian-Eulerian; ALE; NAVIER-STOKES EQUATIONS; FRACTIONAL-STEP METHOD; CIRCULAR-CYLINDER; MESH
제목
An accurate and efficient method for automatic deformation of unstructured polyhedral grids to simulate the flow induced by the motion of solid objects
저자
Kang, Seongwon; Lee, Sang Hyuk; Hur, Nahmkeon
DOI
10.1504/PCFD.2013.053659
발행일
2013
유형
Article
저널명
Progress in Computational Fluid Dynamics
권
13
호
3-4
페이지
182 ~ 190