인접한 두 수중운동체 주위의 유동 해석을 위한 가상경계법의 적용

  • KYUNG SOO YANG

초록

Analysis of Fluid-structure interaction for two nearby underwater vehicles immersed in the sea is quite challenging because simulation of flow around them is very difficult due to the complexity of underwater vehicle shapes. The conventional approach using body-fitted or unstructured grids demands much time in dynamic grid generation, and yields slow convergence of solution. Since an analysis of fluid-structure interaction must be based on accurate simulation results, a more efficient way of simulating flow around underwater vehicles, without sacrificing accuracy, is desirable. An immersed boundary method facilitates implementation of complicated underwater-vehicle shapes on a Cartesian grid system. The 2nd-order spatial accuracy of our simulation is maintained with the aid of an adaptive mesh refinement technique. An LES modeling is also incorporated to resolve turbulent eddies. In this paper, we will demonstrate the effectiveness of the immersed boundary method we adopted, by presenting the simulation results on the flow around a modeled high-speed underwater vehicle interacting with a modeled low-speed one.

제목
인접한 두 수중운동체 주위의 유동 해석을 위한 가상경계법의 적용
저자
KYUNG SOO YANG
학회명
대한기계학회 2012년도 추계학술대회
개최지
창원 컨벤션센터
학회 개최일
2012-11-07 ~ 2012-11-09