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      IMMERSED BOUNDARY METHOD FOR THE ANALYSIS OF 2D FLOW OVER A CYLINDER AND 3D FLOW OVER A SPHERE = 원통 주위의 2차원 유동과 구 주위의 3차원 유동해석을 위한 가상경계법 개발

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      https://www.riss.kr/link?id=A76280310

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      다국어 초록 (Multilingual Abstract)

      IB (immersed boundary) method is one of the prominent tool in computational fluid dynamics for the analysis of flows over complex geometries. The IB technique simplyfies the solution procedure by eliminating the requirement of complex body fitted grids and it is also superior in terms of memory requirement. In this study we have developed numerical code (FOTRAN) for the analysis of 2D flow over a cylinder using IB technique. The code is validated by comparing the wake lengths and separation angles given by Guo et. al. We employed fractional-step procedure for solving the Navier-Stokes equations governing the flow and discrete forcing IB technique for imposing boundary conditions. Also we have developed a 3D code for the backward-facing-step flow and flow over a sphere. The reattachment length in backward-facing-step flow was compared with the one given by Nie and Armaly. which has proven the validity of our code.
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      IB (immersed boundary) method is one of the prominent tool in computational fluid dynamics for the analysis of flows over complex geometries. The IB technique simplyfies the solution procedure by eliminating the requirement of complex body fitted grid...

      IB (immersed boundary) method is one of the prominent tool in computational fluid dynamics for the analysis of flows over complex geometries. The IB technique simplyfies the solution procedure by eliminating the requirement of complex body fitted grids and it is also superior in terms of memory requirement. In this study we have developed numerical code (FOTRAN) for the analysis of 2D flow over a cylinder using IB technique. The code is validated by comparing the wake lengths and separation angles given by Guo et. al. We employed fractional-step procedure for solving the Navier-Stokes equations governing the flow and discrete forcing IB technique for imposing boundary conditions. Also we have developed a 3D code for the backward-facing-step flow and flow over a sphere. The reattachment length in backward-facing-step flow was compared with the one given by Nie and Armaly. which has proven the validity of our code.

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      목차 (Table of Contents)

      • 1. INTRODUCTION
      • 2. METHODOLOGY
      • 3. RESULTS AND DISCUSSIONS
      • 4. CONCLUSIONS
      • ACKNOWLEDGEMENTS
      • 1. INTRODUCTION
      • 2. METHODOLOGY
      • 3. RESULTS AND DISCUSSIONS
      • 4. CONCLUSIONS
      • ACKNOWLEDGEMENTS
      • REFERENCES
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