A Study on the Behavior of Buffer Layer in Turbulent Boundary Layer with Variation of Surface Temperature and Roughness

표면온도 및 조도분포가 있는 경우 난류경계층의 완충층 거동에 관한 연구

  • Published : 1999.02.01

Abstract

In this paper, the wind tunnel test was carried to investigate the behavior of buffer layer in turbulent boundary layer with variation of surface temperature and roughness. The results were as follows; 1. The velocity in turbulent boundary layer was increased when the roughness height within viscous sublayer thickness was increased. 2. When the surface temperature was increased, the density of air was decreased and the velocity in turbulent boundary layer was increased. Thus, the thickness of turbulent boundary layer was decreased. 3. When the roughness height and surface temperature was increased simultaneously, the thickness of turbulent boundary layer was decreased. 4. The decrement of the thickness of turbulent boundary layer was more effected by the increment of the roughness height rather than the increment of surface temperature. 5. In this study, it was found that the condition of the highest velocity n turbulent boundary layer was the temperature 333K and roughness #100.

Keywords

References

  1. 詳說 流體力學 손병진;맹주성;이상환
  2. Boundary-layer Theory Schlichting, H.
  3. Foundations of Boundary Layer Theory for Momentum, Heat, and Mass Transfer Joseph, A.
  4. Int. J. Heat Mass Transfer v.20 no.3 An Experimental Determination of the Turbulent Prandtl Number in the Inner Boundary Layer for Air Flow over a Flat Plate Snijers,A.K.;Koppius,A.M.;Nieuwvelt,C.
  5. AIAA J. Turbulent Boundary Layer Drag Reduction Using Riblets Walsh, M. J.
  6. AIAA J. v.21 Riblets as a Viscous Drag Reduction Technique Walsh, M. J.
  7. Appl. Scientific research v.46 Turbulent Measurements over Longitudinal Micro-Grooved Surfaces Pulles, C.J.A.;Prasad, K. K.;Nieuwstadt, F.T.M.
  8. Progress in Astro. and Aero. v.123 Riblets, Viscous Drag Reduction in Boundary Layer Walsh, M. J.
  9. AIAA J. A Combined Visualization-Anemometry Study of the Turbulent Drag Reducing Mechanisms of Triangular Micro-Groove Surface Modifications Bacher, E. V.;Smith, C. R.
  10. Theoretical and Applied Mechanics v.39 Turblent Boundary Layer Developing on Drag Reducing Riviet Nakao, S.
  11. IUTAM Symposium Structure of turbulence and Drag Reduction Drag Reduetion in pipes Lined with Riblets Liu, K. N.;Christodoulou, C.;Riccius, O.;Joseph, D. D.
  12. 수산해양교육연구 v.8 no.2 表面 거칠기가 曲面상의 亂流 境界層에 미치는 影響에 關한 硏究 성상모;김시영
  13. 수산해양교육연구 v.9 no.1 均一壓力 分布에 依한 亂流 境界層內 粘性 摩擦力의 減少化에 關한 硏究 성두남;김시영
  14. Journal of Fluids Engineering v.113 Application of V Shape Riblets to Pipe Flows Nakao, S.
  15. Proc. Second Japan-Korea Joint Workshop on Ship and Marine Hydrodynamics Frictional Drag Reduction by Injecting Microbubble into Buffer Layer of Turbulent Boundary Layer Kim, S. Y.;Kato, H.