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Yi Sun-sin Bridge: High Speed Wind Tunnel Tests of Twin Box Girder

机译:易孙 - 仙桥:高速风隧道试验双箱梁

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This paper presents experimental results for twin box girder of the Yi Sun-sin Bridge in order to investigate the sensitivity of the Reynolds numbers on aerostatic force coefficient. High speed wind tunnel tests on 1:30 scale sectional model were carried out at the aeronautical wind tunnel in Korea Air Force Academy. It was found from the tests that the drag and lift coefficients revealed significant decrease of nearby 23% at supercritical region. The safety rail prevented the Reynolds number dependency of aerostatic force coefficients at negative angles of attack. In similar way, the boundary layer trip strip attached at bottom surface of girder removed the Reynolds number dependency of aerostatic forces by fixing the location of flow transition. The pressure coefficients at girder surface near the gap significantly changed as the Reynolds number increase because of variation of the locations of flow separation and transition. The significantly unbalanced division of the drag force and lift forces at each box girder appeared in subcritical region was gradually resolved, and both girders almost equally divided the forces at supercritical region.
机译:本文为彝族仙桥的双箱梁提供了实验结果,以研究雷诺数对空气静力量系数的敏感性。在韩国空军学院航空风隧道进行1:30尺度剖面模型的高速风隧道试验。从测试中发现了阻力和升力系数在超临界区域下显示出附近23%的显着降低。安全轨防止了空气静力量系数处于负角度的雷诺数依赖性。以类似的方式,通过固定流动转变的位置,将附着在梁底表面处的边界层跳闸条除去了空气静力学力的雷诺数依赖性。由于流动分离和转变的位置的变化,在间隙附近的梁表面处的压力系数显着变化,随着雷诺数的增加而增加。在亚临界区域中出现在亚临界区域中出现在亚临界区域中的拖曳力和提升力的显着不平衡分裂,并且两个梁几乎同样将力分成超临界区域。

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