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FLUID-DYNAMIC LOADING ON A TILTED RECTANGULAR CYLINDER NEAR A SOLID WALL

机译:固体壁附近倾斜矩形圆柱体上的流体动力载荷

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摘要

We investigate the impact of different boundary conditions on the flow field developing around a tilted rectangular cylinder. We are mainly interested in analyzing the changes in force coefficients and in the vortex shedding Strouhal number due to the proximity of the cylinder to a bottom plate (placed at various distances from the cylinder) at different angles of attack. The angle of attack ranges between -30° and +30° and the cylinder elevation above the bottom wall is varied between almost zero and 200 mm. The effects of the different boundary conditions on the vortex shedding phenomenon are investigated by considering the Strouhal number of the vortex shedding as the key controlling parameter. The experimental results mimicking the unbounded conditions (relative large elevation of the cylinder above the solid wall) are in close agreement with those already found in literature. On the contrary, remarkable differences occur when the elevation of the cylinder is decreased. A large body of experimental results is related to the small elevation conditions at different attack angles, where the presence of the wall has a non-negligible effect on the behavior of the force coefficients and Strouhal number of the vortex shedding.
机译:我们研究了不同边界条件对围绕倾斜矩形圆柱体发展的流场的影响。我们主要对分析力系数的变化以及由于圆柱体靠近底板(位于距圆柱体不同距离的位置)以不同迎角而产生的涡旋斯特劳哈尔数感兴趣。迎角在-30°至+ 30°之间,并且底壁上方的圆柱高度在几乎零至200mm之间变化。以涡旋脱落的斯特劳哈尔数为关键控制参数,研究了不同边界条件对涡旋脱落现象的影响。模仿无限制条件(实心壁上方圆柱相对较高的高度)的实验结果与文献中已经发现的结果非常吻合。相反,当气缸的高度减小时,会出现明显的差异。大量的实验结果与在不同迎角下的小仰角条件有关,其中壁的存在对涡流脱落的力系数和Strouhal数的行为具有不可忽略的影响。

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