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Investigation of Passive Porosity as a Means for Bluff-Body Drag Reduction

机译:被动孔隙度的研究作为诈唬体阻力减少的手段

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An investigation into the capability of passive porosity to reduce the drag of a bluff-body is presented. This initial work involves integrating varying degrees of porosity into the side and back faces of a small-scale model to determine optimum conditions for maximum drag reduction. Both force and pressure measurements at differing degrees of model yaw are presented, with the conditions for optimum performance, identified. At a length-based Reynolds number of 2.3 × 10~6, results showed a maximum drag reduction of 12% at zero yaw when the ratio of the open area on the back face relative to the side faces was between two and four. For all non-zero yaw angles tested, this ratio reduced to approximately two, with the drag benefit reducing to 6% at 10.5 degrees. From a supplementary theoretical analysis, calculated optimum bleed rate into the base for maximum drag reduction, also showed reasonable agreement to other results reported previously.
机译:提出了对无源孔隙率的能力来减少诈唬体的阻力。 该初始工作涉及将不同程度的孔隙率集成到小规模模型的侧面和背面中,以确定最大阻力的最佳条件。 提出了不同程度的模型偏航的力和压力测量,具有最佳性能的条件,确定。 在基于长度的雷诺数2.3×10〜6中,当背面相对于侧面的边界的比率在两个和四之间时,结果显示为零偏航时的最大减小12%。 对于所有测试的非零偏偏角,该比率还原为大约两种,阻力效益在10.5度下降低至6%。 根据补充理论分析,计算出最大阻力率的最佳排放率为最大阻力,也显示出对先前报告的其他结果的合理一致。

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