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Aerodynamic Characteristics of Axial Circular Cylinders with Low Fineness Ratios between 0.5 and 0.75 using a Magnetic Suspension and Balance System

机译:轴向圆柱的空气动力学特性,使用磁悬浮和平衡系统在0.5和0.75之间的细度低。

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In this study, aerodynamic force and flow field of an axial circular cylinder with a low fineness ratio parallel to an airflow were investigated using the 1.0-m magnetic suspension and balance system (MSBS). The models with fineness ratios of 0.5 to 0.75 were tested in the support-interference-free condition at Reynolds numbers from 0.8 ~ 10~5 to 1.4 × 10~5. The aerodynamic force was measured by the MSBS and the base pressure was obtained by a wireless pressure-measurement device. The flow field was visualized by a smoke wire method. The results of force measurement show that the drag decreases monotonically in the range of fineness ratio larger than 0.5. This means that the critical geometry, at which the fineness ratio shows the local maximum of the drag coefficient, does not exist in the region of the fineness ratio larger than 0.5. The base pressure coefficient shows the tendency similar to the drag coefficient. This also indicates that there is no possible existence of the critical geometry. The fluctuating aerodynamic force in the lateral and vertical directions is larger than that in the axial direction. The visualization show that the flow separated from the leading edge generates transverse vortices and the recirculation area is formed close behind the model. The wake in the downstream is highly unsteady. These flow features correspond well to the measured fluctuating aerodynamic forces.
机译:在该研究中,使用1.0m磁悬浮和平衡系统(MSBS)研究了平行于气流平行于气流的轴向圆柱的空气动力和流场。在0.8〜10〜5至1.4×10〜5至1.4×10〜5的雷诺数的无干扰条件下测试具有0.5至0.75的细度0.5至0.75的型号。通过MSBS测量空气动力学力,通过无线压力测量装置获得基础压力。通过烟丝方法可视化流场。力测量结果表明,阻力在大于0.5的细度率范围内单调单调减少。这意味着临界几何形状,在该临界几何形状,在该临界比率显示拖曳系数的局部最大值,在大于0.5的细度比的区域中不存在。基础压力系数显示出类似于拖动系数的趋势。这也表明临界几何不可能存在。横向和垂直方向上的波动空气动力力大于轴向的气动力。可视化表明,与前缘分离的流程产生横向涡流,并在模型后面形成再循环区域。下游的唤醒非常不稳定。这些流动特征对应于测量的波动空气动力。

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