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Polymer/Ceramic PSP with Reduced Surface Roughness for Unsteady Pressure Measurement in Transonic Flow

机译:具有降低的表面粗糙度的聚合物/陶瓷PSP,用于跨音速流中的非稳态压力测量

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Polymer/ceramic pressure-sensitive paints (PC-PSPs) with reduced surface roughness were developed for measuring unsteady pressure fields in transonic flow. Four types of PC-PSPs, each having different particle size, mass content, solvent, and so on, were formulated and applied to transonic wind-tunnel tests of a Common Research Model airfoil. The effects of surface roughness on unsteady transonic flow on the airfoil were evaluated at Mach 0.74 and Reynolds number of 5.0 × 10~6. It was found that all four PC-PSPs had capabilities to measure time-series pressure distributions, but the location of a shock wave and the root-mean-square pressure fluctuations differed depending on types of PC-PSP. Among all tested PC-PSPs, the PC-PSP having arithmetic surface roughness of 0.5 urn and cutoff frequency of 3 kHz yielded data practically the same as that of a clean airfoil. Using this PC-PSP, propagation of pressure waves and oscillation of shock waves on the airfoil were clearly captured. A spectral analysis showed that the fundamental frequency of shock-wave oscillation agreed very well with that calculated based on the mechanism proposed by Lee. These results show that the selected PC-PSP can offer a powerful means to study transonic buffeting on airfoils and 3D wings.
机译:开发了具有降低的表面粗糙度的聚合物/陶瓷压敏涂料(PC-PSP),用于测量跨音速流中的不稳定压力场。配制了四种类型的PC-PSP,每种都具有不同的粒径,质量含量,溶剂等,并将其应用于Common Research Model机翼的跨音速风洞测试。在0.74马赫数和5.0×10〜6的雷诺数下评估了表面粗糙度对翼型上不稳定的跨音速流动的影响。发现所有四个PC-PSP都有测量时间序列压力分布的能力,但是冲击波的位置和均方根压力波动取决于PC-PSP的类型。在所有测试的PC-PSP中,具有0.5 urn的算术表面粗糙度和3 kHz的截止频率的PC-PSP产生的数据实际上与干净的机翼相同。使用该PC-PSP,可以清晰地捕获翼型上压力波的传播和冲击波的振荡。频谱分析表明,激波振荡的基频与根据李提出的机理计算出的基频非常吻合。这些结果表明,所选的PC-PSP可为研究翼型和3D机翼上的跨音速抖振提供强大的手段。

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