Anyoji M, Numata D, Nagai H, Asai K
Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency, 6-1-1 Yoshinodai, Chuo-Ku, Sagamihara, 252-5210 Japan.
Department of Aerospace Engineering, Tohoku University, 6-6-1 Aoba, Aoba-Ku, Sendai, Japan.
J Vis (Tokyo). 2015;18(2):297-309. doi: 10.1007/s12650-014-0239-9. Epub 2014 Oct 19.
A low-density wind tunnel called the Mars wind tunnel, has been developed at Tohoku University that can produce a high subsonic flow at low pressures for aerodynamic measurements of low-Reynolds-number aircraft wings aimed at developing aircraft applicable to the atmosphere on the planet Mars. Accurate surface pressure measurements on the wing are essential for analysis of not only aerodynamic performance, including lift and drag, but also the flow fields around the wing. This paper presents a surface pressure measurement technique using pressure-sensitive paint (PSP) applicable for Mars wind tunnel tests under low-pressure conditions. The results show that a PSP composed of palladium tetra(pentafluorophenyl) porphyrin (PdTFPP) and poly[1-(trimethylsilyl)-propyne] [poly(TMSP)] exhibits a high-pressure sensitivity at pressures as low as 1 kPa, and the absolute values of the static pressures measured by the PSP accorded well with the values derived from static pressure sensors used as a reference. A calibration methodology for the non-uniform pressure sensitivity on the test model, including a temperature calibration, is also established. The PSP technique clearly demonstrated pressure sensitivity over a distinctive low-pressure region inside a leading edge separation bubble on a flat plate at low Reynolds numbers.
东北大学开发了一种名为火星风洞的低密度风洞,它能够在低压下产生高亚音速气流,用于对低雷诺数飞机机翼进行空气动力学测量,目标是开发适用于火星大气层的飞机。机翼表面压力的精确测量不仅对于分析包括升力和阻力在内的空气动力学性能至关重要,对于分析机翼周围的流场也必不可少。本文介绍了一种适用于火星风洞低压条件试验的使用压敏漆(PSP)的表面压力测量技术。结果表明,由四(五氟苯基)卟啉钯(PdTFPP)和聚[1-(三甲基甲硅烷基)-丙炔] [聚(TMSP)]组成的PSP在低至1kPa的压力下表现出高压力灵敏度,并且PSP测量的静压绝对值与用作参考的静压传感器得出的值吻合良好。还建立了针对测试模型上非均匀压力灵敏度的校准方法,包括温度校准。PSP技术清楚地证明了在低雷诺数平板前缘分离泡内独特的低压区域上的压力灵敏度。