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Transition Detection by Temperature Sensitive Paint at Cryogenic Temperatures in the European Transonic Wind Tunnel (ETW)

机译:欧式风洞低温温度敏感涂料过渡检测(ETW)

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The identification of laminar-turbulent boundary layer transition on wind tunnel models provides essential data for modern wing design. However, simulating true flight Reynolds numbers with scaled models requires the use of cryogenic wind tunnels. Transition detection in 'warm' wind tunnels can be realized using commercially available IR cameras. In parallel, the temperature sensitive paint (TSP) technique is well established as an additional tool. In cryogenic testing, IR imaging becomes more difficult because of the reduction in radiated energy and the shift to longer wavelengths. Therefore, the TSP technique has become a promising alternative here. However, applying temperature sensitive paint in a large-scale cryogenic wind tunnel like the European Transonic Wind tunnel (ETW) needs specific modification of existing TSP formulations. Cooperative tests in the ETW therefore were performed by DLR and NAL (Japan). In these measurements, NAL's paint and DLR's mobile PSP/TSP system for data acquisition and evaluation were used. Some efforts were made to adapt the system to specific conditions given at the ETW wind tunnel. So for the first time it was successfully realized to perform a TSP luminescent paint test at cryogenic temperatures in a commercial wind tunnel.
机译:风洞模型上层状湍流边界层过渡的识别为现代翼设计提供了基本数据。但是,使用缩放模型模拟真正的飞行雷诺数需要使用低温风隧道。可以使用市售的IR摄像机实现“温暖”风隧道中的过渡检测。并行地,温度敏感涂料(TSP)技术很好地建立为额外的工具。在低温测试中,IR成像变得更加困难,因为辐射能量的降低和移动到更长的波长。因此,TSP技术已经成为这里有前途的替代品。然而,在大规模低温风洞中施加温度敏感涂料,如欧洲跨音风隧道(ETW)需要对现有的TSP配方进行具体修改。因此,ETW中的合作测试由DLR和NAL(日本)进行。在这些测量中,使用NAL的Paint和DLR的移动PSP / TSP系统,用于数据采集和评估。采取一些努力使系统适应ETW风洞给出的特定条件。因此,首次成功实现了在商业风洞的低温温度下执行TSP发光涂料试验。

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