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Measured and calculated spectral radiation from a blunt body shock layer in an arc-jet wind tunnel

机译:电弧喷射风洞中钝体冲击层的测量和计算光谱辐射

摘要

Spectra of the shock layer radiation incident on the stagnation point of a blunt body placed in an arc-jet wind tunnel were measured over the wavelength range from 600 nm to 880 nm. The test gas was a mixture of 80 percent air and 20 percent argon by mass, and the run was made in a highly nonequilibrium environment. The observed spectra contained contributions from atomic lines of nitrogen, oxygen, and argon, of bound-free and free-free continua, and band systems of N2 and N2(+). The measured spectra were compared with the synthetic spectra, which were obtained through four steps: the calculation of the arc-heater characteristics, of the nozzle flow, of the blunt-body flow, and the nonequilibrium radiation processes. The results show that the atomic lines are predicted approximately correctly, but all other sources are underpredicted by orders of magnitude. A possible explanation for the discrepancy is presented.
机译:在600 nm至880 nm的波长范围内,测量了入射到放置在电弧喷射风洞中的钝体停滞点上的冲击层辐射的光谱。测试气体是质量百分比为80%的空气和20%的氩气的混合物,运行是在高度不平衡的环境中进行的。观察到的光谱包含来自氮,氧和氩原子线,无键和自由连续体以及N2和N2(+)的能带系统的贡献。将测得的光谱与合成光谱进行比较,合成光谱通过四个步骤获得:电弧加热器特性的计算,喷嘴流量,钝体流量和非平衡辐射过程。结果表明,原子线的预测大致正确,但所有其他来源的预测量级均不足。给出了差异的可能解释。

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