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Radiation Modeling for the Reentry of the Hayabusa Sample Return Capsule

机译:ab鸟样品返回胶囊再入的辐射建模

摘要

Predicted shock-layer emission signatures of the Japanese Hayabusa capsule during its reentry are presented for comparison with flight measurements made during an airborne observation mission using NASA s DC-8 Airborne Laboratory. For each altitude, lines of sight were extracted from flow field solutions computed using an inhouse high-fidelity CFD code, DPLR, at 11 points along the flight trajectory of the capsule. These lines of sight were used as inputs for the line-by-line radiation code NEQAIR, and emission spectra of the air plasma were computed in the wavelength range from 300 nm to 1600 nm, a range which covers all of the different experiments onboard the DC-8. In addition, the computed flow field solutions were post-processed with the material thermal response code FIAT, and the resulting surface temperatures of the heat shield were used to generate thermal emission spectra based on Planck radiation. Both spectra were summed and integrated over the flow field. The resulting emission at each trajectory point was propagated to the DC-8 position and transformed into incident irradiance. Comparisons with experimental data are shown.
机译:呈现了日本Hay鸟胶囊再入期间预测的冲击层发射特征,以便与使用NASA的DC-8机载实验室进行的空中观察任务进行的飞行测量结果进行比较。对于每个高度,沿胶囊飞行轨迹的11个点从使用内部高保真CFD代码DPLR计算的流场解中提取视线。这些视线被用作逐行辐射代码NEQAIR的输入,并且在300 nm至1600 nm的波长范围内计算了空气等离子体的发射光谱,该范围涵盖了机载所有不同的实验DC-8。此外,对计算出的流场解进行了材料热响应代码FIAT的后处理,并将所得的隔热屏表面温度用于生成基于普朗克辐射的热发射光谱。将两个光谱相加并在流场上积分。在每个轨迹点处产生的发射都传播到DC-8位置,并转换为入射辐照度。显示了与实验数据的比较。

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