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Aerothermal Analysis of the Project Fire II Afterbody Flow

机译:火灾II后肢流的空气热分析

摘要

Computational fluid dynamics (CFD) is used to simulate the wake flow and afterbody heating of the Project Fire II ballistic reentry to Earth at 11.4 km/sec. Laminar results are obtained over a portion of the trajectory between the initial heat pulse and peak afterbody heating. Although non-catalytic forebody convective heating results are in excellent agreement with previous computations, initial predictions of afterbody heating were about a factor of two below the experimental values. Further analysis suggests that significant catalysis may be occurring on the afterbody heat shield. Computations including finite-rate catalysis on the afterbody surface are in good agreement with the data over the early portion of the trajectory, but are conservative near the peak afterbody heating point, especially on the rear portion of the conical frustum. Further analysis of the flight data from Fire II shows that peak afterbody heating occurs before peak forebody heating, a result that contradicts computations and flight data from other entry vehicles. This result suggests that another mechanism, possibly pyrolysis, may be occurring during the later portion of the trajectory, resulting in less total heat transfer than the current predictions.
机译:计算流体动力学(CFD)用于以11.4 km / sec的速度模拟Project Fire II弹道再入进入地球的尾流和余热。在初始热脉冲和后体加热峰值之间的轨迹的一部分上获得层流结果。尽管非催化前体对流加热结果与先前的计算非常吻合,但是后体加热的初步预测大约比实验值低两倍。进一步的分析表明,在车身后部隔热板上可能会发生明显的催化作用。包括后车身表面有限速率催化在内的计算与轨迹早期的数据非常吻合,但在后车身加热峰值附近(尤其是在圆锥形截头锥体的后部)非常保守。对Fire II的飞行数据的进一步分析表明,后车身加热高峰出现在前车身加热高峰之前,这一结果与来自其他进入车辆的计算和飞行数据相矛盾。该结果表明,在轨迹的后半部分可能发生了另一种机制,可能是热解,导致总传热少于当前的预测。

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