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Coupled radiation-gasdynamic solution method for hypersonic shock layers in thermochemical nonequilibrium.

机译:热化学非平衡中高超声速激波层的辐射-气体耦合耦合求解方法。

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摘要

The purpose of this research was to develop a highly accurate computational method for calculating the nonequilibrium radiative heat transfer within reentry shock layers. The nonequilibrium state of the flowfield was obtained by using the multispecies multitemperature nonequilibrium flow solver NH7AIR which is capable of separately tracking the vibrational energy of each diatomic species and the energy of the free and bound electrons. The calculation of radiative heat transfer was performed by utilizing the detailed line-by-line spectral radiation solver SPRADIAN. Two radiative transport schemes were implemented in this coupled code. The first scheme was based on a straightforward application of the standard tangent slab solution method. The second scheme was based on the conservation of radiative energy and resulted in a finite volume method for radiative heat transfer (FVMR). Data from the FIRE II flight experiment were used to validate the coupled radiation-gasdynamic solver. Coupled results exhibited a high degree of agreement with experimental data. The utility of the FVMR scheme was also examined in an uncoupled implementation and shows promise for future implementation in a coupled setting. Together, the enhancement of the nonequilibrium thermal modeling, the use of a highly accurate spectral radiation solver and the development of a conservative scheme for radiative transport constitute a significant improvement in current capabilities available for modeling the radiating nonequilibrium shock layers which accompany reentry flight.
机译:这项研究的目的是开发一种高度精确的计算方法,用于计算折返激波层内的非平衡辐射热传递。流场的非平衡状态是通过使用多物种多温度非平衡流动求解器NH7AIR获得的,该求解器能够分别跟踪每个双原子物种的振动能以及自由电子和束缚电子的能量。辐射传热的计算是通过使用逐行光谱辐射求解器SPRADIAN进行的。在此耦合代码中实现了两种辐射传输方案。第一种方案是基于标准切线平板求解方法的直接应用。第二种方案基于辐射能量守恒,并产生了一种有限体积的辐射传热方法(FVMR)。来自FIRE II飞行实验的数据用于验证耦合的辐射气动力求解器。耦合结果显示与实验数据高度吻合。 FVMR方案的效用也在非耦合实现中得到了检验,并显示了在耦合环境中未来实现的希望。总之,非平衡热模型的增强,高精度光谱辐射求解器的使用以及对辐射传输的保守方案的发展,构成了当前可用于模拟伴随再入飞行的辐射非平衡激波层的能力的重大改进。

著录项

  • 作者

    Martin, Christopher L., Jr.;

  • 作者单位

    Air Force Institute of Technology.;

  • 授予单位 Air Force Institute of Technology.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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