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Study of Turbulence-Radiation Interaction in Hypersonic Turbulent Boundary layers

机译:高超音速湍流边界层湍流-辐射相互作用研究

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In the paper, we conduct direct numerical simulations (DNS) to investigate the effect of turbulence-radiation interaction (TRI) in hypersonic turbulent boundary layers, representative of the Orion crew exploration vehicle (CEV) at peak heating condition during reentry. The radiative transfer equation (RTE) is solved using the tangent slab approximation. The RTE solver is line-by-line (LBL) accurate, making use of a developed efficient spectral database for spectral modeling. A multi-group full-spectrum correlated-k-distribution (FSCK) method is used to reduce the number of RTE evaluations while preserving LBL accuracy. A nondimensional governing parameter to measure the significance of TRI is proposed, and the DNS fields with and without radiation coupling are used to assess TRI. Both the uncoupled and coupled results show that there is no sizable interaction between turbulence and radiation at the hypersonic environment under investigation. An explanation of why the intensity of TRI in the hypersonic boundary layer is smaller than that in many combustion flows is provided.
机译:在本文中,我们进行直接数值模拟(DNS)来研究湍流-辐射相互作用(TRI)在高超声速湍流边界层中的影响,代表了猎户座乘员探索飞行器(CEV)在再入过程中处于峰值加热条件下的情况。使用切线平板近似法求解辐射传递方程(RTE)。 RTE求解器是逐行(LBL)精确的,并利用已开发的高效光谱数据库进行光谱建模。多组全谱相关k分布(FSCK)方法用于减少RTE评估次数,同时保留LBL准确性。提出了一种无量纲的可控TRI量度参数,并利用有无辐射耦合的DNS域对TRI进行了评估。未耦合和耦合的结果均表明,在所研究的高超声速环境中,湍流和辐射之间没有明显的相互作用。提供了为何高超声速边界层中的TRI强度小于许多燃烧流中的TRI强度的解释。

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