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Numerical investigation of combustion with non-gray thermal radiation and soot formation effect in a liquid rocket engine

机译:液体火箭发动机非灰色热辐射燃烧及烟灰形成效应的数值研究

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A numerical analysis was carried out in order to investigate the combustion and heat transfer characteristics in a liquid rocket engine in terms of non-gray thermal radiation and soot formation. Governing gas and droplet phase equations with PSIC model, turbulent combustion model with liquid kerosene fuel, soot formation, and non-gray thermal radiative equations are introduced. A radiation model was implemented in a compressible flow solver in order to investigate the effects of thermal radiation. The finite-volume method (FVM) was employed to solve the radiative transfer equation, and the weighted-sum-of-gray-gases model (WSGGM) was applied to model the radiation effect by a mixture of non-gray gases and gray soot particulates. After confirming the two-phase combustion behavior with soot distribution, the effects of the O/F ratio, wall temperature, and wall emissivity on the wall heat flux were investigated. It was found that the effects of soot formation and radiation are significant; as the O/F ratio increases, the wall temperature decreases. In addition, as the wall emissivity increases, the radiative heat flux on the wall increases.
机译:为了研究液体火箭发动机的非灰色热辐射和烟尘形成,进行了数值分析,以研究其燃烧和传热特性。介绍了用PSIC模型控制气态和液滴相态方程,使用液态煤油燃料的湍流燃烧模型,烟灰形成和非灰色热辐射方程。为了研究热辐射的影响,在可压缩流动求解器中实现了辐射模型。采用有限体积法(FVM)求解辐射传递方程,并应用灰色气体加权总和模型(WSGGM)来模拟非灰色气体和灰烟混合物的辐射效果微粒。在确定了具有烟灰分布的两相燃烧行为后,研究了O / F比,壁温和壁发射率对壁热通量的影响。已经发现烟灰形成和辐射的影响是显着的。随着O / F比的增加,壁温降低。另外,随着壁的发射率增加,壁上的辐射热通量增加。

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