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Numerical Investigation on Radiative Heat Loads in Liquid Rocket Thrust Chambers

机译:液体火箭推力室内辐射热负荷的数值研究

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In liquid rocket engines, wall heat transfer analyses are of primary importance for the thrust chamber design. Numerical investigations usually derive the convective heat flux from computational fluid dynamics simulations, whereas the radiative counterpart is often neglected. The goal of the present paper is a systematic numerical investigation on the role of radiative heat transfer on the overall thermal loads occurring in the thrust chamber of liquid rocket engines. To this purpose, a numerical code for thermal radiation computations is coupled to a computational fluid dynamics solver. The results of the numerical setup are discussed and compared to the available literature's numerical data. Then, the radiative contribution to the overall heat flux in the thrust chamber of oxygen/hydrogen and oxygen/methane liquid rocket engines is investigated through a wide parametric analysis. The results show that, in typical operating conditions, the radiative heat load is proportionally greater in methane-fueled engines than in hydrogen-fueled engines, and that the radiative contribution to the overall wall heat flux becomes increasingly relevant for large-scale low-chamber-pressure engines. A methodology for a quick preliminary evaluation of the radiative wall heat flux in liquid rocket thrust chambers is finally presented and verified against coupled simulations.
机译:在液体火箭发动机中,壁传热分析对于推力室设计至关重要。数值研究通常从计算流体动力学模拟中得出对流热通量,而辐射对应物通常被忽略。本文的目的是对辐射热传递对液体火箭发动机推力室内发生的总热负荷的作用进行系统的数值研究。为此,将用于热辐射计算的数字代码耦合到计算流体动力学求解器。讨论了数值设置的结果,并将其与现有文献的数值数据进行了比较。然后,通过广泛的参数分析研究了氧气/氢气和氧气/甲烷液体火箭发动机对推力室内总热通量的辐射贡献。结果表明,在典型的工况下,甲烷燃料发动机的辐射热负荷比氢燃料发动机的辐射热负荷成比例地更大,并且辐射对总壁热通量的贡献与大型低室越来越相关。压力发动机。最后提出了一种快速初步评估液体火箭推力室内辐射壁热通量的方法,并针对耦合仿真进行了验证。

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  • 来源
    《Journal of propulsion and power》 |2019年第5期|930-943|共14页
  • 作者单位

    Univ Roma La Sapienza, Dipartimento Ingn Meccan & Aerosp, Via Eudossiana 18, I-00184 Rome, Italy|Italian Space Agcy, Sci Res Unit, Via Politecn Snc, I-00133 Rome, Italy;

    Univ Roma La Sapienza, Dipartimento Ingn Meccan & Aerosp, Via Eudossiana 18, I-00184 Rome, Italy;

    Univ Roma La Sapienza, Dipartimento Ingn Meccan & Aerosp, Via Eudossiana 18, I-00184 Rome, Italy;

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