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Thermal investigation of an internally cooled strut injector for scramjet application at moderate and hot gas conditions

机译:在中温和高温气体条件下用于超燃冲压发动机的内部冷却支柱喷射器的热研究

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摘要

In this paper, we present a combined experimental and numerical approach to assess the thermal loads and the cooling mechanism of an internally cooled strut injector for a supersonic combustion ramjet. Infrared measurements of the injector surface are conducted at a moderate external flow temperature. In addition, the main flow field is investigated with the LITA technique. Main features of the cooling mechanism are identified based on experimental data. However, a full evaluation can only be obtained using a complex, conjugate CFD simulation, which couples the external and internal flow fields to the heat conduction inside the injector body. Furthermore, numerical simulations are also presented for hot gas conditions corresponding to combustion experiments. Both hydrogen, which would be used as fuel for flight tests, and air are considered as coolants. While the main features of the cooling mechanism will be shown to remain unchanged, the combustor wall temperature is found to have a significant influence on the cooling. This emphasizes the importance and the usefulness of such complex conjugate numerical simulations.
机译:在本文中,我们提出了一种结合实验和数值方法的方法,用于评估超音速冲压冲压发动机内部冷却支柱喷射器的热负荷和冷却机理。喷射器表面的红外测量是在适当的外部流动温度下进行的。此外,主要流场使用LITA技术进行了研究。根据实验数据确定冷却机制的主要特征。但是,只有使用复杂的共轭CFD模拟才能获得全面的评估,该模拟将外部和内部流场耦合到喷油器体内的热传导。此外,还提供了对应于燃烧实验的热气条件的数值模拟。被用作飞行测试燃料的氢气和空气均被视为冷却剂。尽管冷却机构的主要特征将保持不变,但燃烧室壁温却对冷却产生重大影响。这强调了这种复杂的共轭数值模拟的重要性和实用性。

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