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COMPUTATION OF ROTOR/STATOR INTERACTION WITH HYDROGEN-FUELLED COMBUSTION

机译:与氢气燃烧的转子/定子相互作用的计算

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For the next-generation aircraft, a new propulsion system using hydrogen fuel has been proposed. In the present system, hydrogen fuel injected from a stator surface combusts in the turbine passages, accordingly, the conventional combustor can be cut out. The advantage of this system is that we can design a lighter and smaller engine with low emission. We have demonstrated the realizability of this system by using the cycle analysis and the numerical simulations. Through the previous studies, it was confirmed that the rotor/stator interaction has to be investigated, because the hydrogen combustion phenomena within the stator passage is so complex, and thus it would highly affect the rotor performance. In this paper, we focus on the rotor/stator interaction for the detailed investigation of realizability of this system. The 2-and 3-dimensional numerical simulations are performed for a single stage turbine with hydrogen-fuelled combustion. In the 2-dimensional study, the effects of the injection position and injection rate on the flow structure, the static temperature over the blades, and the blade performance are investigated. Furthermore, 3-dimensional numerical simulation is performed. The general aspect of 3-dimensional flow field is demonstrated, and the effect of hydrogen combustion on the components of turbine, for example hub, tip and blade, are investigated.
机译:对于下一代飞机,已经提出了一种使用氢燃料的新推进系统。在本系统中,从定子表面喷射的氢气在涡轮机通道中燃烧,因此,可以切出传统的燃烧器。该系统的优点是我们可以设计具有低发射的更轻且更较小的发动机。我们已经通过使用循环分析和数值模拟来展示了该系统的可实现性。通过先前的研究,确认必须研究转子/定子相互作用,因为定子通道内的氢气燃烧现象如此复杂,因此它会影响转子性能。在本文中,我们专注于转子/定子相互作用,详细研究该系统的可实现性。为具有氢燃料燃烧的单级涡轮机进行2和3维数值模拟。在二维研究中,研究了喷射位置和喷射速率对流动结构的影响,叶片上的静温度和叶片性能。此外,执行三维数值模拟。研究了三维流场的一般方面,并研究了氢燃烧对涡轮机,例如轮毂,尖端和叶片的部件的影响。

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