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EXPERIMENTAL AND NUMERICAL INVESTIGATIONS OF THE NEKOMIMI FILM COOLING TECHNOLOGY

机译:NEKOMIMI薄膜冷却技术的实验和数值研究

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The improvement of the thermal efficiency of modern gas turbines can be achieved by reducing the required cooling air amount. Therefore, it is necessary to increase the cooling effectiveness, so that the available cooling air fulfils the cooling task even if the amount has been reduced. Due to experimental and numerical efforts, it is well understood today that aerodynamic mixing processes are enhanced by counter rotating vortices (CRV) in the cooling jets and lead to jet liftoff effects. Novel film cooling technologies focus on establishing anti-counter-rotating-vortices (ACRV) inside the cooling jet that prevent the hot gas from flowing underneath the jet and, thus, avoid the lift-off effect. One of these technologies is the NEKOMIMI film cooling, which is derived from the original double-jet film cooling (DJFC).
机译:可以通过减少所需的冷却空气量来实现现代燃气轮机的热效率的提高。因此,有必要提高冷却效率,使得即使减少了冷却空气的量,可用的冷却空气也能完成冷却任务。由于实验和数值上的努力,今天众所周知,通过冷却射流中的反向旋转涡流(CRV)可以增强空气动力混合过程,并导致射流升起效应。新颖的薄膜冷却技术着重于在冷却射流内部建立防逆流旋涡(ACRV),以防止热气体在射流下方流动,从而避免了升空效应。这些技术之一是NEKOMIMI薄膜冷却,它源自原始的双喷射薄膜冷却(DJFC)。

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