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Flow Evolution Through a Turning Midturbine Frame with Embedded Design

机译:通过带有嵌入式设计的旋转中涡轮机框架进行流动演变

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The paper discusses the time-averaged flow of a new-concept turbine transition duct placed in a two-stage counter-rotating test turbine. As a possible architecture for the turbine transition duct of future engines, the structural vanes carrying the bearing loadings can be integrated with the first low-pressure vane row in one aerodynamically optimized wide-chord vane called the turning midturbine frame. To increase the flow uniformity and to decrease the unsteady content of the flow, a baseline turning midturbine frame is redesigned by embedding two splitter vanes into the strut passage. The discussion on the flowfield is based on numerical results obtained by computational fluid dynamics and validated by aerodynamic measurements. In particular, the splitters are seen playing a major role in suppressing the big structures generated by the struts and the secondary flows of the high-pressure turbine. On the other hand, new losses are introduced by the splitters. Such structures play a decisive role in the overall component performance; therefore, their effect should be properly understood. This work provides a deep insight into the flow physics of an embedded turning midturbine frame for next-generation aeroengines, which is seen as a promising architecture in order to compact the engine size while keeping component performance high. The present work can be considered as a first attempt to implement splitter blades into an already existing turning midturbine frame design, and its value lies in a thorough experimental and computational study on the losses and benefits of such a design.
机译:本文讨论了放置在两级反向旋转测试涡轮中的新概念涡轮过渡管道的时均流量。作为未来发动机的涡轮过渡导管的一种可能的结构,承载轴承载荷的结构叶片可以与第一低压叶片排集成在一个经过空气动力学优化的宽弦叶片中​​,称为旋转中涡轮框架。为了增加流的均匀性并减少流的不稳定含量,通过将两个分流器叶片嵌入支杆通道中来重新设计基线回转中型涡轮机框架。对流场的讨论基于通过计算流体动力学获得并通过空气动力学测量验证的数值结果。特别是,看到分流器在抑制由高压涡轮机的支杆和二次流产生的大型结构中起主要作用。另一方面,分配器引入了新的损失。这种结构在整个组件的性能中起着决定性的作用。因此,应适当了解其效果。这项工作为下一代航空发动机的嵌入式转弯中涡轮发动机机架的流动物理特性提供了深刻的见解,该结构被视为一种有前途的架构,可以在紧凑的发动机尺寸的同时保持较高的部件性能。可以将当前工作视为将分流叶片安装到已经存在的旋转中型涡轮机框架设计中的首次尝试,其价值在于对这种设计的损失和益处进行全面的实验和计算研究。

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