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NUMERICAL SIMULATION OF ITD FLOWS IN THE PRESENCE OF HP BLADE AND LP VANE

机译:HP叶片和LP叶片存在时ITD流动的数值模拟

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Flows in an intermediate turbine duct (ITD) connecting high-pressure turbines (HPT) and low-pressure turbines (LPT) are highly complex, influenced by the upstream HP turbine flow structures. Non-uniformities originating from the duct with struts of different sizes also affect the LPT inflow conditions, resulting in reduced efficiency. The goal of this paper is to provide detailed understanding of the flow physics and loss mechanisms within the ITDs for highly efficient ITD designs. Steady and unsteady numerical simulations of flows through the ITDs in the presence of HP blade and LP vane were conducted. Effects of upstream HP blade on flow fields and loss characteristics within the ITDs are explored. The generation and propagation of wake and secondary flows through the whole configuration is described, including the fast Fourier transformation (FFT) analyses of the flow in the ITD. Results from the numerical simulations show complex flow patterns resulted from blade-strut-vane flow interactions in a high-endwall-angle duct, which are not obtainable from ITD-only simulations. Moreover, the ITD has a strong amplifying effect on the distorted inflow, and the inflow with the upstream wake and secondary flows Introduces a high loss area along the casing at ITD exit. Detailed results are presented and discussed for the flow physics and loss mechanisms within the ITD.
机译:连接上游高压涡轮机(HPT)和低压涡轮机(LPT)的中间涡轮机管道(ITD)中的流动非常复杂,受上游HP涡轮机流动结构的影响。源自具有不同尺寸支杆的管道的不均匀性也会影响LPT的流入条件,从而导致效率降低。本文的目的是对ITD中的流物理特性和损失机制进行详细的了解,以实现高效的ITD设计。在有HP叶片和LP叶片的情况下,对通过ITD的流量进行了稳定和不稳定的数值模拟。探索了上游HP叶片对ITD内部流场和损失特性的影响。描述了通过整个配置的尾流和辅助流的生成和传播,包括对ITD中的流进行快速傅立叶变换(FFT)分析。数值模拟的结果表明,高端壁角风管中的叶片-叶片-叶片流动相互作用导致了复杂的流动模式,而这只能从ITD的模拟中获得。此外,ITD对扭曲的流入有很强的放大作用,并且具有上游尾流和二次流的流入在ITD出口沿套管引入了高损失区域。提出并讨论了有关ITD内部流动物理和损失机理的详细结果。

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