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Correlation between total pressure losses of highly loaded annular diffusers and integral stage design parameters

机译:高负载环形扩散器的总压力损失与整体阶段设计参数的相关性

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摘要

Diffusers convert kinetic flow energy into a rise in static pressure. This pressure recovery is the primary aerodynamic design objective for exhaust gas diffusers in power-generating steam and gas turbines. The total pressure loss is an equally important diffuser design parameter. It is strongly linked to the pressure recovery and the residual kinetic energy of the diffuser outlet flow. A reduction benefits the overall thermodynamic cycle, which requires the adjacent components of a diffuser to be included in the design process.This paper focuses on the total pressure losses in the boundary layer of a highly loaded annular diffuser. Due to its large opening angle the diffuser is susceptible to flow separation under uniform inlet conditions, which is a major source for total pressure losses. However, the unsteady tip leakage vortices of the upstream rotor, which are a source of losses, stabilise the boundary layer and prevent separation. Experiments and unsteady numerical simulation conducted show that the total pressure loss reduction caused by the delayed boundary layer separation exceed the vortex-induced losses by far. This flow interaction between the rotor and diffuser consequently decreases the overall total pressure losses.The intensity of the tip leakage vortex is linked to three rotor design parameters, namely work coefficient, flow coefficient and reduced blade-passing frequency. Based on these parameters, we propose a semi-empiric correlation to predict and evaluate the change in total pressure losses with regards to design operating conditions.
机译:扩散器将动力流量转化为静压的上升。这种压力回收是发电蒸汽和燃气轮机中的废气扩散器的主要空气动力学设计目的。总压力损失是同样重要的扩散器设计参数。它与扩散器出口流的压力回收和残余动能有关。减少益处整个热力学循环,这需要扩散器的相邻部件被包括在设计过程中。本文侧重于高负载环形扩散器的边界层中的总压力损失。由于其大开角度,扩散器易于在均匀入口条件下流动分离,这是总压力损失的主要来源。然而,上游转子的不稳定尖端泄漏涡流,这是损耗源,稳定边界层并防止分离。进行实验和不稳定的数值模拟表明,延迟边界层分离引起的总压力损失降低超过涡流引起的损失。因此,转子和漫射器之间的该流动相互作用因此降低了整体的总压力损失。尖端泄漏涡流的强度与三个转子设计参数相关,即工作系数,流量系数和减小的刀片通行频率。基于这些参数,我们提出了半透视相关性,以预测和评估设计操作条件的总压力损失的变化。

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