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Impact of the Inflow Conditions on the Heavy-Duty Gas Turbine Exhaust Diffuser Performance

机译:进气条件对重型燃气轮机排气扩散器性能的影响

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The flow in exhaust diffusers along with the channel geometry strongly depends on the inflow conditions, including Mach number level, total pressure distribution, flow angle, and turbulence. In the first part of this paper, the impact of these parameters is analyzed using computational fluid dynamics, experimental data from the test rig, and field measurements. A widespread opinion is that the optimal condition for the diffuser is an axial uniform inflow. However, it is shown in this paper that nonuniform pressure distribution compared with a uniform one can lead to better diffuser performance and that a moderate residual swirl can improve the performance as well. In the second part of this paper, the minimization of exhaust losses in heavy-duty gas turbines is discussed and illustrated by two practical examples.
机译:排气扩压器中的流量以及通道的几何形状在很大程度上取决于流入条件,包括马赫数水平,总压力分布,流动角度和湍流。在本文的第一部分中,使用计算流体动力学,来自试验台的实验数据和现场测量来分析这些参数的影响。普遍认为,扩散器的最佳条件是轴向均匀流入。但是,本文显示,与均匀压力分布相比,压力分布不均匀会导致更好的扩压器性能,而适度的残余涡流也会改善性能。在本文的第二部分中,通过两个实际示例讨论并说明了重型燃气轮机的排气损失最小化。

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