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AN EFFICIENT PROCEDURE FOR THE ANALYSIS OF HEAVY DUTY GAS TURBINE SECONDARY FLOWS IN DIFFERENT OPERATING CONDITIONS

机译:在不同工作条件下分析重型燃气轮机二次流的有效程序

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Combined cycle and partial load operating of modern heavy-duty gas turbines require highly efficient secondary air systems to supply both cooling and sealing air. Accurate performance predictions are then a fundamental demand over a wide range of operability.The paper describes the development of an efficient procedure for the investigation of gas turbine secondary flows, based on an in-house made fluid network solver, written in Matlab® environment.Fast network generation and debugging are achieved thanks to Simulink® graphical interface and modular structure, allowing predictions of the whole secondary air system. A crucial aspect of such an analysis is the calculation of blade and vane cooling flows, taking into account the interaction between inner and outer extraction lines. The problem is closed thanks to ad-hoc calculated transfer functions: cooling system performances and flow functions are solved in a pre-processing phase and results correlated to influencing parameters using Response Surface Methodology (RSM) and Design of Experiments (DOE) techniques.The procedure has been proved on the secondary air system of the AE94.3A2 Ansaldo Energia gas turbine. Flow functions for the cooling system of the first stage blade, calculated by RSM and DOE techniques, are presented. Flow functions based calculation of film cooling, tip cooling and trailing edge cooling airflows is described in details.
机译:现代重型燃气轮机操作的组合循环和部分负荷需要高效的二次空气系统,以供应冷却和密封空气。那么在广泛的可操作性方面,准确的性能预测是一个基本需求。 本文介绍了在Matlab®环境中写入的内部制作流体网络求解器的燃气轮机二次流动调查的有效步骤的开发。 由于Simulink®图形界面和模块化结构,实现了快速网络生成和调试,允许预测整个二级空气系统。这种分析的关键方面是计算叶片和叶片冷却流动,考虑到内部和外部提取线之间的相互作用。由于ad-hoc计算的传递函数,问题是缩小的:冷却系统性能和流动功能在预处理阶段求解,结果与使用响应面方法(RSM)和实验(DOE)技术的设计相关的结果。 已经证明了AE94.3A2 Ansaldo Energia燃气轮机的二次空气系统。提出了由RSM和DOE技术计算的第一级刀片的冷却系统的流动功能。基于流动功能的薄膜冷却,尖端冷却和后缘冷却空气计算 详细描述了流量。

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