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NUMERICAL AND EXPERIMENTAL INVESTIGATION OF SECONDARY FLOWS AND INFLUENCE OF AIR SYSTEM DESIGN ON HEAVY-DUTY GAS TURBINE PERFORMANCE

机译:二次流的数值和实验研究以及空气系统设计对重型燃气轮机性能的影响

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High turn-down operating of heavy-duty gas turbines in modern Combined Cycle Plants requires a highly efficient secondary air system to ensure the proper supply of cooling and sealing air. Thus, accurate performance prediction of secondary flows in the complete range of operating conditions is crucial. The paper gives an overview of the secondary air system of Ansaldo F-class AEx4.3A gas turbines. Focus of the work is a procedure to calculate the cooling flows, which allows investigating both the interaction between cooled rows and additional secondary flows (sealing and leakage air) and the influence on gas turbine performance. The procedure is based on a fluid-network solver modelling the engine secondary air system. Parametric curves implemented into the network model give the consumption of cooling air of blades and vanes. Performances of blade cooling systems based on different cooling technology are presented. Variations of secondary air flows in function of load and/or ambient conditions are discussed and justified. The effect of secondary air reduction is investigated in details showing the relationship between the position, along the gas path, of the upgrade and the increasing of engine performance. In particular, a section of the paper describes the application of a consistent and straightforward technique, based on an exergy analysis, to estimate the effect of major modifications to the air system on overall engine performance. A set of models for the different factors of cooling loss is presented and sample calculations are used to illustrate the splitting and magnitude of losses. Field data, referred to AE64.3A gas turbine, are used to calibrate the correlation method and to enhance the structure of the lumped-parameters network models.
机译:在现代联合循环电厂中,重型燃气轮机的高开度运转需要高效的二次空气系统,以确保适当地供应冷却和密封空气。因此,在整个工况范围内准确预测二次流的性能至关重要。本文概述了Ansaldo F级AEx4.3A燃气轮机的二次空气系统。工作的重点是计算冷却流量的程序,该程序可以研究冷却的排和其他次级流量(密封和泄漏空气)之间的相互作用以及对燃气轮机性能的影响。该程序基于对发动机二次空气系统进行建模的流体网络求解器。实施到网络模型中的参数曲线可消耗叶片和叶片的冷却空气。介绍了基于不同冷却技术的叶片冷却系统的性能。讨论并论证了次级空气流量随负载和/或环境条件的变化。详细研究了二次空气减少的影响,显示了沿气路的位置,升级位置与发动机性能提高之间的关系。特别是,本文的一部分描述了基于火用分析的一致且直接的技术的应用,以评估对空气系统的重大修改对整体发动机性能的影响。提出了一套用于冷却损失的不同因素的模型,并使用样本计算来说明损失的划分和幅度。现场数据(称为AE64.3A燃气轮机)用于校准相关方法并增强集总参数网络模型的结构。

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