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Performance of small-scale aero-derivative industrial gas turbines derived from helicopter engines

机译:直升机发动机衍生的小型航空衍生工业燃气轮机的性能

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This paper considers comparative assessment of simple and advanced cycle small-scale aero-derivative industrial gas turbines derived from helicopter engines. More particularly, investigation was made of technical performance of the small-scale aero-derivative engine cycles based on existing and projected cycles for applications in industrial power generation, combined heat and power concept, rotating equipment driving, and/or allied processes. The investigation was done by carrying out preliminary design and performance simulation of a simple cycle (baseline) two-spool small-scale aero-derivative turboshaft engine model, and some advanced counterpart aero-derivative configurations. The advanced configurations consist of recuperated and intercooled/recuperated engine cycles of same nominal power rating of 1.567MW. The baseline model was derived from the conversion of an existing helicopter engine model. In doing so, design point and off-design point performances of the engine models were established. In comparing their performances, it was observed that to a large extent, the advanced engine cycles showed superior performance in terms of thermal efficiency, and specific fuel consumption. In numerical terms, thermal efficiencies of recuperated engine cycle, and intercooled/recuperated engine cycles, over the simple cycle at DP increased by 13.5%, and 14.5% respectively, whereas specific fuel consumption of these cycles over simple cycle at DP decreased by 12.5%, and 13% respectively. This research relied on open access public literature for data.
机译:本文考虑对直升机发动机衍生的简单和高级循环小型航空衍生工业燃气轮机进行比较评估。更特别地,基于用于工业发电,热电联产概念,旋转设备驱动和/或相关过程的现有和预计的循环,对小型航空衍生发动机循环的技术性能进行了研究。该研究是通过对简单循环(基线)两阀芯小型航空衍生涡轮轴发动机模型以及一些先进的对应航空衍生配置进行初步设计和性能模拟而完成的。先进配置包括具有相同额定功率1.567MW的回热式和中冷/回热式发动机循环。基线模型来自现有直升机发动机模型的转换。通过这样做,建立了发动机模型的设计点和非设计点性能。在比较它们的性能时,可以观察到,在很大程度上,先进的发动机循环在热效率和比燃料消耗方面显示出优异的性能。以数值计算,在DP的简单循环中,换气式发动机循环和中冷/再循环发动机循环的热效率分别提高了13.5%和14.5%,而在DP的简单循环中,这些循环的比燃料消耗降低了12.5% ,分别为13%。这项研究依赖于开放获取的公共文献来获取数据。

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