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Combining effect of optimized axial compressor variable guide vanes and bleed air on the thermodynamic performance of aircraft engine system

机译:优化的轴向压缩机可变导流叶片和引气对飞机发动机系统热力学性能的综合影响

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Aim of this work is to provide evidence of the effectiveness of combined use of the variable guide vanes (VGVs) and bleed air on the thermodynamic performance of aircraft engine system. This paper performed the comparative study to evaluate the overall thermal performance of an aircraft engine with optimized VGVs and bleed air, separately or simultaneously. The low-bypass ratio turbofan engine has been modeled with a 0D/1D modeling approach. The genetic algorithm is employed to find the optimum schedule of VGVs and bleed air. There are four types of design variables: (1) the inlet guide vane (IGV) angle, (2) the IGV and 1st stator vane (SV) angles, (3) bleed air mass flow rate at the exit of the axial compressor, and (4) both type 2 and type 3. The optimization is conducted with surge margin constraints of more than 10% and 15% in the axial compressor. The results show that the additional use of the bleed air increases the efficiency of the compressors. Overall, the percentage reductions of the total fuel consumption for the engine with the IGV, 1st SV and bleed air schedule is 1.63% for 15% surge margin constraints when compared with the engine with the IGV schedule. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是提供证据,证明可变导向叶片(VGV)和引气组合使用对飞机发动机系统的热力学性能的有效性。本文进行了比较研究,以分别或同时评估具有最佳VGV和引气的飞机发动机的整体热性能。低旁路比涡轮风扇发动机已采用0D / 1D建模方法进行了建模。遗传算法用于找到VGV和引气的最佳计划。设计变量有四种类型:(1)进气导向叶片(IGV)角,(2)IGV和第一定子叶片(SV)角,(3)轴向压缩机出口处的引气质量流量, (4)2型和3型。优化是在轴向压缩机的喘振裕度约束大于10%和15%的情况下进行的。结果表明,引气的额外使用提高了压缩机的效率。总体而言,与带有IGV计划的发动机相比,对于具有15%喘振裕度限制的IGV,第一SV和引气计划的发动机,总燃料消耗减少的百分比为1.63%。 (C)2016 Elsevier Ltd.保留所有权利。

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