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Numerical and experimental investigation of improving combustion performance of variable geometry dual-mode combustor

机译:可变几何双模燃烧器燃烧性能改善的数值与实验研究

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As part of our efforts to find ways and means to further improve the combustion performance of variable geometry dual-mode combustor, flow field characteristics and mechanisms of combustion performance losses, which included compression and combustion losses resulted by heat addition, were investigated in variable geometry dual-mode combustor numerically and experimentally with a Mach number of 3.0, a divergent ratio ranging from 1.3 to 1.8 and a fuel equivalence ratio varying from 0.6 to 1.2. Irreversible entropy increase analysis was extended specifically in this paper to study the mechanism of combustion performance loss for the variable geometry dual-mode combustor. Numerical and experimental results indicated that for a given fuel equivalence ratio, the wall static pressure, total pressure recovery coefficient, combustion efficiency and thrust of the variable geometry dual-mode combustor increased with the decreasing of divergent ratio and there was a maximum thrust performance for the divergent ratio of 1.3 within stability margin. It was therefore strongly believed that the combustion performance of a variable geometry dual-mode combustor could be further improved by decreasing divergent ratio. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:为了寻找进一步提高可变几何双模燃烧器燃烧性能的方法和手段的一部分,在可变几何形状中研究了流场特征和燃烧性能损失的机理,包括压缩和加热量导致的燃烧损失。马赫数为3.0,发散比为1.3到1.8,燃料当量比为0.6到1.2的数值和实验的双模燃烧器。本文专门扩展了不可逆熵增加分析,以研究可变几何双模燃烧室燃烧性能损失的机理。数值和实验结果表明,对于给定的燃料当量比,可变几何双模燃烧室的壁静压力,总压力恢复系数,燃烧效率和推力随着发散比的减小而增加,并且具有最大的推力性能。在稳定裕度之内的差异比率为1.3。因此,人们坚信可以通过减小发散比来进一步提高可变几何形状的双模式燃烧器的燃烧性能。 (C)2017 Elsevier Masson SAS。版权所有。

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