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Dynamics and stability of lean-premixed swirl-stabilized combustion

机译:稀薄预混涡流稳定燃烧的动力学和稳定性

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Combustion instability remains a critical issue limiting the development of low-emission, lean-premixed (LPM) gas turbine combustion systems. The present work provides a comprehensive review of the advances made over the past two decades in this area. Recent developments in industrial dry-low-emission (DLE) swirl-stabilized combustors are first summarized. Various swirl injector configurations and related flow characteristics, including vortex breakdown, precessing vortex core, large-scale coherent structures, and liquid fuel atomization and spray formation, are discussed. Nonlinear behaviors of combustion processes observed in combustors are described. The influence of fuel preparation, combustor geometry, and operating conditions on combustion characteristics in swirl-stabilized combustors is examined. The mechanisms driving combustion instabilities, including hydrodynamic instabilities, equivalence ratio fluctuations, flame surface variations, and oscillatory liquid fuel atomization and evaporation are investigated. Instability stabilization methods, including both passive and active control techniques, are also reviewed. Finally, recent progress in both analytical modeling and numerical simulation of swirl-stabilized combustion are surveyed.
机译:燃烧不稳定性仍然是限制低排放,稀薄预混(LPM)燃气轮机燃烧系统发展的关键问题。本工作全面回顾了过去二十年来在该领域取得的进展。首先总结了工业干低排放(DLE)旋流稳定燃烧器的最新发展。讨论了各种旋流喷油嘴的配置和相关的流动特性,包括涡旋破坏,旋进旋涡芯,大规模相干结构以及液体燃料的雾化和喷雾形成。描述了在燃烧室中观察到的燃烧过程的非线性行为。研究了燃料制备,燃烧器的几何形状和运行条件对涡旋稳定燃烧器中燃烧特性的影响。研究了驱动燃烧不稳定性的机制,包括流体动力学不稳定性,当量比波动,火焰表面变化以及振荡液体燃料的雾化和蒸发。还回顾了不稳定稳定方法,包括被动和主动控制技术。最后,对涡旋稳定燃烧的解析模型和数值模拟的最新进展进行了综述。

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