首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >INTERACTION BETWEEN PRECESSING VORTEX CORE AND THERMOACOUSTIC COUPLING IN A LAB-SCALE LEAN PREMIXED GAS TURBINE COMBUSTOR: NUMERICAL SIMULATION STUDIES
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INTERACTION BETWEEN PRECESSING VORTEX CORE AND THERMOACOUSTIC COUPLING IN A LAB-SCALE LEAN PREMIXED GAS TURBINE COMBUSTOR: NUMERICAL SIMULATION STUDIES

机译:实验室规模的稀薄混合燃气轮机燃烧室中涡流核与热声耦合之间的相互作用:数值模拟研究

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To evaluate the complex dynamic phenomena occurring during combustion, Large Eddy Simulations of the swirl-stabilized flame of PRECCINSTA burner were carried out. The existence of a precessing vortex core in the initial stage of unsteady combustion was proved, both in the cold flow and initial stage of the combustion. The PVC flow structure finally disappeared and became a flapping toroidal flowfield structure with the increase in the amplitude of pressure oscillation when combustion instabilities occurred. The LES results indicate the interactions between the PVC and thermoacoustic coupling and the underlying mechanism of the phenomenon. This study evaluated the effect of PVC on the thermoacoustic coupling in the initial stage of unsteady combustion and elucidated the mechanism for the disappearance of PVC under large-scale pressure oscillation. This has a great significance in the practical industrial applications of controlling combustion instabilities.
机译:为了评估燃烧过程中发生的复杂动态现象,进行了旋流稳定燃烧器的涡流稳定火焰的大涡流模拟。证明了在不稳定燃烧的初始阶段的初始液位中的存在性的存在,无论是在燃烧的冷流和初始阶段。 PVC流动结构最终消失并成为燃烧振荡幅度的振幅的凸起环形流场结构,当燃烧不稳定发生时。 LES结果表示PVC和热声耦合与现象的潜在机制之间的相互作用。该研究评估了PVC对不稳定燃烧初始阶段的热声耦合的影响,并阐明了大规模压力振荡下PVC消失机理。这对控制燃烧不稳定的实际工业应用具有重要意义。

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