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Acoustic Effects of Porous Inert Media on Lean Premixed Combustion at Elevated Pressures

机译:多孔惰性介质对升高压力精益预混燃烧的声学作用

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Swirl-stabilized, lean-premixed (LPM) combustion is one method for producing relatively clean flames; however, these systems generate acoustic instabilities when operating at typical gas turbine flow, temperature, and pressure conditions. In this study, the concept of swirl-stabilization is combined with that of porous inert medium (PIM) stabilization such that the porous insert serves as a passive control device to suppress combustion instabilities and noise in the LPM combustor. The diffuser-shaped annular ring of PIM is placed at the combustor inlet where it directly influences the turbulent flow field and vortical and/or shear layer structures. Combustion experiments were conducted at several elevated pressures using SiC/HfC coated, high-strength, high-temperature resistant open-cell foam materials. Measurements of sound pressure level (SPL) were taken for different equivalence ratios and reactant flow rates. Experiments show that the porous insert can mitigate combustion instabilities and noise encountered at high pressures and reactant flow rates.
机译:旋流稳定,精瘦(LPM)燃烧是生产相对清洁的火焰的一种方法;然而,当在典型的燃气涡轮机流动,温度和压力条件下操作时,这些系统产生声学稳定性。在这项研究中,旋流稳定化的概念与多孔惰性介质(PIM)稳定相结合,使得多孔插件用作被动控制装置,以抑制LPM燃烧器中的燃烧不稳定和噪声。 PIM的扩散器形环形环放置在燃烧器入口处,在那里它直接影响湍流流场和涡流和/或剪切层结构。使用SiC / HFC涂层,高强度,高温耐开孔泡沫材料在几种升高的压力下进行燃烧实验。针对不同的等效比率和反应物流率进行声压水平(SPL)的测量。实验表明,多孔插入件可以减轻高压和反应物流率遇到的燃烧不稳定性和噪声。

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