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Swirler Effects on Passive Control of Combustion Noise and Instability in a Swirl-Stabilized Combustor

机译:旋流器对涡流稳定燃烧器燃烧噪声和不稳定性的被动控制

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High strength porous inert media (PIM) placed in the reaction zone of a swirl-stabilized lean-premixed combustor is a passive method of controlling combustion noise and instabilities. In this study, the effect of swirler location and swirl number on combustion without and with PIM has been investigated experimentally, using a methane-fueled quartz combustor at atmospheric pressure. Three axial swirlers were designed with eight vanes, a solid centerbody, and vane angles of 30, 45, and 55 deg to yield calculated swirl numbers of 0.45, 0.78, and 1.10, respectively. Swirler location was varied to obtain recess depth in the premixer tube of 0.0 cm, 2.5 cm, and 5.0 cm. A downstream bluff body was used with the recessed swirlers to stabilize the flame at the dump plane. Experiments were conducted at constant air flow rate of 300 SLPM and equivalence ratios of 0.70, 0.75, and 0.80. PIM annular rings with increasing and decreasing cross-sectional area in the flow direction were tested, referred to as diverging and converging PIM. The performance of each test case is compared by observing the flame behavior and measuring sound pressure level (SPL) with a microphone probe. Results include total SPL and SPL in one-third octave bands. PIM proved effective in mitigating combustion noise and instability for all flush-mounted swirlers with total SPL reductions of up to 7.6 dBA. The effectiveness of the PIM generally improved with increasing equivalence ratio. Combustion instability that occurred within the frequency band centered about 630 Hz was suppressed with both PIM configurations. These results confirm that PIM is an effective method to control combustion noise and instabilities in swirl-stabilized LPM combustion.
机译:放置在旋流稳定的稀薄预混燃烧器反应区中的高强度多孔惰性介质(PIM)是控制燃烧噪声和不稳定性的一种被动方法。在这项研究中,已经在大气压力下使用甲烷燃料的石英燃烧器,通过实验研究了旋流器位置和旋流数对不使用PIM和使用PIM时燃烧的影响。设计了三个轴向旋流器,它们具有八个叶片,一个实心中心体,叶片角度分别为30、45和55度,从而分别产生了0.45、0.78和1.10的计算旋流数。改变旋流器的位置以在预混合器管中获得0.0cm,2.5cm和5.0cm的凹陷深度。下游的钝体与凹进的旋流器一起使用,以使火焰稳定在转储平面。在300 SLPM的恒定空气流量和0.70、0.75和0.80的当量比下进行实验。测试了在流动方向上横截面积增大和减小的PIM环形圈,称为发散和会聚PIM。通过观察火焰行为并使用麦克风探针测量声压级(SPL),比较每个测试用例的性能。结果包括总的SPL和三分之一八度音阶中的SPL。对于所有齐平安装的旋流器,PIM可以有效地减轻燃烧噪声和不稳定,总SPL降低高达7.6 dBA。随着等效比的提高,PIM的有效性通常得到提高。两种PIM配置均可抑制在以630 Hz为中心的频带内发生的燃烧不稳定性。这些结果证实,PIM是控制涡流稳定LPM燃烧中的燃烧噪声和不稳定性的有效方法。

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