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Combustion performance of a low NO_x gas turbine combustor using urea addition into liquid fuel

机译:使用尿素添加到液体燃料中的低NO_X燃气轮机燃烧器的燃烧性能

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The present work provides an experimental investigation on the effects of the urea addition in water emulsified fuels in terms of combustion performance and emissions. Experiments have been carried out using a test rig equipped with a 300-kW Jet-Al fueled swirling burner operating under lean conditions. Different equivalence ratios and various urea in water percent concentrations have been tested. Measurements of temperature and emissions have been performed, in combination with high-speed flame imaging in visible and ultraviolet spectral ranges.Results have shown that the use of 2.5 wt% (percent concentration by weight) water-2 wt% urea solution into Jet-Al fuel represents a promising combustion control strategy, since it leads to the same nitrogen oxides (NOx) reduction of a leaner neat fuel flame (about 30% less than the neat fuel case), but without significant penalty on the overall combustion performance, viz. combustion temperature, thermal and combustion efficiencies and pollutant emissions. The snapshot Proper Orthogonal Decomposition (POD) of the broadband flame emission images, methylidyne radical and hydroxyl radical chemiluminescence allowed to characterize of the flame dynamics and the flame stability. Differences between the flame regimes were also investigated by the POD mode 3 eigenstructure. The reduced flame stability for the leaner operating condition was confirmed by the energy increase of the first POD modes. The more unstable flame dynamics was confirmed by the frequency distribution of the phase points in the POD phase-space of modes 1 and 2 that highlighted a significant rise of the phase angles occurrence in the range [-pi/6, pi/6].
机译:本作本作能够在燃烧性能和排放方面对水乳化燃料中尿素添加的影响进行实验研究。使用配备有300 kW Jet-Al燃料旋转燃烧器的试验器进行了实验。已经测试了不同的等效比率和水中浓度的各种尿素。已经进行了温度和排放的测量,与可见和紫外光谱距离中的高速火焰成像组合。结果表明,使用2.5wt%(重量浓度)水 - 2wt%尿素溶液进入喷射 - Al燃料代表了有希望的燃烧控制策略,因为它导致相同的氮氧化物(NOx)减少稀释燃料火焰(比整洁燃料箱小约30%),但在整体燃烧性能下没有显着罚款。燃烧温度,热燃烧效率和污染物排放。宽带火焰发射图像的快照适当正交分解(POD),甲基基酰基自由基和羟基根自由基化学致发光,使火焰动力学和火焰稳定性表征。荚模式3特征结构还研究了火焰制度之间的差异。通过第一荚模式的能量增加,确认了稀释物操作条件的降低的火焰稳定性。通过模式1和2的模式1和2的POD相位空间中的相位点的频率分布确认了更不稳定的火焰动态。突出显示在范围[-pi / 6,pi / 6]中的相位角发生的显着上升。

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