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Fostering distributed combustion in a swirl burner using prevaporized liquid fuels

机译:使用预蒸发的液体燃料促进旋流燃烧器中的分布式燃烧

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Colorless Distributed Combustion (CDC) has presented itself as an environmentally friendly combustion method with significant benefits on ultra-low emissions, uniform thermal field (pattern factor), reduced noise, mitigation of instability and enhance flame stability. CDC requisites include controlled entrainment of hot reactive species from within the combustor and their subsequent mixing with fresh reactants to form a low-oxygen concentration high-temperature oxidizer prior to ignition. This mixture results in distributed reaction over the entire combustion volume. To date, most of the CDC research efforts have focused on gaseous fuels only. In this paper, conditions fostering distributed combustion using JP-8 and alternative ethanol fuels. Data revealed that. transition to CDC can be achieved at oxygen concertation of approximately 9.5% for both the fuels. This oxygen concentration was determined based on reaction field uniformity as identified from OH* chemiluminescence signatures. Under distributed combustion, emissions were substantially reduced by some 95% to result in NOx emissions of less than 2 PPM with minimal impact on CO emission from both JP-8 and ethanol fuels at an equivalence ratio of 0.9, with even lower emissions at lower equivalence ratios. Combining the data obtained with liquid fuels with those from gaseous fuels revealed that, regardless of the fuel used, the oxygen concentration at which CDC prevailed can be predicted based on mixture temperature within a range of 0.75%. This knowledge enables designing a combustor to achieve CDC regardless of the fuel used. The data are useful in the design and development of fuel flexible CDC for high combustion intensity gas turbine applications.
机译:无色分布式燃烧(CDC)本身已成为一种环境友好的燃烧方法,在超低排放,均匀的热场(图形因子),降低的噪音,减轻不稳定性和增强火焰稳定性方面具有显着的优势。 CDC的必要条件包括:控制燃烧器内夹带的热反应性物质,然后将它们与新鲜的反应物混合,从而在点火前形成低氧浓度的高温氧化剂。该混合物导致反应在整个燃烧空间内分布。迄今为止,CDC的大多数研究工作仅集中在气体燃料上。在本文中,提出了使用JP-8和替代乙醇燃料促进分布式燃烧的条件。数据显示。两种燃料的氧气协调作用约为9.5%时,都可以过渡到CDC。该氧浓度是根据由OH *化学发光标记确定的反应场均匀性确定的。在分布式燃烧下,排放量显着减少了约95%,从而使NOx排放量小于2 PPM,而当量比为0.9时,JP-8和乙醇燃料对CO排放的影响最小,而当当量比更低时,排放量甚至更低比率。将液态燃料与气态燃料获得的数据结合起来,发现无论使用哪种燃料,都可以基于0.75%的混合温度来预测CDC占优势的氧气浓度。这些知识使设计燃烧器达到CDC,无论使用哪种燃料。该数据可用于设计和开发用于高燃烧强度燃气轮机应用的燃料柔性CDC。

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