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The impact of biofuel properties on emissions and performances of a micro gas turbine using combustion vibrations detection

机译:生物燃料特性对使用燃烧振动检测的微燃气轮机排放和性能的影响

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摘要

The use of pure vegetable oils in Micro Gas Turbine can damage the injection system or the combustion chamber causing undesired vibrations. An ideal solution would consist in having an available tool able to forecast and/or follow in real time the vibrational state of the combustion device. The present paper describes tests performed on a low emission Micro Gas Turbine for power generation, fueled with different liquid fuels, including commercial diesel oil and its blends with pure rapeseed oil. A particular attention was paid both on the emissions and on the measurements of the micro vibrational distributions and their correlation under the different fueling conditions using a new signal processing based on a nonlinear method and chaos analysis. We observed that the overall behavior of the MGT fueled with the blends was good, and the emission concentrations of CO, NOx and Total Particle Matter were comparable to the pure diesel oil ones. Moreover, the chaos analysis and the proposed methodology came out as a possible tool for the real-time characterization of the combustion process of the MGT and to individuation of the fuel supplied.
机译:在微燃气轮机中使用纯植物油可以损坏注射系统或燃烧室,导致不希望的振动。理想的解决方案将包括能够在实时预测和/或遵循燃烧装置的振动状态的可用工具。本文介绍了在低排放微型燃气轮机上进行的用于发电的试验,用不同的液体燃料燃料,包括商业柴油及其与纯油菜籽油的混合物。在使用基于非线性方法和混沌分析的新信号处理和混沌分析,在不同的燃料条件下对微振动分布的测量和它们的相关性进行了特别的注意。我们观察到,用共混物燃料的MGT的总体行为良好,并且CO,NOx和总颗粒物质的排放浓度与纯柴油油相当。此外,混沌分析和所提出的方法是作为MGT的燃烧过程的实时表征的可能工具和供应的燃料的个体化。

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