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Experimental study of the fuel jet combustion in high temperature and low oxygen content exhaust gases

机译:高温低氧含量废气中燃料喷射燃烧的实验研究

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The performance of high temperature air combustion (HiTAC) depends on the heat regenerator efficiency and on the way fuel is mixed with furnace gases. In this work, combustion of a single fuel jet of gasol ( > 95% of propane) was investigated experimentally. Experiments were carried out in steady-state conditions using a single jet flame furnace. The jet of fuel was co-axially injected into high temperature exhaust gases generated by means of a gas burner also fired with gasol. Thus, instead of highly preheated and oxygen depleted air, which was normally used by other researches for such studies, this work has used high temperature and low oxygen content exhaust gases as the oxidiser. A water-cooled fuel nozzle was used to control fuel inlet temperature. Influence of the oxygen content in the oxidiser, at temperatures of 860-890℃, on the flame visibility and the reactants composition was investigated. The combustion of gasol in hot flue gases appeared to be very stable and complete even at very low oxygen concentration. The oxygen concentration in the oxidiser was found to have a substantial effect on flame size, luminosity, colour, visibility and lift-off distance. Reduced oxygen concentration increases the flame size and lift-off distance, and decreases luminosity and visibility. The HiTAC flame first became bluish and then non-visible at sufficiently low concentration of oxygen in the oxidiser. In this work, results are presented for the constant ratio between fuel jet velocity and velocity of co-flowing flue gases. This ratio was equal to 26.
机译:高温空气燃烧(HiTAC)的性能取决于蓄热器的效率以及燃料与炉内气体的混合方式。在这项工作中,实验研究了汽油的单燃料喷嘴(丙烷含量> 95%)的燃烧。使用单喷射火焰炉在稳态条件下进行实验。燃料射流被同轴注入到高温废气中,该高温废气是通过燃气燃烧器产生的,该燃气燃烧器也用加索尔燃烧。因此,这项工作代替了其他研究通常用于此类研究的高度预热和耗氧的空气,而是使用了高温低氧含量的废气作为氧化剂。使用水冷式燃料喷嘴控制燃料入口温度。研究了氧化剂在860-890℃下的含氧量对火焰可见度和反应物组成的影响。即使在非常低的氧气浓度下,汽油在热烟道气中的燃烧也看起来非常稳定和完全。发现氧化剂中的氧气浓度对火焰大小,光度,颜色,可见度和提离距离有很大影响。降低的氧气浓度会增加火焰的大小和升空距离,并降低亮度和可见度。 HiTAC火焰首先变成蓝色,然后在氧化剂中的氧气浓度足够低时不可见。在这项工作中,给出了燃料射流速度与并流烟气速度之间恒定比率的结果。该比率等于26。

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