首页> 外文会议>International Conference on Fluidized Bed Combustion; 20050522-25; Toronto(CA) >AN INVESTIGATION ON LOW-TEMPERATURE FLUIDIZED COMBUSTION OF LIQUID FUELS
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AN INVESTIGATION ON LOW-TEMPERATURE FLUIDIZED COMBUSTION OF LIQUID FUELS

机译:液体燃料低温流态燃烧的研究

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摘要

Presently, the combustion at low temperature is receiving a great deal of interest because emissions of micro- and nano-pollutants are expected to be greatly reduced. Following previous studies on the low temperature combustion behavior, the authors report results and discussion of steady-state experiments on an atmospheric, pre-pilot scale, 140 mm ID, FB reactor, equipped with an under-bed, air-assisted, liquid-fuel injector. The experimental program was focused on the operation at temperatures lower than the classical value for FBC of solid fuels (i.e., 850℃). The data series taken into consideration are the concentrations of the main unburned species in the splash zone, those of oxygen measured in the bed and in the splash zone as well as the freeboard pressure. The interpretation of the results is mainly based on the statistical analysis in the time domain. The combustion pattern of bio-diesel is compared to that of the diesel fuel under varying operating conditions (e.g., bed temperature, dispersion air velocity at the fuel nozzle, injector height in the bed). Conclusions that were previously published on the base of lab-scale results are checked against new data obtained on the pilot scale. An innovative technique for the analysis of the micro-explosive regime is presented. It consists in the comparison of oxygen concentration measured by the zirconia-based probes at different heights in the bed and in the splash region, pressure signals measured in the freeboard and purposely filtered, and video-recordings of the bed surface phenomena.
机译:目前,在低温下燃烧引起了极大的兴趣,因为预计将大大减少微污染物和纳米污染物的排放。在对低温燃烧行为进行了先前的研究之后,作者报告了在大气中,预试规模,140 mm内径,FB反应器,配备床下,空气辅助,液体反应堆的稳态反应器的结果和讨论。喷油器。实验程序的重点是在低于固体燃料FBC的经典值(即850℃)的温度下运行。考虑的数据系列是飞溅区主要未燃烧物质的浓度,床层和飞溅区中测得的氧气浓度以及干舷压力。结果的解释主要基于时域的统计分析。将生物柴油的燃烧模式与柴油在不同工况下的燃烧模式进行比较(例如,床温,燃料喷嘴处的分散空气速度,床内喷油器高度)。将根据实验室规模的结果先前发表的结论与通过试验规模获得的新数据进行核对。提出了一种用于微爆炸状态分析的创新技术。它包括比较氧化锆基探针在床内和飞溅区域不同高度处测得的氧气浓度,在干舷处和经有意过滤后测得的压力信号以及床面现象的视频记录。

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