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Numerical investigation on the combustion behaviour of pre-dried Greek lignite

机译:预干燥希腊褐煤燃烧行为的数值研究

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摘要

Dry coal firing is expected to play an increasingly important role in future lignite power plants. The planned evolution from the conventional lignite drying concept with hot recirculated flue gas to the "flu-idized bed drying with internal heat utilization, WTA", technology in the next generation of lignite power plants is estimated to bring an additional efficiency increase of 2-4% points compared to the today's state of the art. In this framework NTUA/LSB and CERTH/ISFTA has performed experimental investigations at a semi industrial scale 1 MWth facility on the characterization of Greek pre-dried lignite's combustion behaviour in terms of temperature fields, heat transfer, emissions, slagging and fouling tendency and residues quality. The present work focuses on the numerical investigation of Greek dry lignite combustion firstly by post-processing and evaluation of available experimental data and secondly by combustion simulations. Q-T plots describing the heat transfer in the experimental facility are derived and specific cases of the performed tests are simulated with a commercial CFD tool, in order to estimate flow, temperature fields, NOx emissions and compare with the available experimental data. A good agreement between simulated and experimental results will support the further work on large scale boiler simulations in raw and dry coal co-firing mode, where the possibility of validation with experimental data is limited. The obtained Q-T diagrams are used to evaluate the influence of co-firing on the heat transfer in the facility and to further extrapolate the conclusions of the performed semi industrial tests on the large scale. The overall results of the CFD simulations, including predictions of temperature and NOx profiles, are in good agreement with the available experimental data at the reference case, while at the dry coal co-firing cases succeed on reproducing the basic trends of the performed experiments.
机译:预计干煤燃烧将在未来的褐煤发电厂中发挥越来越重要的作用。从下一代褐煤发电厂的传统褐煤干燥概念到下一代褐煤发电厂的“内部热利用流化床干燥技术”(WTA)的计划发展预计将带来额外的效率提高2倍。与当今的最新水平相比,提高了4%。在这个框架中,NTUA / LSB和CERTH / ISFTA在半工业规模的1 MWth设施上进行了实验研究,从温度场,传热,排放,结渣和结垢趋势以及残留物等方面表征了希腊预干燥褐煤的燃烧行为。质量。本工作着重于希腊干褐煤燃烧的数值研究,首先是对现有实验数据进行后处理和评估,其次是通过燃烧模拟。得出描述实验设备中传热的Q-T图,并使用商用CFD工具模拟所执行测试的特定情况,以便估算流量,温度场,NOx排放并与可用的实验数据进行比较。模拟和实验结果之间的良好协议将支持在原煤和干煤共烧模式下进行大型锅炉模拟的进一步工作,在这种情况下,用实验数据进行验证的可能性有限。所获得的Q-T图用于评估共燃对设施内传热的影响,并进一步推论大规模进行的半工业试验的结论。 CFD模拟的总体结果(包括温度和NOx曲线的预测)与参考案例中的可用实验数据高度吻合,而在干煤共烧案例中,这些模拟结果成功地再现了所进行实验的基本趋势。

著录项

  • 来源
    《Fuel》 |2009年第12期|2385-2391|共7页
  • 作者单位

    National Technical University of Athens, Laboratory of Steam Boilers and Thermal Plants, (NTUA/LSB) Heroon Polytechniou 9, 15780 Zografou Campus, 15780 Athens, Greece;

    National Technical University of Athens, Laboratory of Steam Boilers and Thermal Plants, (NTUA/LSB) Heroon Polytechniou 9, 15780 Zografou Campus, 15780 Athens, Greece;

    National Technical University of Athens, Laboratory of Steam Boilers and Thermal Plants, (NTUA/LSB) Heroon Polytechniou 9, 15780 Zografou Campus, 15780 Athens, Greece Centre for Research and Technology Hellas/Institute for Solid Fuels Technology and Applications, (CERTH/ISFTA), 4th km. N.R. Ptolemais - Kozani, 50200 Ptolemais, Greece;

    National Technical University of Athens, Laboratory of Steam Boilers and Thermal Plants, (NTUA/LSB) Heroon Polytechniou 9, 15780 Zografou Campus, 15780 Athens, Greece Centre for Research and Technology Hellas/Institute for Solid Fuels Technology and Applications, (CERTH/ISFTA), 4th km. N.R. Ptolemais - Kozani, 50200 Ptolemais, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dry lignite; CFD modelling; NO_x emissions;

    机译:干褐煤CFD建模;NO_x排放;

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