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首页> 外文期刊>Combustion Science and Technology >MODELING AND NUMERICAL SOLUTION OF COAL AND NATURAL GAS CO-COMBUSTION IN A ROTARY KILN
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MODELING AND NUMERICAL SOLUTION OF COAL AND NATURAL GAS CO-COMBUSTION IN A ROTARY KILN

机译:回转窑煤与天然气共燃烧的建模与数值解

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摘要

Due to the great importance of rotary kilns in the cement industry and the fact that these systems are known to be high energy consumers, a model was developed for one of the most important phenomena occurring inside of such kilns, i.e., combustion. This model and its numerical solution allow for carrying out process optimization techniques in order to reduce the use of the fuel required, emissions, and operation costs. Furthermore, this model permits geometrical modifications in the burner as well as variations in operational conditions, i.e., flow rates, temperatures, and concentrations. The process studied here is carried out inside a tubular rotary kiln, which has a burner of concentric tubes that allows the combustion of two fuels in different phases, in this case, coal and natural gas. The modeling accounts for phenomena such as the turbulence produced due the high Reynolds number in the feed streams; the convective heat loss from the shell to the environment; and a three-step and two-step eddy brake-up combustion model for natural gas and volatiles. The model is developed from Lagrangian-Eulerian multiphase flow, taking into consideration coal solid particles in the gaseous stream, devolatilization rate of coal, heterogeneous burnout of char, and NOx generation. Finally, velocity, temperature, and concentration fields were analyzed to evaluate dragging, reactions conversion, and pollutants formation in the process.
机译:由于回转窑在水泥工业中非常重要,并且已知这些系统是高耗能者,因此针对这种窑内发生的最重要现象之一,即燃烧,开发了一种模型。该模型及其数值解决方案允许执行过程优化技术,以减少所需燃料的使用,排放和运营成本。此外,该模型允许燃烧器中的几何形状修改以及操作条件的变化,即,流速,温度和浓度。此处研究的过程在管状回转窑内进行,该回转窑具有同心管燃烧器,可燃烧两种不同相的燃料,在这种情况下为煤和天然气。建模考虑了诸如由于进料流中高雷诺数而产生的湍流等现象。从壳体到环境的对流热损失;以及针对天然气和挥发物的三步和两步涡流加速燃烧模型。该模型是从Lagrangian-Eulerian多相流发展而来的,其中考虑了气流中的煤固体颗粒,煤的脱挥发分速率,炭的异质燃尽和NOx的产生。最后,分析了速度,温度和浓度场,以评估过程中的阻力,反应转化率和污染物形成。

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