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PDF modeling and simulations of pulverized coal combustion - Part 2: Application

机译:煤粉燃烧的PDF建模和模拟-第2部分:应用

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摘要

A transported probability density function (PDF) method developed for pulverized coal combustion is applied in simulations of a semi-industrial scale furnace. It is found that the simulation results are sensitive to the chosen model for unclosed terms in the gas-phase PDF transport equation due to the mass transfer from the solid to the gas phase through devolatilization and char combustion. A model which leads to a generation of mixture fraction fluctuations provides results which are in close agreement with the measurements. Two different models for the gas phase composition seen by the coal particles are investigated. One model is based on the local mean values of the gas composition and one model provides time correlated fluctuations of the seen composition. Small differences between the two model results are observed in the predictions of the char burnout. The simulation results are further used to analyze commonly adopted model assumptions in presumed PDF methods. It is found that both, the char combustion mixture fraction and the enthalpy are not statistically independent from the volatile mixture fraction. It is further shown that the marginal PDF of the volatile mixture fraction is not well approximated by a beta function PDF in regions of rapid devolatilization. The marginal enthalpy PDF indicates significant enthalpy fluctuations which are usually neglected in presumed PDF methods.
机译:为粉煤燃烧开发的运输概率密度函数(PDF)方法被用于半工业规模炉的模拟。发现由于脱挥发分和焦炭燃烧从固体到气相的质量转移,对于气相PDF传输方程中的未封闭项,仿真结果对所选模型很敏感。导致混合物分数波动产生的模型所提供的结果与测量结果非常吻合。研究了由煤颗粒看到的两种不同的气相组成模型。一种模型基于气体成分的局部平均值,而一种模型提供与时间相关的可见成分波动。在炭烧尽的预测中观察到两个模型结果之间的微小差异。仿真结果进一步用于分析假定的PDF方法中常用的模型假设。发现炭燃烧混合物分数和焓两者在统计上均与挥发性混合物分数无关。进一步显示,在快速脱挥发分的区域中,挥发性混合物部分的边际PDF不能很好地通过beta函数PDF近似。边界焓PDF表示显着的焓波动,通常在假定的PDF方法中可以忽略不计。

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