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首页> 外文期刊>Flow, turbulence and combustion >Large-eddy Simulation of Pilot-assisted Pulverized-coal Combustion in a Weakly Turbulent Jet
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Large-eddy Simulation of Pilot-assisted Pulverized-coal Combustion in a Weakly Turbulent Jet

机译:弱湍流射流中试验辅助煤粉燃烧的大涡流模拟

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Large-eddy simulation has been performed to investigate pilot-assisted pulverized-coal combustion in a weakly turbulent air jet. An advanced pyrolysis model, the chemical percolation devolatilization (CPD) model, has been incorporated into the LES framework to predict the local, instantaneous pyrolysis kinetics of coal particles during the simulation. Prediction on volatile species generation is thus improved, which provides an important initial condition for gas-phase volatile and solid-phase char combustion. For gas-phase combustion, the partially stirred reactor (PaSR) model is employed to model the combustion of volatile species, taking into account subgrid turbulence-chemistry interactions. For heterogeneous solid-phase char combustion, both the intrinsic chemical reaction on the internal surface of a char particle and the diffusion of gaseous oxidant through the film layer around the particle have been incorporated by using a kinetic/diffusion surface reaction model. The LES results show overall good agreements with experimental data. Sensitivity analysis has been performed to better understand the impact of parameter uncertainties on the LES results.
机译:已经进行了大涡模拟,以调查弱湍流空气喷射中的试验辅助煤粉燃烧。一种先进的热解模型,化学渗透脱挥发化(CPD)模型已被掺入LES框架中,以预测模拟期间煤颗粒的局部瞬时热解动力学。因此改善了对挥发性物种产生的预测,这为气相挥发性和固相炭燃烧提供了重要的初始条件。对于气相燃烧,采用部分搅拌的反应器(PASR)模型来模拟挥发物种的燃烧,考虑到底纤维湍流 - 化学相互作用。对于非均相固相炭燃烧,通过使用动力学/扩散表面反应模型并入到颗粒周围的炭颗粒内表面和气态氧化剂的扩散的内在化学反应。 LES结果显示了与实验数据的整体良好协议。已经进行了敏感性分析以更好地了解参数不确定性对LES结果的影响。

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