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Numerical modeling of a steam-assisted tubular coal gasifier

机译:蒸汽辅助管式煤气化炉的数值模拟

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摘要

Understanding the heat and mass transfer phenomena in a coal gasifier is very useful for the assessment of gasifier performance and optimization of the design and operating parameters. In this paper, performance of an entrained flow air blown laboratory scale gasifier is numerically simulated with Fluent software. In the model, the continuous phase conservation equations are solved in an Eulerian frame, while those of particle phase are solved in a Lagrangian frame, with coupling between the two phases carried out through interactive source terms. The dispersion of the particles due to turbulence is predicted using a stochastic tracking model, in conjunction with the k-s equations for the gas phase. The coal gasification model adopted includes devolatilization, combustion of volatiles, char combustion and gasification. The gasification performance inside the gasifier has been predicted for different air ratios as well as for different air and steam inlet temperatures. The overall temperature inside the gasifier is found to increase when the degree of air/steam pre-heating is increased, resulting in acceleration of the different reaction steps in the gasifier. The overall gasification performance indices such as carbon conversion, heating value of the exit gas and cold gas efficiency have been predicted. The predicted results show good agreement with available experimental data in literature.
机译:了解煤气化炉中的传热和传质现象对于评估气化炉性能以及优化设计和运行参数非常有用。在本文中,用Fluent软件对气流夹带的实验室规模气化炉的性能进行了数值模拟。在该模型中,连续相守恒方程在欧拉框架中求解,而粒子相方程在拉格朗日框架中求解,两个相之间的耦合通过交互源项进行。使用湍流模型结合气相的k-s方程,可以预测由于湍流引起的颗粒扩散。采用的煤气化模型包括脱挥发分,挥发物燃烧,焦炭燃烧和气化。对于不同的空气比例以及不同的空气和蒸汽入口温度,已经预测了气化炉内部的气化性能。当增加空气/蒸汽预热程度时,发现气化炉内部的总温度升高,从而导致气化炉中不同反应步骤的加速。已经预测了总体气化性能指标,例如碳转化率,出口气体的热值和冷气效率。预测结果与文献中的可用实验数据吻合良好。

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