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High-Resolution Simulations of Coal Injection in A Gasifier

机译:喷吹煤粉的高分辨率模拟气化炉

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摘要

This study demonstrates an approach to effectively combine high- and low-resolution simulations for design studies of industrial coal gasifier. The flow-field data from a 10 million cell full-scale simulation of a commercial-scale gasifier were used to construct a reduced configuration to economically study the coal injection in detail. High-resolution numerical simulations of the coal injection were performed using the open-source code MFIX running on a high performance computing system. Effects of grid resolution and numerical discretization scheme on the predicted behavior of coal injection and gasification kinetics were analyzed. Pronounced differences were predicted in the devolatilization and steam gasification rates because of different discretization schemes, implying that a high-order numerical scheme is required to predict well the unsteady gasification process on an adequately resolved grid. Computational costs for simulations of varying resolutions are presented to illustrate the trade-off between the accuracy of solution and the time-to-solution, an important consideration when engineering simulations are used for the design of commercial-scale units.
机译:此研究表明,一个有效的方法结合高和低分辨率的模拟工业煤气化炉的设计研究。从1000万细胞全面的流场数据商业规模的模拟气化炉用来构造一个减少配置经济上详细研究喷吹煤粉。煤的高分辨率数值模拟使用开源注入进行代码MFIX运行在一个高性能计算系统。离散化方案的预测行为喷吹煤粉和气化动力学分析。在液化作用和蒸汽气化由于不同的离散化计划,这意味着一个高阶数值计划需要预测不稳定气化过程的充分解决网格。不同的决议提出说明解决方案的准确性之间的权衡time-to-solution,一个重要的工程模拟时考虑用于商业规模的设计单位。

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