煤炭地下气化
燃烧
煤
合成气
计算机模拟
缩放比例
化学反应
煤燃烧产物
石油工程
煤气化
煤矿开采
环境科学
化学
废物管理
地质学
计算机科学
工程类
模拟
数学
有机化学
几何学
生物化学
氢
作者
Areji Otoshi,Kyuro Sasaki,Ferian Anggara
标识
DOI:10.1080/13647830.2021.1984584
摘要
Underground coal gasification (UCG) is a promising option for utilising deep-seated coal for the in-situ production of syngas. In this study, we modelled and screened the chemical reactions using the previous laboratory UCG experiments to investigate the complicated chemical reaction processes to apply them to field scale UCG operations. First, we constructed 1D and 3D numerical models by matching simulation with the laboratory coal combustion and gasification experiments involving a combustion tube test and then physically scaled the 3D experiments reported by Thorsness et al. and Stańczyk et al., respectively. We considered 5 chemical reactions from 12 chemical reactions by matching simulation to the experimental results. We adjusted the chemical reaction parameters used in our numerical simulations to match those of the experimental data. The numerical simulation results show that the proposed model can be applied in the laboratory as well as in the field-scale UCG operations to predict gasification behaviours, especially the temperature distribution, gas production rate, and gas composition.
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