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Numerical Simulation of Pressure Effects on the Gasification of Australian and Indian Coals in a Tubular Gasifier

机译:管状气化炉中澳大利亚和印度煤气化压力效应的数值模拟

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This article presents a numerical study on the effect of pressure on the gasification performance of an entrained flow tubular gasifier for Australian and Indian coals. Gasification using a substoichiometric amount of air, with or without steam addition, is considered. The model takes into account phenomena such as devolatilization, combustion of volatiles, char combustion, and gasification. Continuous-phase conservation equations are solved in an Eulerian frame and those of the particle phase are solved in a Lagrangian frame, with coupling between the two phases carried out through interactive source terms. The numerical results obtained show that the gasification performance increases for both types of coal when the pressure is increased. Locations of devolatilization, combustion, and gasification zones inside the gasifier are analyzed using the temperature plots, devolatilization plots, and mass depletion histories of coal particles. With increase in pressure, the temperature inside the gasifier increases and also the position of maximum temperature shifts upstream. For the high-ash Indian coal, the combustion of volatiles and char and the gasification process are relatively slower than those for the low-ash Australian coal. The mole fractions of CO and H_2 are found to increase with increase in pressure, in all the cases considered. Further, the effects of pressure on overall gasification performance parameters such as carbon conversion, product gas heating value, and cold gas efficiency are also discussed for both types of coals.
机译:本文提供了一个数值研究,研究了压力对澳大利亚和印度煤炭的气流床气化炉气化性能的影响。考虑使用亚化学计量的空气进行气化,添加或不添加蒸汽。该模型考虑了诸如脱挥发分,挥发物燃烧,焦炭燃烧和气化等现象。连续相守恒方程在欧拉框架中求解,粒子相方程在拉格朗日框架中求解,两个相之间的耦合是通过交互源项进行的。所得数值结果表明,当压力升高时,两种煤的气化性能均提高。气化炉内的脱挥发分,燃烧和气化区域的位置使用温度曲线,脱挥发分曲线和煤颗粒的质量消耗历史进行了分析。随着压力的增加,气化炉内部的温度升高,并且最高温度的位置也向上游移动。对于高灰分的印度煤,挥发物和炭的燃烧以及气化过程都比低灰分的澳大利亚煤慢。在所有考虑的情况下,发现CO和H_2的摩尔分数随压力的增加而增加。此外,还讨论了两种煤的压力对整体气化性能参数(如碳转化率,产物气热值和冷气效率)的影响。

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