气化数值模拟:喷射速度对原料转化和合成气组成的影响

S. Raza, I. Janajreh
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摘要

气化是一种热化学途径,用于将原料转化为可燃合成气(CO和H2)。在接下来的研究中,进行了计算流体动力学研究,以模拟空气作为氧化剂的离散煤颗粒流的气化过程。研究的主要目的是了解氧化速度对煤颗粒转化和合成气成分的影响。首先用近似法、极限法和量热法测定煤颗粒的化学成分。在数值模拟中,测量结果被用来定义煤的性质。然后,对氧化剂入口速度进行了参数化研究。结果表明,在较低的速度下,煤可以完全转化,但同时由于CO2和H2O的形成,合成气的质量下降。另一方面,由于在气化炉中停留时间的减少,速度的增加往往会降低煤颗粒的转化率。进一步给出了CO和H2的摩尔分数、温度和速度曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of gasification: Effect of injection velocity on the feedstock conversion and syngas composition
Gasification is a thermochemical pathway that is use to convert feedstock into combustible syngas (CO and H2). In the following research a computational fluid dynamics study is performed to model the gasification of discrete coal particles stream using air as oxidizer. The main objective of the study is to understand the effect of the oxidizer's velocity on the conversion of coal particle and syngas composition. Initially the chemical composition of coal particle is measured using the proximate, ultimate and calorimetric analysis. The measured results are used to define the coal properties in the numerical simulation. Afterwards, a parametric study for inlet velocity of oxidizer is performed. The result shows that at lower velocities complete conversion of coal can be attained but at the same time the quality of syngas is degraded due to the formation of CO2 and H2O. On the other hand the increase in velocity tend to reduce the conversion of coal particle due to decrease in residence time in the gasifier. Further result of CO and H2 mole fraction, temperature and velocity contours are also presented.
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