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A process model for underground coal gasification - Part-Ⅲ: Parametric studies and UCG process performance

机译:地下煤气化工艺模型第三部分:参数研究与UCG工艺性能

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Underground gas gasification (UCG) is a clean coal technology which involves in-situ gasification of deep-seated underground coal. The process can be divided in two phases based on state of coal seam and direction of cavity growth. In phase-I, cavity grows mainly in vertical direction while in phase-II it grows in horizontal direction. The in-house simulator developed for both the phases of UCG has been reported earlier Samdani a al. (2016a,b). It incorporates reaction kinetics, flow patterns, spalling, heat and mass transfer effects. In this work, we take further insight and perform parametric studies to examine the effects of different operating conditions, coal properties and design parameters on key performance indicators i.e. exit gas quality, energy generation rates etc. The investigation revealed that the exit gas quality and rate of coal consumption are strong functions of spalling rates and kinetics of reactions; the coal having very low spalling tendency or less reactivity may not be favorable for the UCG process. An important parameter called critical spalling rate has emerged through this analysis. It is the property of given coal above which UCG is sustainable. In addition, model performance is also sensitive to inlet gas temperature, pressure and composition. Optimum performance of UCG is obtained at a steam to oxygen ratio of 2.5 and at the highest possible inlet gas temperature, operating pressure, and oxygen content in the feed. Among the design parameters, the length of outflow channel is very important as it strongly affects both the exit gas calorific value and its fluctuations with time. The predicted effects of different parameters are in accord with the observations during lab-scale UCG experiments and different field trials. This study demonstrates the importance of a process model to determine the best conditions for UCG process and to evaluate feasibility of the process for a coal seam under consideration.
机译:地下气化(UCG)是一种清洁煤技术,涉及深层地下煤的原位气化。该过程可根据煤层状态和型腔生长方向分为两个阶段。在第一阶段,空腔主要在垂直方向生长,而在第二阶段,空腔在水平方向生长。为UCG的两个阶段开发的内部仿真器早在Samdani等人已有报道。 (2016a,b)。它结合了反应动力学,流态,剥落,传热和传质效果。在这项工作中,我们将进一步洞察并进行参数研究,以检查不同运行条件,煤特性和设计参数对关键性能指标(即出口气体质量,能量产生率等)的影响。调查显示,出口气体质量和速率煤炭消耗量是剥落率和反应动力学的重要函数;具有非常低剥落倾向或较低反应性的煤可能不适用于UCG工艺。通过该分析,出现了一个重要的参数,称为临界剥落率。这是给定煤炭的特性,在此之上,UCG是可持续的。此外,模型性能还对进气温度,压力和成分敏感。在蒸汽与氧气的比例为2.5且进料口温度,工作压力和氧气含量尽可能高的情况下,可以获得最佳的UCG性能。在设计参数中,流出通道的长度非常重要,因为它会严重影响出口气体的热值及其随时间的波动。在实验室规模的UCG实验和不同的现场试验中,不同参数的预测效果与观察结果一致。这项研究证明了确定UCG工艺的最佳条件并评估所考虑煤层工艺可行性的工艺模型的重要性。

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