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Undesorbable residual gas in coal seams and its influence on gas drainage

机译:煤层中不可解吸残留气体及其对瓦斯抽采的影响

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The definition of ''residual gas” can be found in different scenarios, such as the ''fast” and ''slow” desorption methods of measuring gas content and the sorption hysteresis test and gas management of coal mines, however, its meaning varies a lot in different contexts. The main aim of this paper is to discuss the existence of truly undesorbable residual gas in coal seam conditions and its impacts on sorption model and gas drainage efficiency. We believe the undesorbable residual gas does exist due to the observation of the extended slow desorption test and the sorption hysteresis test. The origin of undesorbable residual gas may be because of the inaccessible (closed or semi-closed) pores. Some gas molecules produced during coalification are stored in these inaccessible pores, since the coal is relatively intact in the coal seam condition, these gas molecules cannot escape during natural desorption and then create the undesorbable residual gas. Based on the existing adsorption models, we propose the improved desorption versions by taking into consideration the role of residual gas. By numerically simulating a gas drainage case, the gas contents after different drainage times are studied to understand the influence of residual gas content on gas drainage. The results indicate that the influence starts to be obvious even when the total gas content is at a high level, and the impact becomes more and more apparent with increasing drainage time. Our study shows that the existence of residual gas will impede the gas drainage and the total amount of recoverable coal seam methane may be less than expected.
机译:残留气体的定义可以在不同的场景中找到,例如测量气体含量的“快速”和“缓慢”解吸方法以及煤矿的吸附滞后测试和气体管理,但是其含义各不相同。在不同的情况下很多。本文的主要目的是讨论煤层条件下真正不可解吸的残留气体的存在及其对吸附模型和瓦斯抽采效率的影响。我们认为,由于观察到扩展的慢速解吸测试和吸附滞后测试,确实存在无法解吸的残留气体。无法解吸的残留气体的来源可能是由于无法进入(封闭或半封闭)的孔所致。煤化过程中产生的一些气体分子存储在这些难以接近的孔中,因为煤在煤层条件下相对完好无损,因此这些气体分子在自然解吸过程中无法逸出,从而产生不可解吸的残余气体。在现有吸附模型的基础上,我们考虑到残留气体的作用,提出了改进的解吸方案。通过对瓦斯抽放情况进行数值模拟,研究了不同抽放时间后的瓦斯含量,以了解剩余瓦斯含量对瓦斯抽放的影响。结果表明,即使总瓦斯含量较高,其影响也开始明显,随着排水时间的增加,影响越来越明显。我们的研究表明,残留气体的存在将阻碍瓦斯抽采,可采煤层气的总量可能少于预期。

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