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首页> 外文期刊>AAPG Bulletin >A new theoretical approach to model sorption-induced coal shrinkage or swelling
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A new theoretical approach to model sorption-induced coal shrinkage or swelling

机译:一种新的理论模型来模拟吸附引起的煤的收缩或溶胀

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摘要

The shrinkage or swelling of coal as a result of gas desorption or adsorption is a well-accepted phenomenon. Its impact on permeability changes has also been recognized for two decades. Its importance has increased significantly because of the potential of coals that are not likely to be mined and depleted or nearly depleted coalbed methane reservoirs to serve as CO2 repositories. This article proposes a new theoretical technique to model the volumetric changes in the coal matrix during gas desorption or adsorption using the elastic properties, sorption parameters, and physical properties of coal. The proposed model is based on the theory of changes in surface energy as a result of sorption. The results show that the proposed model is in excellent agreement with the laboratory volumetric strain data presented in the literature during the last 50 yr. Furthermore, the proposed model can be extended to describe mixed-gas sorption behavior, which can be applied to enhanced coalbed methane and CO2 sequestration operations.
机译:由于气体解吸或吸附而引起的煤的收缩或溶胀是公认的现象。它对渗透率变化的影响也已经被确认了二十年。由于煤炭不太可能开采和枯竭或几乎枯竭的煤层气储层作为CO2储存库,因此其重要性已大大提高。本文提出了一种新的理论技术,可以利用煤的弹性,吸附参数和物理性质对气体解吸或吸附过程中煤基质中的体积变化进行建模。所提出的模型基于吸附引起的表面能变化的理论。结果表明,提出的模型与文献中最近50年的实验室应变数据非常吻合。此外,所提出的模型可以扩展为描述混合气体的吸附行为,可以应用于增强的煤层气和CO2固存操作。

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