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A discussion on analytical and numerical modelling of the land subsidence induced by coal seam gas extraction

机译:煤层气开采引起的地面沉降分析与数值模拟的探讨

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Coal seam gas (CSG) is an increasingly important source of natural gas all over the world. Although the influence of conventional oil and gas extraction on surface subsidence has been widely recognized and studied, few studies are carried out on the surface subsidence in coal seam gas fields and its impact on surface infrastructure and the environment. This paper discusses modelling of the surface subsidence associated with coal seam gas production by applying both analytical and numerical methods. By comparison of results from the numerical model and two analytical models, i.e. the disc-shaped reservoir model and the uniaxial compaction model, the analytical solutions cannot describe the complex process of water and gas extraction and have the limitations to predict the surface subsidence, while the numerical model can be better used in prediction of subsidence. After applying the numerical model in numerical analysis, the deformation characteristics of coupled fluid flow, and the effects of permeability change of coal seam, associated overlying and underlying layers, and depressurization rates on surface subsidence are investigated. The results demonstrate that the proposed model can simulate the production of water and gas from coal seams and the associated surface subsidence.
机译:煤层气(CSG)是全世界越来越重要的天然气来源。尽管常规油气开采对地表沉陷的影响已得到广泛的认识和研究,但对煤层气田地表沉陷及其对地表基础设施和环境的影响的研究很少。本文通过分析和数值方法讨论了与煤层气生产有关的地面沉降模型。通过将数值模型和两个分析模型(即盘状油藏模型和单轴压实模型)的结果进行比较,分析解决方案无法描述水和天然气开采的复杂过程,并且在预测地表沉陷方面存在局限性,而数值模型可以更好地用于沉降预测。在将数值模型应用于数值分析后,研究了耦合流体流动的变形特征,以及煤层渗透率变化,相关的上覆和下覆层以及减压速率对地表沉陷的影响。结果表明,所提出的模型可以模拟煤层中水和天然气的产生以及相关的地面沉降。

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