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Assessing the impact made by the geological features of a coalfield on producing well's operation

机译:评估煤田地质特征对生产井运作的影响

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Introduction. Coalbed methane extraction increases the economic efficiency of coal mining being a main measure mitigating coal mining risks. Research aim was to assess the impact made by host rocks with different reservoir properties on coalbed methane production dynamics before and after hydraulic fracturing. Methodology. A coal seam model has been constructed using software systems;;the coal seam has been represented as an integrated deposit of two minerals, coal and gas. Gas production scenarios with and without impact on the seam have been calculated as well. A model of a coal bed with a hydraulic fracture was constructed in application program package Petrel (Shlumberger). Results. The calculation results showed the development of gas migration from the coal matrix to the surrounding rock through the fracture system during gas production. The use of hydraulic fracturing has positive impact on the dynamics of gas production from coal seams. Hydraulic fracturing revealed the growth of desorbed gas migration into the host interlayers. Analysis of coal methane migration to the surrounding rock has shown that the host rock can be considered as a transportation route for coalbed methane production.
机译:介绍。Coalbed Methane Extraction increases the economic efficiency of coal mining being a main measure mitigating coal mining risks.研究AIM是为了评估Hydraulic撞击前和撞击后,主机岩对COALBED Methane Production Dynamics的不同保护特性产生的影响。方法学。a Coal Seam Model has been constructed using software systems;海洋煤炭已代表了两个矿产、煤炭和天然气的综合存款。这是一个很好的例子。一个模型的煤床与一个水力压裂是建设在应用程序包石油(Shlumberger)。结果。计算结果显示,在天然气生产过程中,气体从煤层物质迁移到周围岩石的发展。使用氢氟碳化合物对来自煤海的天然气生产动态有积极影响。Hydraulic fracturing revealed the growth of desorbed gas migration into the host interlayers.分析煤层甲烷迁移到环绕岩石的分析显示,主岩可以被认为是煤层甲烷生产的运输路线。

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