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Controlling Bottom Hole Flowing Pressure Within a Specific Range for Efficient Coalbed Methane Drainage

机译:将井底流动压力控制在特定范围内,以实现高效的煤层气排放

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摘要

The stress state of coal surrounding a coalbed methane (CBM) production well is affected by the bottom hole flowing pressure (BHFP). The permeability of coal shows a marked change under compression. The BHFP must be restricted to a specific range to favor higher permeability in the surrounding coal and thus higher productivity of the well. A new method to determine this specific range is proposed in this paper. Coal has a rather low tensile strength, which induces tensile failure and rock disintegration. The deformation of coal samples under compression has four main stages: compaction, elastic deformation, strain hardening, and strain softening. Permeability is optimal when the coal samples are in the strain softening stage. The three critical values of BHFP, namely, P_(wmin), P_(wmid), and P_(wupper), which correspond to the occurrence of tensile failure, the start of strain softening, and the beginning of plastic deformation, respectively, are derived from theoretical principles. The permeability of coal is in an optimal state when the BHFP is between p_(wmin) and P_(wmid). The BHFP should be confined to this specific range for the efficient drainage of CBM wells. This method was applied to field operations in three wells in the Hancheng CBM field in China. A comprehensive analysis of drainage data and of the BHFP indicates that the new method is effective and offers significant improvement to current practices.
机译:煤层气(CBM)生产井周围的煤的应力状态受井底流动压力(BHFP)的影响。煤的渗透率在压缩下显示出明显的变化。必须将BHFP限制在特定范围内,以利于周围煤炭的更高渗透率,从而提高井的生产率。本文提出了一种确定该特定范围的新方法。煤具有相当低的抗张强度,这会导致抗张破坏和岩石崩解。压缩后的煤样品变形有四个主要阶段:压实,弹性变形,应变硬化和应变软化。当煤样品处于应变软化阶段时,渗透性最佳。 BHFP的三个临界值分别为P_(wmin),P_(wmid)和P_(wupper),分别对应于拉伸破坏的发生,应变软化的开始和塑性变形的开始。源自理论原理。当BHFP在p_(wmin)和P_(wmid)之间时,煤的渗透率处于最佳状态。为了有效排放煤层气井,应将BHFP限制在此特定范围内。该方法已应用于中国韩城煤层气田三口井的现场作业。对排水数据和BHFP的综合分析表明,新方法是有效的,并且对当前的做法提供了重大改进。

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