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Experimental investigation on the impact of coal fines generation and migration on coal permeability

机译:煤炭罚款产生和迁移对煤渗透性影响的实验研究

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AbstractMeasurements of the coal fines production and the impact of these fines on the permeability of two coals from the Bowen Basin, Australia, were performed at different flow conditions (single-phase water or gas, two-phase water and gas) and pressure conditions. The fines collected from each coal samples ranged in size from 1?μm to 14?μm. For both coal samples, during the first 50?h, the permeability decreases from 0.005 mD and 0.048 mD by 60.9% and 85%, respectively, followed by gradual decline with fluctuations. By the end of water injection, the permeability drops by 88% and 89%, respectively. This phenomenon is attributed to the counteraction between formation damage (cleats plugging and coal fines settlement) and breakthrough of coal fines from the samples (widened cleats). It was found that coal fines volumetric production is proportional to the third power of flow velocity once the flow paths for coal fines are established. The critical flow velocities of coal fines production for both samples were also obtained. For hydrophobic coal, water-drive-gas two-phase flow introduces abrupt permeability loss due to coal fines generation and migration. Furthermore, pauses (well shut-in) in the experiments cause slight permeability drops. A comparison between the two samples indicates that narrower and less connected cleating system results in more frequent coal fines generation and migration, resulting in significant permeability fluctuations with general decreasing trend. Tortuosity of the cleats can enhance the deterioration in permeability by coal fines behaviours. This study delivers fundamental understandings of coal fines generation and migration during the CSG production process, and useful guidelines are suggested to be implemented in the field to minimize production loss induced by coal fines behaviours.Highlights?Coal permeability variations induced by coal fines were quantified.?Impact of cleat characteristics on fines-permeability relationship was investigated.?Characterization of coal fines output in different production stages was conducted.?Guidelines were suggested to minimize production loss induced by coal fines.]]>
机译:<![CDATA [ 抽象 煤素的测量结果和这些细粉对来自Bowen盆地的两个煤的渗透性的影响,澳大利亚,在不同的流动条件下进行(单相水或天然气,两相水和气体)和压力条件。从每个煤样中收集的细粒的大小范围为1Ωμm至14μm。对于两种煤样品,在前50?H期间,渗透率分别从0.005MD和0.048MD减少60.9%和85%,然后逐渐下降。在注水结束时,渗透率分别下降88%和89%。这种现象归因于地层损伤(凝块堵塞和煤炭沉降)之间的反应,以及来自样品的煤粉的突破(加宽的夹层)。发现,一旦建立了煤粉的流动路径,煤炭罚款体积增加与流速的第三动力成比例。还获得了两种样品的煤翅片产生的临界流速。对于疏水性煤,防水气体两相流引起煤粉的产生和迁移引起的突然渗透性损失。此外,实验中的暂停(良好切换)导致轻微的渗透率下降。两种样品之间的比较表明,较窄且较少的连接的剪切系统导致更频繁的煤粉生成和迁移,导致具有一般性降低趋势的显着渗透性波动。碎屑的曲折性可以增强煤炭罚款行为的渗透性的恶化。本研究提供了CSG生产过程中煤炭罚款发电和移民的基础谅解,并建议在现场实施有用的指导方针,以尽量减少煤炭罚款行为引起的生产损失。 亮点 量化煤粉诱导的煤渗透变化。 < / ce:list-item> 夹板特性的影响研究渗透率关系。 不同生产阶段的煤炭输出的特征进行了。 建议指南以最大限度地减少煤炭罚款引起的生产损失。 ]]>

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