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Integration of vertical and in-seam horizontal well production analyses with stochastic geostatistical algorithms to estimate pre-mining methane drainage efficiency from coal seams: Blue Creek seam Alabama

机译:将垂直和缝内水平井生产分析与随机地统计算法相结合以估算煤层中的开采前甲烷排放效率:阿拉巴马州的Blue Creek煤层

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摘要

Coal seam degasification and its efficiency are directly related to the safety of coal mining. Degasification activities in the Black Warrior basin started in the early 1980s by using vertical boreholes. Although the Blue Creek seam, which is part of the Mary Lee coal group, has been the main seam of interest for coal mining, vertical wellbores have also been completed in the Pratt, Mary Lee, and Black Creek coal groups of the Upper Pottsville formation to degasify multiple seams. Currently, the Blue Creek seam is further degasified 2–3 years in advance of mining using in-seam horizontal boreholes to ensure safe mining.The studied location in this work is located between Tuscaloosa and Jefferson counties in Alabama and was degasified using 81 vertical boreholes, some of which are still active. When the current long mine expanded its operation into this area in 2009, horizontal boreholes were also drilled in advance of mining for further degasification of only the Blue Creek seam to ensure a safe and a productive operation. This paper presents an integrated study and a methodology to combine history matching results from vertical boreholes with production modeling of horizontal boreholes using geostatistical simulation to evaluate spatial effectiveness of in-seam boreholes in reducing gas-in-place (GIP).Results in this study showed that in-seam wells' boreholes had an estimated effective drainage area of 2050 acres with cumulative production of 604 MMscf methane during ~2 years of operation. With horizontal borehole production, GIP in the Blue Creek seam decreased from an average of 1.52 MMscf to 1.23 MMscf per acre. It was also shown that effective gas flow capacity, which was independently modeled using vertical borehole data, affected horizontal borehole production. GIP and effective gas flow capacity of coal seam gas were also used to predict remaining gas potential for the Blue Creek seam.
机译:煤层脱气及其效率直接关系到煤矿安全。 Black Warrior盆地的脱气活动始于1980年代初,当时是使用垂直钻孔。尽管属于Mary Lee煤炭集团的Blue Creek煤层一直是煤矿开采的主要兴趣层,但在上Pottsville组的Pratt,Mary Lee和Black Creek煤集团中也已经完成了垂直井筒使多个接缝脱气。目前,为确保安全开采,Blue Creek煤层在开采前的2-3年要进一步脱气,以确保安全开采。该工作的研究地点位于阿拉巴马州的Tuscaloosa和Jefferson县之间,并使用81个垂直井进行了脱气。 ,其中一些仍处于活动状态。当前的长矿在2009年将业务扩展到该地区时,还在开采前钻了水平钻孔,以仅对Blue Creek煤层进行进一步脱气,以确保安全且生产高效。本文提出了一项综合研究和一种方法,该方法利用地统计学模拟方法将垂直井眼的历史匹配结果与水平井眼的生产建模相结合,以评估煤层内井眼在减少就地产气(GIP)方面的空间有效性。研究表明,在运行约2年的时间里,缝内井眼的有效排水面积估计为2050英亩,累计产生604 MMscf甲烷。随着水平井眼产量的增加,Blue Creek煤层的GIP从每英亩平均1.52 MMscf降低到1.23 MMscf。还显示出有效气体流量(使用垂直井眼数据独立建模)会影响水平井眼产量。 GIP和煤层瓦斯的有效瓦斯流量也被用于预测Blue Creek煤层的剩余瓦斯潜力。

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