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Coalbed Methane Development in Liulin Block, Ordos Basin: A Study on the Complexity of Fracture Morphology in High-rank Coal Rock Fracturing

机译:鄂尔多斯盆地列素砌块的煤层甲烷开发:高级煤岩压裂中骨折形态复杂性的研究

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Complex fracture morphology may form in the hydraulic fracturing of high-rank coal rock resulting in poor coalbed methane (CBM) yield. This paper proposes a numerical simulation model which reveals the causes of poor hydraulic fracturing effect in Liulin block. Hydraulic fracturing experiments on eight coal samples collected from the target block were also conducted. Taken together, the results are used to establish three types of proppant-filling calculating models and fracturing construction curves which accurately show effective fracture lengths and yields. The results of this case study show that: (a) effective fracture length is the key factor affecting the CBM yield in the target block; (b) the CBM reservoir with high-rank coal rock readily forms complicated fractures, which does not allow for the proppant to fill into the designed position; (c) the model returns effective fracture length predictions within 9% of measured values by microseismic monitoring in the target block. This paper may provide theoretical guidance for the optimization of CBM reservoir hydraulic fracturing operations with high-rank coal rock.
机译:复杂的骨折形态可能形成高级煤岩的水力压裂,导致煤层气(CBM)产量不佳。本文提出了一种数值模拟模型,揭示了列素嵌段液压压裂效应差的原因。还进行了从靶块收集的八个煤样品的液压压裂实验。总之,结果用于建立三种类型的支撑剂填充计算模型和压裂结构曲线,该模型精确地显示有效的裂缝长度和产量。本案例研究的结果表明:(a)有效的裂缝长度是影响目标块中CBM产量的关键因素; (b)具有高级煤岩的CBM储存器容易形成复杂的骨折,不允许支撑剂填充设计位置; (c)模型通过目标块中的微动监测返回9%的测量值内的有效裂缝长度预测。本文可以为高级煤岩优化CBM储层液压压裂运算的理论指导。

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