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Hydraulic fracturing design for coalbed methane in Barito Basin, Indonesia

机译:印度尼西亚巴里托盆地煤层气水力压裂设计

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摘要

The coalbed methane (CBM) reservoir in Barito Basin, Indonesia may be stimulated by hydraulic fracturing to efficiently recover methane gas from low permeability reservoirs. The permeability of coalbed may be quite diverse, ranging up to a few thousand mD. If the reservoir permeability is too low (less than a tenth md), hydraulic fracturing could be considered to improve gas productivity as a stimulation treatment method. In this study, hydraulic fracturing treatment design is conducted to determine total slurry volume and proper pump rate upon different fracture lengths. To set an optimal treatment schedule, fracture geometry and fracture efficiency were compared depending on the increase of fracture length and pump rate by fracturing stages. The proper pump rate was determined to be 40 bpm and resulting from high fracture efficiency. Furthermore, usage of proppant was determined using definite proper pump rate and slurry volume determined by highest pump rate in this study. All calculated fracture lengths of treatment with proppant were shorter than the fracture length of treatment without proppant. Also, fracture widths and heights were larger than treatment without proppant. However, the fracture efficiency in treatment with proppant was higher than in treatment without proppant. Therefore, proppant would contribute to improving the fracture efficiency of hydraulic fracture treatment in the CBM reservoir in Barito Basin. Consequently, the 3D-propped fracture model was designed for the CBM. Developed hydraulic fracturing model would be useful for the hydraulic treatment of CBM especially in Barito Basin for fracture design and treatment analysis prior to the actual treatment.
机译:水力压裂可以刺激印度尼西亚巴里托盆地的煤层气(CBM)储层,以有效地从低渗透性储层中回收甲烷气。煤层的渗透率可能千差万别,高达数千mD。如果储层渗透率太低(小于十分之一md),则可以考虑采用水力压裂来提高天然气生产率,以此作为增产措施。在这项研究中,进行水力压裂处理设计来确定不同裂缝长度下的总浆液体积和合适的泵速。为了设定最佳的处理方案,根据压裂阶段增加的裂缝长度和泵速,比较了裂缝的几何形状和裂缝效率。确定适当的泵速为40 bpm,这是由于高断裂效率所致。此外,在本研究中,使用确定的适当泵送速率确定了支撑剂的用量,并通过最高泵送速率确定了浆料体积。用支撑剂处理的所有计算的断裂长度都短于不使用支撑剂的处理的断裂长度。而且,裂缝的宽度和高度大于没有支撑剂的处理。然而,用支撑剂治疗的骨折效率高于不使用支撑剂的治疗。因此,支撑剂将有助于提高巴里托盆地煤层气储层水力压裂处理的压裂效率。因此,为煤层气设计了3D支撑裂缝模型。所建立的水力压裂模型将对煤层气的水力处理特别是在巴里托盆地进行实际设计之前的裂缝设计和处理分析将是有用的。

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