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Experimental analysis of multiple factors on hydraulic fracturing in coalbed methane reservoirs

机译:煤层气储层水力压裂多因素的实验分析

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摘要

Hydraulic fracturing can improve the permeability of coalbed methane (CBM) reservoirs effectively, which is of great significance to the commercial production of CBM. However, the efficiency of hydraulic fracturing is affected by multiple factors. The mechanism of fracture initiation, morphology and propagation in CBM reservoirs is not clear and need to be further explored. Hydraulic fracturing experiment is an accurate tool to explore these mechanisms. The quantity of experimental coal rock is large and processing method is complex, so specimen made of similar materials was applied to replace coal rock. The true triaxial hydraulic fracturing experimental apparatus, 3D scanning device for coal rock section were applied to carry out hydraulic fracturing experiment. The results show that the initiation pressure is inversely proportional to the horizontal stress difference (Δσ) and positively related to fracturing fluid injection rate. When vertical stress (σv) is constant, the initiation pressure and fracture width decrease with the increasing of Δσ. Natural fractures can be connected by main fracture when propagates perpendicular to the direction of minimum horizontal stress (σh), then secondary fractures and fracture network form in CBM reservoirs. When two stresses of crustal stress are close and far different from the third one, the fracture morphology and propagation become complex. Influenced by perforations and filtration of fracturing fluid in specimen, fracturing fluid flows to downward easily after comparing horizontal well fracturing with vertical well fracturing. Fracture width increases with the decreasing of elastic modulus, the intensity of fracture is positively related with the elastic modulus of coal rock. The research results can provide theoretical basis and technical support for the efficient development of CBM.
机译:液压压裂可以有效地提高煤层气(CBM)储层的渗透性,对CBM的商业生产具有重要意义。然而,液压压裂的效率受到多种因素的影响。骨折启动,形态学和CBM水库中繁殖的机制尚不清楚,需要进一步探索。液压压裂实验是一种探索这些机制的准确工具。实验煤岩的数量大,加工方法复杂,所以采用类似材料制成的试样取代煤岩。真正的三轴液压压裂实验装置,用于煤岩部分的3D扫描装置进行液压压裂实验。结果表明,发起压力与水平应力差(Δσ)成反比,与压裂流体注入速率正相关。当垂直应力(ΣV)是恒定的时,开始压力和断裂宽度随着ΔΣ的增加而降低。当垂直于最小水平应力(ΣH)方向的传播时,自然骨折可以通过主骨折连接,然后在CBM储存器中传播次级骨折和骨折网络形式。当两个地壳应力的应力近距离并且远远差不多,骨折形态和繁殖变得复杂。通过样品中的压裂液的穿孔和过滤的影响,在垂直孔压裂的水平孔压裂后容易发生压裂流体向下流动。随着弹性模量的降低,断裂宽度增加,裂缝强度与煤岩的弹性模量呈正相关。研究结果可以为CBM的有效发展提供理论基础和技术支持。

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