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Hydraulic fracturing model featuring initiation beyond the wellbore wall for directional well in coal bed

机译:水力压裂模型,其特征在于煤层定向井的井壁外引爆

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In developing internal fracture systems in coal beds, the initiation mechanism differs greatly from that of conventional ones and initiations may be produced beyond the wellbore wall. This paper describes the features of the internal structure of coal beds and RFPA2D simulation is used to attest the possible occurrence of initiation beyond the wellbore wall in coal bed hydraulic fracturing. Using the theory of elasticity and fracture mechanics, we analyse the stress distribution in the vicinal coal rock. Then by taking into consideration the effects of the spatial relationship between coal bed cleats and the wellbore, we establish a model for calculating both tensile and shear initiation pressure that occur along cleats beyond the wellbore wall. The simulation in this paper indicates that for shear initiations that happen along coal cleats, the pressure required to initiate fracture for cleats beyond the wellbore wall is evidently lower than that on the wellbore wall, thus it is easier to initiate shear fractures for cleats beyond the wellbore wall. For tensile failure, the pressure required to initiate tensile fracture for cleats beyond the wellbore wall is obviously higher than that for cleats at the wellbore wall, thus it is easier to initiate tensile fractures for cleats at the wellbore wall. On the one hand, this paper has proved the possible occurrence of initiations beyond the wellbore wall and has changed the current assumption that hydraulic fractures can only occur at the wellbore wall. On the other hand, the established theoretical model provides a new approach to calculating the initiation pressure in hydraulic fracturing.
机译:在开发煤层内部裂缝系统时,起爆机制与常规机制大不相同,并且可能在井眼壁之外产生起爆。本文介绍了煤层内部结构的特征,并通过RFPA2D模拟来证明煤层水力压裂过程中井壁外可能发生引发现象。利用弹性理论和断裂力学,分析了邻近煤岩中的应力分布。然后,通过考虑煤层气垫层与井眼之间空间关系的影响,我们建立了一个模型,用于计算沿井眼超出井壁的夹层产生的拉伸和剪切初始压力。本文的模拟结果表明,对于沿煤质割理发生的切变萌生,明显的是,井眼超出井眼壁的割理引发破裂所需的压力明显低于井眼壁上的压力,因此,对煤层气旋超出煤层的割理进行剪切破裂较容易。井筒壁。对于拉伸破坏,对于超出井眼壁的防滑钉启动拉伸断裂所需的压力明显高于针对井眼壁的防滑钉的压力,因此,更容易引发针对井眼壁的防滑钉的拉伸断裂。一方面,本文证明了可能在井眼壁之外发生引发,并且改变了当前的假设,即水力压裂只能在井眼壁发生。另一方面,建立的理论模型为计算水力压裂的初始压力提供了一种新的方法。

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