首页> 外文会议>Annual Workshop Geothermal Reservoir Engineering; 20040126-28; Stanford,CA(US) >PORO-THERMOELASTIC MECHANISMS IN WELLBORE STABILITY AND RESERVOIR STIMULATION
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PORO-THERMOELASTIC MECHANISMS IN WELLBORE STABILITY AND RESERVOIR STIMULATION

机译:井筒稳定性和储层模拟中的孔隙热弹性机理

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摘要

Some fundamental mechanisms associated with cooling/heating of the rock in the context of drilling and reservoir stimulation in enhanced geothermal systems are described. The role of temperature and pore pressure in wellbore failure and fracture width is considered using analytical and boundary element models. Results indicate that cooling induces a pore pressure drop inside the formation that tends to increase the effective stresses near the well-bore but, it reduces the total stresses in the rock near the well more significantly (decreasing the stress difference, i.e., Mohr's circle radius). Thus, cooling causes wellbore stability with respect to shear failure and instability with respect to tensile failure. Consequently, one often observes tension cracks whereas compressional wellbore breakouts may be absent. The cooling mechanism is useful in stimulation by cold fluid injection to enhance fracture permeability. Cooling increases joint aperture and the stress intensity at the fracture tip leading to crack growth. As a result, fracture slip may occur leading to permeability enhancement. On the other hand, increased pore pressure in the rock matrix reduces fracture width.
机译:描述了在增强的地热系统中在钻井和储层增产的背景下与岩石的冷却/加热相关的一些基本机理。使用分析和边界元模型来考虑温度和孔隙压力在井筒破坏和裂缝宽度中的作用。结果表明,冷却引起地层内部的孔隙压力下降,趋于增加井眼附近的有效应力,但会显着降低井眼附近岩石中的总应力(减小应力差,即莫尔圆半径) )。因此,冷却导致相对于剪切破坏的井眼稳定性和相对于拉伸破坏的不稳定性。因此,人们经常观察到拉力裂缝,而可能没有井眼压裂。冷却机制可用于通过冷流体注入来提高裂缝渗透率。冷却会增加接缝的开度,并增加断裂尖端的应力强度,从而导致裂纹扩展。结果,可能发生断裂滑动,导致渗透率提高。另一方面,岩石基质中孔隙压力的增加减小了裂缝宽度。

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