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Well productivity evaluation in deformable single-fracture media

机译:可变形单骨折介质的生产率评估

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Evaluations and interpretations of reservoir productivity are frequent in geothermal, groundwater and hydrocarbon research and applications. In this study, we consider the closure of fractures around production wells due to compaction that can affect the productivity value, i.e. the ability of subsurface formations for transporting the desired fluid to a borehole. We introduce analytical tools to evaluate and predict changes in the productivity of a deformable fractured porous media.We propose analytical models for three geometries: a rectangular fracture with zeroon-zero orientation and a circular fracture with zero orientation to maximum horizontal stress. An advanced numerical model is utilised to evaluate the impact of spatial variation of fracture aperture induced by the fracture deformation on well productivity. The developed analytical solutions using a uniform fracture aperture always either over- or underestimate the production rate. Hence, an equivalent aperture model is developed for the fracture with aperture distribution under variable contact stresses to circumvent this problem.The proposed equivalent aperture model reduces the average and maximum errors of production-rate prediction from 28% to 0.6% and from 116% to 25%, respectively. We further employ the proposed model for sensitivity analyses to illustrate the impacts of in-situ and human-controlled parameters on productivity reduction. These analyses present that the interactions among initial reservoir pressure, fracture orientation, fracture stiffness, and well pressure control productivity reduction behaviours and the maximum productivity reduction values.
机译:储层生产率的评估和解释在地热,地下水和碳氢化合物研究和应用中经常出现。在这项研究中,我们考虑由于压实的压实而在生产井周围的裂缝关闭,即可以影响生产率值,即将所需流体输送到钻孔的地下地层的能力。我们介绍了分析工具来评估和预测可变形骨折多孔介质的生产率的变化。我们提出了三个几何形状的分析模型:具有零/非零取向的矩形骨折和具有零方向的圆形骨折到最大的水平应力。高级数值模型用于评估骨折变形诱导的骨折孔径的空间变化对井生产率的影响。使用均匀骨折光圈的开发的分析解决方案始终过度或低估生产率。因此,在可变接触应力下为具有孔径分布的骨折开发了等效孔径模型,以规避这个问题。所提出的等效孔径模型将生产率预测的平均值和最大误差降低到0.6%至0.6%,从116%降低分别为25%。我们进一步采用了拟议的敏感性分析模型,以说明原位和人类控制参数对生产力降低的影响。这些分析表明,初始储层压力,断裂取向,断裂刚度和井压力控制的相互作用和良好的压力降低行为和最高生产率降低值。

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