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Investigations into the opening of fractures during hydraulic testing using a hybrid-dimensional flow formulation

机译:使用杂交维流制剂在液压试验期间调查骨折开放

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We applied a hybrid-dimensional flow model to pressure transients recorded during pumping experiments conducted at the Reiche Zeche underground research laboratory to study the opening behavior of fractures due to fluid injection. Two distinct types of pressure responses to flow-rate steps were identified that represent radial-symmetric and plane-axisymmetric flow regimes from a conventional pressure-diffusion perspective. We numerically modeled both using a radial-symmetric flow formulation for a fracture that comprises a non-linear constitutive relation for the contact mechanics governing reversible fracture surface interaction. The two types of pressure response can be modeled equally well. A sensitivity study revealed a positive correlation between fracture length and normal fracture stiffness that yield a match between field observations and numerical results. Decomposition of the acting normal stresses into stresses associated with the deformation state of the global fracture geometry and with the local contacts indicates that geometrically induced stresses contribute the more the lower the total effective normal stress and the shorter the fracture. Separating the contributions of the local contact mechanics and the overall fracture geometry to fracture normal stiffness indicates that the geometrical stiffness constitutes a lower bound for total stiffness; its relevance increases with decreasing fracture length. Our study demonstrates that non-linear hydro-mechanical coupling can lead to vastly different hydraulic responses and thus provides an alternative to conventional pressure-diffusion analysis that requires changes in flow regime to cover the full range of observations.
机译:我们将混合尺寸流模型应用于在Reiche Zeche地下研究实验室进行的泵送实验期间记录的压力瞬变,以研究由于流体注入引起的裂缝的开口行为。鉴定了对流量步骤的两个不同类型的压力响应,从传统的压力 - 扩散角度表示径向对称和平面轴对称流量。我们使用径向对称的流动制剂来用径向对称的裂缝进行模拟,该裂缝包括用于控制可逆断裂表面相互作用的接触机械的非线性本构体关系。两种类型的压力响应可以同样良好地建模。敏感性研究揭示了裂缝长度与正常断裂刚度之间的正相关性,其在现场观测和数值结果之间产生匹配。将作用正常应力的分解成与全局裂缝几何形状的变形状态相关的应力,并且局部触点表明,几何诱导的应力促进了总有效正常应力的越低,裂缝越短。分离局部接触力学和整体断裂几何形状的贡献,以裂缝正常刚度表明,几何刚度构成了总刚度的下限;其相关性随着骨折长度的降低而增加。我们的研究表明,非线性水力 - 机械耦合可以导致液压反应差异,因此提供了常规压力扩散分析的替代,这需要流动制度的变化以覆盖全方位的观察范围。

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