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Modelling of hydro-fracture flow in porous media

机译:多孔介质中水力压裂流动的模拟

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Purpose - The mechanical response of the skeleton of a porous medium is highly dependent on its seepage behaviour as pore pressure modifications affect the in situ stress field. The purpose of this paper is to describe how u-p formulation is employed using an explicit time integration scheme where fully saturated and single-phase partially saturated analyse are incorporated for 2D and 3D cases. Design/methodology/approach - Owing to their inherent simplicity, low-order elements provide an excellent framework in which contact conditions coupled with crack propagation can be dealt with in an effective manner. For linear elements this implies single point integration which, however, can result in spurious zero-energy modes which necessitates introduction of a stabilization technique to provide reliable results.rnFindings - The success of the modelling strategy ultimately depends on the inter-dependence of different phenomena. The linking between the displacements components, network and pore pressures represents an important role in the efficiency of the overall coupling procedure. Therefore, a master-slave technique is proposed to link seepage and network fields, proving to be particularly attractive from a computational cost point of view. Another development that has provided substantial savings in CPU times is the use of an explicit-explicit subcycling scheme. Originality/value - Significant reduction in computational cost is achievable using a master-slave procedure to link seepage and fracture network-flows and an explicit-explicit subcycling scheme. Special attention is focused on the investigation of the influence of plastic zones in oil production problems.
机译:目的-多孔介质骨架的机械响应在很大程度上取决于其渗透行为,因为孔隙压力的变化会影响原位应力场。本文的目的是描述如何使用显式时间积分方案使用u-p公式,其中将完全饱和和单相部分饱和分析纳入2D和3D情况。设计/方法/方法-由于其固有的简单性,低阶元素提供了一个极好的框架,在该框架中,可以有效地处理接触条件以及裂纹扩展。对于线性元素,这意味着单点积分,但是,这可能会导致杂散的零能量模式,因此有必要引入稳定技术以提供可靠的结果。rn发现-建模策略的成功最终取决于不同现象的相互依赖性。 。位移分量,网络和孔隙压力之间的联系在整个耦合过程的效率中起着重要作用。因此,提出了一种主-从技术来链接渗透和网络领域,从计算成本的角度来看,事实证明是特别有吸引力的。可显着节省CPU时间的另一项发展是使用显式显式子循环方案。独创性/价值-使用主从过程将渗流和裂缝网络流链接起来,并采用显式显式子循环方案,可以显着降低计算成本。特别关注的重点是研究塑性区对石油生产问题的影响。

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