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Numerical modeling of seepage-induced sand production in oil and gas reservoirs

机译:油气藏渗流诱导出砂的数值模拟

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摘要

An elasto-plastic,fully coupled fluid flow and deformation finite element mode lisproposed for modeling both tensile and shear-induced failure around deep wellbores in oil and gas reservoirs.The problemis of significnat interest to the industry as the usual filter measures undertaken (e.g.,liners and gravel packs)to prevent solids production(tensile failure) are not only very expensive but also they reduce productivity due to inevitable plugging of the pores in such filters.The impetus for developing the proposed model was to provide the industry with a viable tool to predict the quantity of the produced solids and its concomitant impact on fluid productivity.The proposed model employs a modified form of the Mohr-Coulomb failure envelope along with several numerical algorithms to effectively simulate failure in a numerically accurate and sable form.The model is verified and then applied to a field problem to investigate mechaisms for cavitation-induced productivity enhancement in a multi-layered coalbed methane reservoir.
机译:提出了一种弹塑性,完全耦合的流体流动和变形有限元模式,用于对油气储层深井筒周围的拉伸和剪切诱发的破坏进行建模。该问题是业界采取常规过滤措施(例如,防止固体产生(拉伸失效)的衬套和砾石填充不仅非常昂贵,而且由于不可避免地堵塞此类过滤器中的孔而降低了生产率。开发该模型的动力是为工业提供一种可行的工具该模型采用了改进形式的Mohr-Coulomb破坏包络线以及几种数值算法来以数值精确和稳定的形式有效地模拟破坏,从而预测产生的固体量及其对流体生产率的影响。验证,然后应用于现场问题,以研究气蚀引起的生产率提高的机理钛层煤层气储层。

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