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A hydro-mechanical erosion analytical model for sand prediction

机译:砂预测水力机械侵蚀分析模型

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Sand production is one of the major research subjects in petroleum industry. The physical processes that dominate the problem depend on the in-situ stress field and the hydro-mechanical conditions (i.e. the state of the material). The problem is usually dealt with either experimentally or numerically due to the complexity of the governing equations. In our previous work, we introduced an erosion model which is built upon the physics (fluid-solid poro-mechanical coupling) usually incorporated in erosion models for the prediction of sand production. In this work we briefly outline the mathematical framework upon which our sand production model works due to erosion. The focus of this analysis is the parametric investigation of the material parameters that dominate the poro-elastoplastic constitutive model (cohesion and friction angle) for weak unconsolidated formations. Typically such formations are dominated by plastic compaction upon loading and are characterized by low cohesive strength (low cohesion) but significant frictional stress dependent strength (high friction angle).
机译:沙子生产是石油工业的主要研究科目之一。主导问题的物理过程取决于原位应力场和水力机械条件(即材料的状态)。由于控制方程的复杂性,该问题通常在实验或数值上处理。在我们以前的工作中,我们介绍了一种侵蚀模型,该模型建立在通常包含在侵蚀模型中的物理学(流体固体孔机械耦合),以预测砂生产。在这项工作中,我们简要概述了由于侵蚀而作品的砂生产模型的数学框架。该分析的重点是对栓塞未核化形成的龙骨弹塑性本构模型(内聚力和摩擦角)主导龙骨 - 弹塑性本构模型(内聚力和摩擦角)的参数研究。通常,这种形成在装载时由塑料压实支配,其特征在于低粘性强度(低凝聚力),而是显着的摩擦力应力依赖性强度(高摩擦角)。

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