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A new constitutive model for calculating the loading-path dependent proppant deformation and damage analysis of fracture conductivity

机译:一种新的本结构型模型,用于计算裂缝电导率的负载路径依赖性支撑剂变形及损伤分析

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摘要

The conventional mechanical and permeability models for proppant pack consider proppant as an elastic material, however, loading stresses cause proppant rearrangement and crush, leading irreversible material hardening, structure damage of proppant pack, strong reduction of pore space and damage of fracture conductivity. In this work, a confined compression and conductivity test on proppant pack was conducted. According to the experimental results, a new constitutive model for calculating the loading path dependent proppant deformation and permeability was developed. In the proposed model, a simple yield equation and a non-associated potential equation were applied to derive the irreversible plastic deformation which is further used to calculate the material hardening parameter and the permeability damage. The model was validated by the experimental data and coupled into a reservoir simulator to investigate the impact of the stress shadow effects caused by the current stimulated fracture on the deformation and permeability of the placed proppant in the previous generated fracture. The modeled results revealed that the current fracturing operation damages the conductivity of the previous generated fracture, which must be taken into account for production prediction. (C) 2017 Elsevier B.V. All rights reserved.
机译:用于支撑剂组的传统机械和渗透性模型认为支撑剂作为弹性材料,然而,负载应力导致支撑剂重排和压碎,领先的不可逆材料硬化,支撑剂包的结构损坏,孔隙空间的强度强调和骨折导电性的损伤。在这项工作中,进行了对支撑剂包的狭窄压缩和电导率测试。根据实验结果,开发了一种用于计算负载依赖性支撑剂变形和渗透性的新本构体模型。在所提出的模型中,应用了简单的产量方程和非相关电位方程来导出不可逆的塑性变形,该变形还用于计算材料硬化参数和渗透性损伤。通过实验数据验证该模型,并耦合到储库模拟器中,以研究当前刺激的骨折引起的应力阴影效应对先前产生的骨折中放置的支撑剂的变形和渗透性引起的应力阴影效果的影响。所建模的结果表明,目前的压裂操作会损坏先前产生的骨折的导电性,这必须考虑到生产预测。 (c)2017 Elsevier B.v.保留所有权利。

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