Creep indentation test and lab-based simulation on Pierre II shale

Xiyang Xie, L. Edvardsen, C. Ringstad, P. Cerasi
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Abstract

Can we find proper lab testing sources rather than coring samples? We rest our hope on drilling cuttings. The cutting sample might be too small to be tested in Laboratory, but the indentation test looks like a promising solution. In this study, the indentation tests are implemented on Pierre II shale and the corresponding numerical simulation is performed. In the indentation test, an alloyed indenter presses on the surface of a shale sample with the loading, holding, and unloading stage. Simulation with FLAC3D is then implemented to fit the lab results well. Then a series of parametric analyses show how the constitutive parameters affect the testing curve. From the simulation results, we have illustrated that an indentation test is an option on cutting samples. This study provides a workflow to analyze the mechanical behavior of small rock samples with the indentation test experimentally and numerically.
Pierre II页岩蠕变压痕试验及室内模拟
我们能找到合适的实验室测试来源而不是取心样本吗?我们把希望寄托在钻屑上。切割样品可能太小,无法在实验室进行测试,但压痕测试看起来是一个很有前途的解决方案。本研究在Pierre II页岩上进行了压痕试验,并进行了数值模拟。在压痕试验中,合金压头在加载、保持和卸载阶段压在页岩样品的表面。然后利用FLAC3D进行仿真,使实验结果与实验结果吻合较好。通过一系列参数分析,揭示了本构参数对试验曲线的影响。从模拟结果中,我们已经说明了压痕测试是切割样品的一种选择。该研究为通过压痕试验和数值分析小岩样的力学行为提供了一个工作流程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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