Parameter determination of Johnson–Holmquist–Cook constitutive model and calibration for Indiana Limestone

IF 3.9 2区 工程技术 Q3 ENERGY & FUELS Geomechanics and Geophysics for Geo-Energy and Geo-Resources Pub Date : 2024-07-27 DOI:10.1007/s40948-024-00845-y
Mahdi Heydari, Ebrahim Farrokh, Seyed Hasan Khoshrou
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Abstract

In this study, a comprehensive parameter determination procedure for the Johnson–Holmquist–Cook (JHC) constitutive model is introduced, including calibration and validation processes for Indiana Limestone rocks. The procedure is conducted utilizing the existing physical and mechanical properties of Indiana Limestone. To obtain an accurate set of parameters for the JHC model for Indiana Limestone, an extensive dataset comprising mechanical and physical properties of Indiana Limestone rocks was initially compiled. The static mechanical tests incorporated uniaxial compression, triaxial compression, direct tensile, and uniaxial strain data, while the dynamic mechanical test data was primarily derived from the Split Hopkinson Pressure Bar experiments. Subsequently, the JHC constitutive model parameters were determined using existing literature data, employing statistical analysis, theoretical derivation, and numerical back analysis techniques. One of the damage parameters was determined through numerical post-peak behavior calibration of triaxial compression strength test results on experimental data. Finally, the accuracy of the determined parameters was validated by comparing the numerical and experimental results of both static and dynamic tests. This study effectively addresses the challenges associated with the numerical method using the JHC material model, such as the complex parameter determination process and the costly required tests, thereby preserving the efficiency and applicability of the numerical method.

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约翰逊-霍尔姆奎斯特-库克构成模型参数确定及印第安纳石灰岩校准
本研究介绍了约翰逊-霍尔姆奎斯特-库克(JHC)构造模型的综合参数确定程序,包括印第安纳石灰岩的校准和验证过程。该程序利用印第安纳石灰岩现有的物理和机械特性进行。为获得印第安纳石灰岩 JHC 模型的精确参数集,最初编制了一个包含印第安纳石灰岩机械和物理特性的广泛数据集。静态机械测试包括单轴压缩、三轴压缩、直接拉伸和单轴应变数据,而动态机械测试数据则主要来自分体式霍普金森压力棒实验。随后,利用现有文献数据,采用统计分析、理论推导和数值回溯分析技术,确定了 JHC 构成模型参数。其中一个破坏参数是通过对实验数据进行三轴压缩强度测试结果的峰后行为数值校准确定的。最后,通过对比静态和动态测试的数值和实验结果,验证了所确定参数的准确性。这项研究有效地解决了使用 JHC 材料模型的数值方法所面临的挑战,如复杂的参数确定过程和昂贵的所需试验,从而保持了数值方法的效率和适用性。
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来源期刊
Geomechanics and Geophysics for Geo-Energy and Geo-Resources
Geomechanics and Geophysics for Geo-Energy and Geo-Resources Earth and Planetary Sciences-Geophysics
CiteScore
6.40
自引率
16.00%
发文量
163
期刊介绍: This journal offers original research, new developments, and case studies in geomechanics and geophysics, focused on energy and resources in Earth’s subsurface. Covers theory, experimental results, numerical methods, modeling, engineering, technology and more.
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