首页> 外文期刊>应用科学(英文) >Experimental Study and Numerical Simulation Using Extended Finite Element Method (XFEM) Combined with Cohesive Zone Model (CZM), of Crack Growth Induced by Non-Explosive Expansive Material on Two Neighboring Circular Holes of A Gneiss Rock
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Experimental Study and Numerical Simulation Using Extended Finite Element Method (XFEM) Combined with Cohesive Zone Model (CZM), of Crack Growth Induced by Non-Explosive Expansive Material on Two Neighboring Circular Holes of A Gneiss Rock

机译:扩展有限元方法(XFEM)结合内聚力区域模型(CZM)的数值模拟和数值模拟由非爆炸性膨胀材料引起的片麻岩两个相邻圆孔的裂纹扩展

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摘要

The Non-explosive expansion material (NEEM) is a method more environmentally friendly than the harmful conventional rock fracturing techniques. However, it is slower and very costly. Thus, any means of economizing their use is very desirable. This paper investigates the crack growth between two neighboring holes of a gneiss rock internally pressurized by NEEM mixed with water with the aim to evaluate the influence of holes spacing (center-to-center distance), on the initiation and growth of cracks. Field experimental results reveal that crack starts earlier and grows faster with increasing ambient temperature. But when the ambient temperature is above 28°C, the NEEM is “blown out” of the holes. At these ambient temperatures, the surrounding rocks are hot and cannot dissipate efficiently the heat generated by the hydration reaction. The best filling time was found to be in the evening when the daily hot temperature has drooped. The time to first crack increases as hole diameter decreases. The 3D numerical modeling and simulation of crack growth between two neighboring holes internally pressurized by NEEM using ABAQUS (XFEM/CZM) software shows a good agreement with the theoretical and experimental results.
机译:非爆炸性膨胀材料(NEEM)是一种比有害的传统岩石压裂技术更环保的方法。但是,它慢且非常昂贵。因此,任何节约使用的手段都是非常理想的。本文调查了由Neem混合的环岩的两个邻近孔之间的裂纹增长与水混合的目的是评估孔间距(中心至中心距离)的影响,对裂缝的启动和生长。现场实验结果表明,裂缝早期开始,随着环境温度的增加而增长。但是,当环境温度高于28°C时,NEEM是“吹出”孔的。在这些环境温度下,周围的岩石是热的,并且不能有效地散发水合反应产生的热量。当每日热温下垂时,发现最好的填充时间是在晚上。第一裂缝的时间随着孔直径的降低而增加。使用ABAQUS(XFEM / CZM)软件由Neem内部加压的两个相邻孔之间的3D数值建模和抗裂纹模拟显示了与理论和实验结果的良好一致性。

著录项

  • 来源
    《应用科学(英文)》 |2020年第010期|P.592-612|共21页
  • 作者单位

    Laboratory of Civil and Mechanical Engineering National Advanced School of Engineering Yaoundé 1 University Yaoundé CameroonSchool of Geology and Mining Engineering Ngaoundéré University Meiganga Cameroon;

    Laboratory of Civil and Mechanical Engineering National Advanced School of Engineering Yaoundé 1 University Yaoundé CameroonNational Advanced School of Engineering of Maroua Maroua Cameroon;

    Laboratory of Civil and Mechanical Engineering National Advanced School of Engineering Yaoundé 1 University Yaoundé Cameroon;

    Laboratory of Civil and Mechanical Engineering National Advanced School of Engineering Yaoundé 1 University Yaoundé Cameroon;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 固体力学;
  • 关键词

    Crack Growth; XFEM; Gneiss; Holes Spacing;

    机译:裂纹扩展;XFEM;片麻岩;孔距;
  • 入库时间 2022-08-19 04:46:21
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