煤炭工程 ›› 2022, Vol. 54 ›› Issue (12): 164-169.doi: 10.11799/ce202212029

• 研究探讨 • 上一篇    下一篇

基于ALE算法的连续高压水射流破岩数值模拟

马文涛   

  1. 煤炭科学研究总院(天地科技股份有限公司)
  • 收稿日期:2022-04-20 修回日期:2022-05-25 出版日期:2022-12-14 发布日期:2023-02-06
  • 通讯作者: 马文涛 E-mail:1412225958@qq.com

Numerical simulation of continuous high pressure water jet breaking rock based on ALE algorithm

  • Received:2022-04-20 Revised:2022-05-25 Online:2022-12-14 Published:2023-02-06

摘要: 采用ALE算法对高压水射流破岩过程进行数值模拟,通过模拟连续射流破岩过程,分析讨论了高压水射流破岩机理、岩石破坏形态以及岩石损伤特征。研究结果表明,射流破岩过程中岩石受到压应力、拉应力以及剪应力,岩石破碎是由冲击压力、水锤压力、应力波、水楔共同作用的结果,射流破岩具有阶段循环性,在不同破岩循环时期阶段各作用力具有相应的主导性。岩石破坏形态具有时变性,随着时间推移,其破坏形态不断变化,最终破坏形态呈漏斗状或深“V”形,岩石破坏具有局部特征以及分区性,可分为破坏区、损伤区以及原始状态区。岩石损伤具有阶段性,可分为无损伤阶段、密集损伤阶段以及破坏阶段。研究成果对高压水射流破岩领域研究具有一定的借鉴意义。

关键词: 高压水射流, ALE算法, 破岩机理, 破岩形态

Abstract: Rock-breaking by high-pressure water jet is a non-linear dynamic problem with many influencing factors. Aiming at the instantaneity of rock-breaking process by jet and the problem of avoiding mesh distortion in finite element method, the rock-breaking process by continuous jet is simulated based on ALE algorithm. Jet and air adopt ALE format and rock adopt J-H-C model. Then the rock-breaking mechanism, rock failure form and rock damage by high-pressure water jet are analyzed. Characteristics of injury. The results show that rock fragmentation is the result of the combined action of impact pressure, water hammer pressure, stress wave and water wedge. Rock fragmentation by jet has periodic cyclicity, and each mode of action has corresponding dominance in different stages of rock fragmentation cycle. The failure mode of rock is time-varying. At different times, the failure mode changes constantly, and the final failure mode is funnel-shaped or deep "V" shaped. Rock damage has stages, which can be divided into non-damage stage, intensive damage stage and failure stage. Rock failure has local characteristics and zoning, which can be divided into damage zone, damage zone and original state zone.

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