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A Vibration-Isolating Blast Technique with Shock-Reflection Device for Dam Foundation Excavation in Complicated Geological Conditions

机译:复杂地质条件下坝基开挖的隔震爆破隔振技术

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摘要

Under complicated geological conditions, the vibration in the dam foundation caused by blasting can lead to further deterioration of the foundation rock mass and adversely affect the safety of foundation. In order to effectively control the vibration in dam foundation rock mass, a new bench blasting technique with shock-reflection device is proposed. It introduces a shock-reflection device consisting of high wave impedance block and cushion material, which is placed at the bottom of vertical borehole. This shock-reflection device can effectively reflect the explosion shock wave from vertical direction to horizontal direction after detonation, which can make blasting energy concentrated on the rock mass above dam foundation, so the vibration in the foundation can be controlled. Field blasting experiment was carried out to contrast the blasting induced vibration in foundation rock by bench blasting with shock-reflection device and conventional bench blasting. 'I he results indicate that the vibration in the foundation rock can be reduced by 30%-57%. In addition, the vibration at the bottom of the borehole is also demonstrated by numerical simulation, with results similar to the field experiments. The production experiment results show that the new blasting technique can replace the conventional excavation method of dam foundation in complicated geological conditions, and the new blasting technique has been successfully applied to the Baihetan dam foundation excavation.
机译:在复杂的地质条件下,爆破在坝基中产生的振动会导致基础岩体进一步恶化,并对基础安全产生不利影响。为了有效地控制坝基岩体的振动,提出了一种新型的具有冲击反射装置的台阶爆破技术。它介绍了一种由高波阻抗块和缓冲材料组成的震动反射装置,该装置位于垂直井眼的底部。该减震装置能有效地将爆炸后的爆炸冲击波从垂直方向反射到水平方向,使爆破能量集中在坝基上方的岩体上,从而可以控制地基中的振动。进行了现场爆破实验,对比了采用冲击反射装置进行台式爆破与常规台式爆破在基岩中爆破引起的振动。他说:“我的结果表明,基础岩石中的振动可以减少30%-57%。此外,还通过数值模拟证明了井底的振动,其结果与现场实验相似。生产实验结果表明,在复杂的地质条件下,新的爆破技术可以代替常规的坝基开挖方法,并且该新的爆破技术已成功应用于白鹤滩大坝基础开挖中。

著录项

  • 来源
    《Shock and vibration》 |2018年第6期|8029513.1-8029513.11|共11页
  • 作者单位

    Wuhan Univ, State Key Lab Water Resources & Hydropower Engn S, Wuhan 430072, Hubei, Peoples R China;

    Wuhan Univ, Minist Educ, Key Lab Rock Mech Hydraul Struct Engn, Wuhan 430072, Hubei, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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