钻孔联合冲击重锤作用下岩体损伤规律研究*
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长江重庆航道工程局科技项目(cqjt-2021-204)


Damage evolution of rock mass under action of drilling combined impact hammer
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    摘要:

    重锤冲击凿岩是解决生态受限条件下水下清礁任务的常用方法,为提高无临空面礁石的破碎效率,提出钻孔联合冲击锤的水下冲击锤凿岩技术。通过水下钻孔-冲击锤破礁现场试验,考虑冲击锤在水中运动的水阻力效应和缆绳拉阻效应,建立钻孔影响下的冲击锤碰撞侵彻模型,结合钻孔-冲击锤破礁的3DEC数值仿真,分析钻孔作用下冲击锤重复冲击礁石的损伤演化规律。结果表明,钻孔对提高水下冲击锤侵彻深度的影响不明显,但10 m以下低落距时可明显提高礁石的破碎深度和宽度,清礁工效可提升183%;冲击锤落距和钻孔深度是重锤破礁效率的主要控制因素。钻孔-冲击锤联合作用下5次冲击后的破碎体积约为第1次的103.24倍。钻孔和多次冲击均能有效提高冲击锤清礁的效率,且钻孔还能进一步提升多次冲击下的冲击锤破礁效率。研究成果可为水下环保清礁的参数设计和现场施工提供借鉴。

    Abstract:

    Percussion hammer drilling is a common method to solve the underwater reef-clearing task under ecological constraints.To improve the crushing efficiency of the reef without a free surface,this paper put forward the underwater shock hammer drilling technology combining drilling with impact hammers.Through the underwater drilling and impact hammer reef breaking field test,considering the water resistance effect of impact hammer movement in water and the cable drag effect,the impact hammer collision and penetration model under the influence of drilling is established.Combined with the 3DEC numerical simulation of drilling and impact hammer reef breaking,the damage evolution law of repeated impact of the hammer on the reef under the action of drilling is analyzed.The results show that drilling has no obvious effect on increasing the penetration depth of the underwater impact hammer,but the breaking depth and width of the reef can be significantly improved when the drop distance is below 10 m,and the reef cleaning efficiency can be increased by 183%.Hammer drop distance and drilling depth are the main controlling factors of reef-breaking efficiency.Under the combined action of drilling and impact hammer,the crushing volume after 5 shocks is about 103.24 times that of the first impact.Both drilling and multiple shocks can effectively improve the reef-clearing efficiency of the hammer,and drilling can further improve the reef-breaking efficiency of the hammer under multiple shocks.The research results can provide a reference for parameter design and site construction of underwater environmental protection reef clearing.

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陈霓锐,阿比尔的,谭 松,等.钻孔联合冲击重锤作用下岩体损伤规律研究*[J].水运工程,2025(7):207-214.

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  • 在线发布日期: 2025-07-15
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