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Sonic drilling offers quality control and non-destructive advantages to sensitive infrastructure sites

机译:Sonic Drilling提供质量控制和敏感基础设施网站的不破坏性优势

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The use of conventional, circulatory air rotary and fluid rotary, cased and uncased drilling methods in the vicinity of sensitive infrastructure can have deleterious effects on the ground conditions surrounding and supporting structures and on the structure itself. Also, using these conventional methods provides little information about the condition of the subsurface during geotechnical applications. Sonic drilling measurements and samples can be used to evaluate actual conditions. This paper discusses the properties of sonic drilling and explores case histories of geotechnical applications for the advancement of boreholes within vulnerable structures and on sensitive sites for several recent infrastructure projects - a tunnel and railroad project, a dam grout curtain project, a bridge micropile exploration project and a tunnel instrumentation project. Cases will discuss the advantages realized when applying sonic drilling techniques demonstrated superior accuracy, quality control, efficiency, productivity, penetrability, waste minimization and adaptability when drilling adjacent to or within existing infrastructure.
机译:在敏感基础设施附近使用常规,循环空气旋转和流体旋转,套管和未应用的钻孔方法可以对周围的地面条件和支撑结构和结构本身具有有害影响。此外,使用这些传统方法提供了关于岩土应用期间地下表面的条件的信息。 Sonic钻孔测量和样品可用于评估实际情况。本文讨论了Sonic钻探的性质,探讨了岩土学应用的岩土学应用案例历史,以便在脆弱的结构内和几个基础设施项目中的敏感网站 - 隧道和铁路工程,一个桥微疏远项目,桥梁微疏远项目和隧道仪器项目。案例将讨论应用声波钻井技术时所熟悉的精度,质量控制,效率,生产率,渗透性,废物最小化和适应性在现有基础设施内或内部钻探时所示的优势。

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