Capabilities of auxiliary techniques for low strain impact testing of piles foundations

A. Churkin
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引用次数: 1

Abstract

Introduction. An increase in the complexity of tasks arising from the quality control of geotechnical structures ultimately increases the role of indirect methods as part of the survey set. Low strain impact testing of piles length and integrity is currently one of the most common non-destructive geophysical methods used in the state diagnostics of foundations. The capabilities and limitations of the method are associated with the peculiarities of its basic theoretical model describing the propagation of elastic waves in a thin rod. In this regard, specialists often have recourse to the auxiliary techniques of field research.Aim. To inform test engineers, designers and employees of supervisory organizations about the potential of auxiliary methods for the low strain impact quality control of pile foundations.Methods and materials. The features of the theoretical model of the low strain impact pile quality control, as well as the associated capabilities and limitations of the method are described. The auxiliary methods of data collection and analysis were used for the survey of pile foundations, including those in the composition of existing structures.Results. The results of the work are represented by additional information obtained about the foundations surveyed using the auxiliary methods of data collection and analysis. An alternative arrangement of sensors relative to the surveyed structure was used for determining the depth of piles in the composition of grade beam footings and existing structures. The common shot point profiling (ultra-seismic method) was used to assess the velocity of rod wave propagation in the body of the structure. The options of data presentation in the parallel seismic method were used to demonstrate its potential for the quality control of foundation concrete.Conclusion. The auxiliary methods of data collection and analysis used in the low strain impact survey of pile foundations can significantly increase the reliability of conclusions about the depth and integrity of a structural material.
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桩基低应变冲击试验的辅助技术能力
介绍。土工结构质量控制任务的复杂性增加,最终增加了间接方法作为调查集合的一部分的作用。桩长完整性低应变冲击检测是目前基础状态诊断中最常用的无损地球物理检测方法之一。该方法的能力和局限性与其描述弹性波在细杆中传播的基本理论模型的特殊性有关。在这方面,专家经常求助于实地研究的辅助技术。告知测试工程师、设计人员和监理机构的工作人员桩基低应变冲击质量控制辅助方法的潜力。方法和材料。介绍了低应变冲击桩质量控制理论模型的特点,以及该方法的相关能力和局限性。采用数据收集和分析的辅助方法对桩基进行调查,包括对既有结构组成进行调查。工作结果是通过使用数据收集和分析的辅助方法获得的关于调查基础的附加信息来表示的。相对于被测结构的传感器的另一种安排被用于确定等级梁基础和现有结构组成中的桩的深度。采用共炮点剖面法(超震法)对杆波在结构体中的传播速度进行了评估。采用平行地震法的数据表示方式,以证明其在基础混凝土质量控制方面的潜力。在桩基低应变冲击测量中采用的辅助数据采集和分析方法,可以显著提高结构材料深度和完整性结论的可靠性。
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