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Case Studies: Use of Low Strain Transient Dynamic Response Method for Rock Socketed End Bearing Bored Piles

机译:案例研究:低应变瞬态动力响应方法在嵌岩端承钻孔桩中的应用

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The transient dynamic response (TDR) method has been introduced to pile integrity testing over several decades. The TDR method requires measuring both pile top velocity and force induced at the pile top by a small handheld hammer. Force and velocity information can be used to determine the pile condition near the top of the pile and the stiffness of pile-soil-rock system. It has been suggested by researchers that the dynamic stiffness at low frequencies obtained from the TDR method relates to the static stiffness of a pile. The static stiffness determines the initial linear region of load-displacement behavior of a particular pile. However, little attention has been paid to developing a correlation between the dynamic stiffness obtained from the TDR method and the static stiffness of a pile head. Therefore, systematic field tests were performed on rock-socketed end-bearing bored piles to determine both dynamic stiffness and static stiffness. The piles were tested using both high-strain dynamic load testing and low-strain pile integrity testing. Based on the field testing results, this paper suggests a correlation between dynamic stiffness and static stiffness. Furthermore, successful implementation of the TDR method on rock-socketed end-bearing bored piles is verified through case studies. In addition, the case studies show that dynamic stiffness and first resonant frequency could be used to identify the doubtful piles having low toe stiffness. low-strain pile integrity test; high-strain dynamic test; transient dynamic response method; pulse-echo method; frequency-domain analysis; time-domain analysis; dynamic stiffness; static stiffness; pile settlement; rock-socketed end-bearing bored piles
机译:几十年来,瞬态动态响应(TDR)方法已被引入桩完整性测试。 TDR方法需要同时测量桩顶速度和由小型手持锤在桩顶产生的力。力和速度信息可用于确定桩顶部附近的桩状况和桩-土-岩石系统的刚度。研究人员建议,从TDR方法获得的低频动态刚度与桩的静态刚度有关。静态刚度确定特定桩的荷载-位移行为的初始线性区域。但是,很少有人关注发展从TDR方法获得的动态刚度与桩头的静态刚度之间的相关性。因此,对嵌岩端承钻孔桩进行了系统的现场测试,以确定动态刚度和静态刚度。使用高应变动载荷测试和低应变桩完整性测试对桩进行了测试。根据现场测试结果,本文提出了动态刚度和静态刚度之间的相关性。此外,通过案例研究验证了TDR方法在嵌岩端承钻孔桩上的成功实施。此外,案例研究表明,动态刚度和第一共振频率可用于识别脚趾刚度低的可疑桩。低应变桩身完整性测试;高应变动态测试;瞬态动态响应法脉冲回波法频域分析时域分析;动态刚度静态刚度桩沉降嵌岩端承钻孔桩

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