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Experimental Methods and Qualification of the Data

机译:实验方法和数据鉴定

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Extreme care was taken in the design of axial strain measuring devices, lateral total and pore pressure transducers, custom cables and connectors, and specially-stable instrument circuitry, with the result that all instruments performed perfectly over the 2.5-year period that the pile was installed.The need to discriminate small differences in axial loads along the pile at shallow depths in order to establish accurate soil reaction versus displacement (t-z) curves led to the use of static load test data for full-scale calibration of the instruments along the upper half of the embedded length. The resulting calibration data exhibited a degree of linearity better than 0.1 percent. For the instruments along the bottom half of the pile, such extreme precision in the load differences was not required to obtain an equal degree of precision in the calculated values of shear transfer.Exceptional stability was observed among the strain modules, with no discernable drift in the units over the entire 2.5-year period. Variations with time in the residual axial loads along the pile were very regular, and are related to the ongoing vertical consolidation of the upper 80 ft of sediments.Various other comparisons among the data taken with the instruments were made to verify the accuracy and reliability of the load and displacement data that were used to develop design correlations.
机译:在设计轴向应变测量设备,横向总压力和孔隙压力传感器,定制电缆和连接器以及特别稳定的仪器电路时,要格外小心,结果是所有仪器在桩基2.5年内的性能都非常好已安装。 为了区分准确的土壤反作用力与位移(tz)曲线,需要区分沿浅深度桩沿轴向载荷的细微差异,导致需要使用静态载荷测试数据对仪器上半部的满刻度进行校准。嵌入长度。所得的校准数据显示出优于0.1%的线性度。对于沿着桩的下半部分的器械,不需要在载荷差中具有这种极高的精度即可在剪切传递的计算值中获得同等的精度。 在应变模块之间观察到了出色的稳定性,在整个2.5年的时间里,各单元均未发现明显的漂移。沿桩的残余轴向载荷随时间的变化非常规则,并且与上部80英尺沉积物的持续垂直固结有关。 使用仪器获取的数据之间进行了各种其他比较,以验证用于建立设计相关性的载荷和位移数据的准确性和可靠性。

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