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Thermal Integrity Profiling and Crosshole Sonic Logging of Drilled Shafts with Artificial Defects

机译:具有人为缺陷的钻探井的热完整性分析和井间声波测井

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Two 1.5 m (5 ft) diameter drilled shafts with lengths of 25.9 m (84.9 ft) and 23.5 m (77.0 ft) were constructed with artificial defects and tested by thermal integrity profiling (TIP) and crosshole sonic logging (CSL) methods. Prefabricated artificial defects consisting of low-strength precast concrete cylinders in the first shaft and plastic molds containing aggregates, sand, and water in the second shaft were secured to the inside of the rebar cages at two depths on each shaft. The defects constituted approximately 4% of the shaft cross-sectional area for the first shaft and 8% for the second. Both test methods clearly indicated the presence of the O-cell, while neither method strongly signaled the presence of the smaller defects. The larger defects were detected by CSL testing, and resulted in minor local temperature reductions in TIP tests. The study indicates a possible lower bound resolution of at least 8% of the shaft cross sectional area for a defect to be reliably detected by TIP.
机译:构造了两个直径分别为25.9 m(84.9 ft)和23.5 m(77.0 ft)的直径1.5 m(5 ft)的竖井,这些竖井具有人工缺陷,并通过热完整性分析(TIP)和跨孔声波测井(CSL)方法进行了测试。由第一个竖井中的低强度预制混凝土圆柱体和第二个竖井中的包含骨料,沙子和水的塑料模具组成的预制人工缺陷在每个竖井上的两个深度处固定到钢筋笼的内部。缺陷约占第一个轴的轴截面积的4%,第二个轴的轴截面积的8%。两种测试方法均清楚地表明存在O电池,而两种方法均未强烈表明存在较小的缺陷。通过CSL测试检测到较大的缺陷,并在TIP测试中导致较小的局部温度降低。研究表明,对于可能要通过TIP可靠地检测出的缺陷,可能需要至少为轴横截面面积的8%的下限分辨率。

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