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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Load Transfer Curve Analyses of Drilled Shafts Using Crosshole Sonic Logging Test
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Load Transfer Curve Analyses of Drilled Shafts Using Crosshole Sonic Logging Test

机译:井筒声波测井试验分析井壁荷载传递曲线

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摘要

The erroneous load transfer curve calculated using the nominal cross-sectional area (AC) and elastic modulus of a concrete specimen (ECU) was modified by considering the nonuniform cross-sectional area (ACR) and nonhomogeneous elastic modulus (ECV) of concrete. A drilled shaft instrumented with strain gauges and pipes for a crosshole sonic logging (CSL) test was constructed as the test pile. To estimate ACR, the incremental volume of the placed concrete was recorded. After curing the concrete, the CSL test was performed to estimate ECV based on the compressional wave (P-wave) velocity. In addition, a bidirectional load test was conducted, and the load transfer curve was calculated. The results of the analyses demonstrated that although the erroneous load transfer curve was partially modified by considering either ACR or ECV individually, the modification was enhanced further by adopting both ACR and ECV. This study demonstrates that the estimation of ACR and ECV may be used to calculate reasonable load transfer curves for drilled shafts.
机译:考虑到混凝土的不均匀横截面面积(ACR)和不均匀弹性模量(ECV),修改了使用标称横截面面积(AC)和混凝土试样(ECU)的弹性模量计算出的错误荷载传递曲线。将装有应变计和管道的钻孔井作为测试桩,该井用于进行跨孔声波测井(CSL)测试。为了估算ACR,记录了浇筑混凝土的增量体积。养护混凝土后,进行CSL试验以根据压缩波(P波)速度估算ECV。另外,进行双向载荷测试,并计算载荷传递曲线。分析结果表明,尽管通过分别考虑ACR或ECV可以部分修改错误的荷载传递曲线,但同时采用ACR和ECV可以进一步增强修改效果。这项研究表明,ACR和ECV的估算可用于计算钻杆的合理载荷传递曲线。

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