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首页> 外文期刊>Australian Geomechanics >OVERVIEW OF THE ROLE OF TESTING AND MONITORING IN THE VERIFICATION OF DRIVEN PILE FOUNDATIONS
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OVERVIEW OF THE ROLE OF TESTING AND MONITORING IN THE VERIFICATION OF DRIVEN PILE FOUNDATIONS

机译:测试和监视在驱动桩基础验证中的作用概述

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Static pile load tests have traditionally been considered the gold standard test and, if well executed, provide the reference load-movement response of the pile. Setting aside any difficulties with proper execution of static pile load tests, their primary deficiency is in the statistically insignificant rates at which they are undertaken - typically 0.5% to 2.0%. Furthermore, static pile load tests cannot be directly related to installation parameters and are therefore not well suited to development of driven pile acceptance criteria. If well executed, dynamic pile tests provide a rapid and generally reasonable estimate of pile load-movement response. The primary issue is that the static response is inferred from a dynamic response using simplistic models of complex dynamic pile-soil behaviour. However the advantages of dynamic testing are that it is generally performed on a statistically meaningful sample size - 5% to 15% in many cases -and it is concurrent with installation, which allows dynamic testing to be the basis for construction control and development of pile acceptance criteria. The remaining 85% to 95% of piles are necessarily installed using simple set criteria, or dynamic formula approaches which of themselves have significant deficiencies and represent project risk. Given that the foundation system will only be as good as the pile installed with the least confidence, improvements in foundation quality will be most effectively achieved by improvements in the monitoring and assessment of untested piles. This paper discusses a state-of-the art approach to reduction of overall foundation risk.
机译:传统上,静态桩载荷测试被视为黄金标准测试,并且如果执行得当,可以提供桩的参考载荷-运动响应。除了适当执行静态桩荷载测试的任何困难外,它们的主要缺陷在于进行统计时统计上无关紧要的比率-通常为0.5%至2.0%。此外,静力桩载荷测试不能直接与安装参数相关,因此不能很好地适合于打入桩的验收标准。如果执行得当,动态桩测试将提供对桩荷载运动响应的快速且通常合理的估计。主要问题是,静态响应是使用复杂的动态桩-土行为的简化模型从动态响应推导出来的。但是,动态测试的优势在于,通常在具有统计意义的样本量上进行测试-在许多情况下为5%到15%-并且与安装同时进行,这使动态测试成为桩体控制和开发的基础验收标准。其余85%到95%的桩必须使用简单的设置标准或动态公式方法进行安装,而这些方法本身就有很大的缺陷并存在项目风险。考虑到基础系统的可靠性仅与安装时信心最小的桩一样,通过改进未测试桩的监视和评估,可以最有效地实现基础质量的提高。本文讨论了降低总体基础风险的最新方法。

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