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首页> 外文期刊>Geotechnical testing journal >Evaluation of Soft Clay Field Consolidation Using MEMS-Based In-Place Inclinometer-Accelerometer Array
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Evaluation of Soft Clay Field Consolidation Using MEMS-Based In-Place Inclinometer-Accelerometer Array

机译:使用基于MEMS的原位倾角计-加速度计阵列评估软土场固结

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The objectives of this study are: (1) to compare data recorded with a recently developed inplace inclinometer-accelerometer system to data measured with other established instrumentation through full-scale laminar box tests and field test sites, and (2) to evaluate possible causes for discrepancies between the measured and theoretical soil settlement at a bridge replacement site on soft clay. The performance of the three-dimensional (3D) microelectro-mechanical systems (MEMS)-based in-place inclinometer-accelerometer array is evaluated for monitoring the settlement and lateral spreading of a very soft, 30-m-deep clay deposit at a New York State Department of Transportation (NYSDOT) bridge realignment site. Brief design details are given of the developed instrumentation system, which utilizes MEMS devices to measure angles relative to gravity, in addition to signals proportional to acceleration. The estimated theoretical accuracy of the system-displacement measurement is assessed empirically using thousands of datasets from several long-term field installations. This new instrumentation system was also included in a full-scale laminar box test of a sloping saturated fine sand deposit. This full-scale test provides a means of evaluating measured acceleration data. In all cases, data recorded with the developed inplace inclinometer-accelerometer system is compared to data measured with state-of-thepractice instrumentation. These comparisons were extremely favorable and justified the future use of this instrumentation for many geotechnical applications. This study also includes an evaluation of commercially available geotechnical software settlement predictions as compared to measured data at the NYSDOT bridge realignment site. The results of this study indicate that the effectiveness of the prefabricated vertical drains (PVDs) is not constant throughout the monitoring period and that the changes in effectiveness cannot be captured in commercial software using a constant c(h).
机译:这项研究的目的是:(1)将通过最新开发的就地测斜仪-加速度计系统记录的数据与通过大型层流箱测试和现场测试现场用其他已建立的仪器测量的数据进行比较,以及(2)评估可能的原因在软黏土上的桥梁置换点的实测土壤沉降与理论土壤沉降之间的差异。对基于三维(3D)微机电系统(MEMS)的就地测斜仪-加速度计阵列的性能进行了评估,以监控新油田中非常软,深30 m的粘土沉积物的沉降和横向扩散约克州运输部(NYSDOT)桥重整站点。简要介绍了已开发的仪器系统的设计细节,该仪器系统除了利用与加速度成比例的信号外,还利用MEMS器件来测量相对于重力的角度。系统位移测量的估计理论精度是使用来自几个长期现场安装的数千个数据集凭经验进行评估的。这种新的仪器系统也包括在对倾斜的饱和细砂沉积物进行的全面层流箱测试中。此全面测试提供了一种评估测得的加速度数据的方法。在所有情况下,都将使用已开发的就地测斜仪-加速度计系统记录的数据与使用实际状态仪器测得的数据进行比较。这些比较是非常有利的,并证明了该仪器将来在许多岩土工程中的使用是合理的。这项研究还包括对商业上可用的岩土软件沉降预测的评估,以及与NYSDOT桥校对现场的测量数据的比较。这项研究的结果表明,预制垂直排水管(PVD)的有效性在整个监测期内不是恒定的,有效性的变化无法在商用软件中使用常数c(h)来捕获。

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