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A method for correcting field strain measurements to account for temperature effects

机译:一种校正场应变测量以解决温度影响的方法

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Measurements of deformation and strain are of critical importance for the structural health monitoring of geosynthetic reinforced soil (GRS) structures. For some commonly used wiring configurations and sensors, field strain measurements can exhibit apparent strains that are caused by changes in wire temperature or changes in gauge temperature, which do not correspond to changes in actual strain in the geosynthetic. Correcting for these effects is important for separating out real structural behavior from wiring and sensor issues, and is imperative for avoiding false trigger warnings in automated instrumentation reporting systems. The current paper consequently presents a method for correcting field strain measurements to account for temperature effects. Data collected from sensors embedded in a heavily-instrumented GRS abutment over a two-year monitoring period is presented. The distributed thermistor array embedded in the GRS abutment is shown to be particularly useful for understanding temperature effects on the measured foil strain gauge data. The presented approach and associated framework for data correction are useful for practicing engineers and other researchers, as the general concepts from this study can be applied to data collected from many instrumented geosynthetic field projects. (C) 2017 Elsevier Ltd. All rights reserved.
机译:变形和应变的测量对于土工加筋土(GRS)结构的结构健康监测至关重要。对于某些常用的布线配置和传感器,现场应变测量可能会显示出明显的应变,这些应变是由导线温度变化或仪表温度变化引起的,这与土工合成材料中实际应变的变化不对应。纠正这些影响对于将实际的结构行为与布线和传感器问题区分开来很重要,对于避免在自动化仪表报告系统中出现错误的触发警告也至关重要。因此,当前论文提出了一种校正场应变测量以解决温度影响的方法。展示了在两年的监测期内从嵌入在仪表盘重的GRS基台中的传感器收集的数据。嵌入在GRS基台中的分布式热敏电阻阵列显示出对于理解温度对所测量的箔片应变仪数据的影响特别有用。提出的方法和相关的数据校正框架对于实践工程师和其他研究人员非常有用,因为本研究的一般概念可以应用于从许多仪器化的土工合成现场项目中收集的数据。 (C)2017 Elsevier Ltd.保留所有权利。

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