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A Theoretical Model to Predict Both Horizontal Displacement and Vertical Displacement for Electromagnetic Induction-Based Deep Displacement Sensors

机译:基于电磁感应的深位移传感器预测水平位移和垂直位移的理论模型

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摘要

Deep displacement observation is one basic means of landslide dynamic study and early warning monitoring and a key part of engineering geological investigation. In our previous work, we proposed a novel electromagnetic induction-based deep displacement sensor (I-type) to predict deep horizontal displacement and a theoretical model called equation-based equivalent loop approach (EELA) to describe its sensing characters. However in many landslide and related geological engineering cases, both horizontal displacement and vertical displacement vary apparently and dynamically so both may require monitoring. In this study, a II-type deep displacement sensor is designed by revising our I-type sensor to simultaneously monitor the deep horizontal displacement and vertical displacement variations at different depths within a sliding mass. Meanwhile, a new theoretical modeling called the numerical integration-based equivalent loop approach (>NIELA) has been proposed to quantitatively depict II-type sensors’ mutual inductance properties with respect to predicted horizontal displacements and vertical displacements. After detailed examinations and comparative studies between measured mutual inductance voltage, >NIELA-based mutual inductance and EELA-based mutual inductance, >NIELA has verified to be an effective and quite accurate analytic model for characterization of II-type sensors. The >NIELA model is widely applicable for II-type sensors’ monitoring on all kinds of landslides and other related geohazards with satisfactory estimation accuracy and calculation efficiency.
机译:深层位移观测是滑坡动态研究和预警监测的基本手段之一,也是工程地质调查的关键部分。在我们之前的工作中,我们提出了一种新颖的基于电磁感应的深位移传感器(I型)来预测水平位移,并提出了一种基于方程的等效环法(EELA)来描述其感测特性的理论模型。但是,在许多滑坡和相关的地质工程案例中,水平位移和垂直位移都明显且动态地变化,因此都可能需要监控。在这项研究中,通过修改我们的I型传感器来设计II型深位移传感器,以同时监视滑动质量内不同深度的深水平位移和垂直位移变化。同时,已经提出了一种新的理论模型,称为基于数值积分的等效环路方法(> NIELA ),以定量描述II型传感器相对于预测的水平位移和垂直位移的互感特性。通过对测得的互感电压,基于> NIELA 的互感和基于EELA的互感进行详细的检查和比较研究,已证明> NIELA 是一种有效且非常准确的分析模型用于表征II型传感器。 > NIELA 模型具有令人满意的估算精度和计算效率,可广泛用于II型传感器对各种滑坡和其他相关地质灾害的监测。

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