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Modeling of an obstacle detection sensor for horizontal directional drilling (HDD) operations

机译:用于水平定向钻井(HDD)操作的障碍物检测传感器的建模

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Horizontal Directional Drilling (HDD) is a commonly used construction method for the installation of underground pipelines, conduits and cables in urban areas and across obstacles such as rivers, railways and highways. A key concern in using the HDD method is the risk of hitting existing buried utilities during the pilot boring operation, which could potentially result in significant economic losses, disruption of services and injuries and/or loss of life. The Differential Impedance Obstacle Detection (DIOD) is a "look-ahead" sensory system, developed for the purpose of detecting metallic and thermoplastic pipes in the path of the boring head. The DIOD sensor was numerically simulated, and the model was validated by comparing its predictions with experimental measurements performed on a physical prototype in a controlled environment. Following validation of the model, a parametric study was undertaken to predict the performance of the DIOD under various scenarios that could be encountered in practice.
机译:水平定向钻探(HDD)是在城市地区以及穿越诸如河流,铁路和公路等障碍物的地下管线,管道和电缆安装中常用的施工方法。使用HDD方法的一个关键问题是在试验钻孔操作过程中碰到现有的地下公用设施的风险,这可能会导致重大的经济损失,服务和伤害中断和/或生命损失。差分阻抗障碍检测(DIOD)是一种“超前”传感系统,其开发目的是检测镗头路径中的金属和热塑性管道。对DIOD传感器进行了数值模拟,并通过将其预测值与在受控环境中对物理原型进行的实验测量值进行比较来验证该模型。在模型验证之后,进行了参数研究来预测DIOD在实际中可能遇到的各种情况下的性能。

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