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The NeTTUN project: Design of a GPR antenna for a TBM

机译:NeTTUN项目:用于TBM的GPR天线设计

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The NeTTUN (New Technologies for Tunnelling and Underground Works) Project involves a consortium of 23 industrial, research & development laboratories and small and medium enterprise organizations across 9 countries in Europe; the ultimate goal is to enable groundbreaking change in the construction and maintenance of tunnels. Most existing ground prediction methods require the stopping of excavation work for several hours, which relegates them to a once per week activity. This generally far exceeds the available nominal idle time required for the construction of a ring in a segmental lined tunnel. NeTTUN aims to develop a fully automated system, that when installed on a tunnel boring machine (TBM), provides identification of large obstacles that can obstruct digging (e.g. other tunnels, cavities, boulders, foundations, archaeological remains, etc.) as well as soil changes (e.g. from gravel to fractured rock). Current methods for predicting geological variations mainly exploit seismic sources and receivers, deployed during pauses in drilling. In contrast, NeTTUN proposes the combined use of a seismic system and a ground prediction radar. The design has to fulfil two conflicting requirements of a large inspection operating range (which requires low frequency sensors) and detection of rock fractures that can be just a few centimeters in length (requiring high frequency sensors), while also dealing with the main issue of the interaction between the metallic TBM cutter head and the sensors.
机译:NeTTUN(隧道和地下工程新技术)项目由欧洲9个国家的23个工业,研究与开发实验室和中小企业组织组成的联盟;最终目标是使隧道的建设和维护发生突破性的变化。大多数现有的地面预测方法要求将挖掘工作停止几个小时,这使他们只能进行每周一次的活动。这通常远远超过了在分段衬砌隧道中建造环网所需的可用标称空闲时间。 NeTTUN的目标是开发一套全自动系统,该系统安装在隧道掘进机(TBM)上时,可以识别可能阻碍挖掘的大型障碍物(例如其他隧道,洞,巨石,地基,考古遗迹等)以及土壤变化(例如,从砾石到破裂的岩石)。当前的预测地质变化的方法主要是利用地震源和接收器,它们是在钻探暂停期间部署的。相反,NeTTUN建议将地震系统和地面预测雷达结合使用。该设计必须满足两个相互矛盾的要求,即较大的检查工作范围(需要低频传感器)和长度仅几厘米的岩石裂缝检测(需要高频传感器),同时还要解决以下主要问题:金属TBM刀盘与传感器之间的相互作用。

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