Field Validation of a Magnetic Sensor to Monitor Borehole Deviation during Tunnel Excavation.

Materials (Basel)

Holcombe Department of Electrical and Computer Engineering, Clemson University, Clemson, SC 29634, USA.

Published: August 2018

AI Article Synopsis

  • A new magnetic sensor is designed to track borehole deviation during tunnel excavation by using four strong N42 NdFeB magnets enclosed in an aluminum cylinder.
  • The sensor's magnetic field interacts with the Earth's geomagnetic field, and an algorithm is created to accurately determine the sensor's position, with the range of monitoring affected by geomagnetic variations.
  • Field tests conducted at a hydroelectric power station in China show that this sensor can detect borehole deviations with an error margin of about 0.5 meters, mainly due to coordinate measurement errors.

Article Abstract

In this article, a magnetic sensor is proposed to monitor borehole deviation during tunnel excavation. It is made by piling four super-strong N42 NdFeB cylinder magnets and then encasing them in an aluminum alloy hollow cylinder. The distribution of the magnetic field produced by the magnetic sensor and its summation with the geomagnetic field (GMF) in a global coordinate system are derived based on the theory of magnetic fields. An algorithm is developed to localize the position of the magnetic sensor. The effect of the GMF variation on the effective monitoring range of the magnetic sensor is also studied numerically. Field validation tests are conducted at Jinzhai Pumped-Storage hydroelectric power station, during the excavation of an inclined tunnel in Anhui Province of China. Test results show that the algorithm and the magnetic sensor are used successfully to detect the deviation of the borehole with an estimated error of approximately 0.5 m. The errors are mainly from the measurement errors of the coordinates, of both the test and the measurement points. The effective monitoring range of the magnetic sensor is dependent on the direction of the magnetic sensor as well as the variation of the GMF.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6163178PMC
http://dx.doi.org/10.3390/ma11091511DOI Listing

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