Title :
A borehole radar prototype: Development and testing
Author :
Sixin Liu ; Junjun Wu ; Lei Fu ; Fei Wang ; Hang Dong
Author_Institution :
Coll. of Geo-exploration Sci. & Technol., Jilin Univ., Changchun, China
Abstract :
A prototype of borehole radar has been successfully tested in three sites for different purposes under a field condition. The objective of the prototype is for providing an effective downhole tool for detecting targets in deep boreholes situated in a relatively high conductivity area such as the metal ores. The first testing site is at a geothermal field. The fractures extended more than 20 m from the borehole are delineated by the borehole radar in single-hole reflection mode. The second testing site is located in a jade mine for basement evaluation. The cross-hole measurement mode was used to detect the cavities made by previous unorganized mining activities. Several high-velocity anomalies were found in the velocity profile and presumably the targets of the mine shafts and tunnels. The third test site is located in a mineralized belt characterized by low resistivity less than 1000 Ohm. m, the surface-borehole measurement was carried out, and the data was processed with velocity tomography. The low-velocity zone is corresponding to a mineralized zone from geological records. The three testing results proved the readiness of this borehole radar prototype for further deployment in more complicated and realistic field situations.
Keywords :
drilling (geotechnical); geophysical equipment; geophysical techniques; geothermal power stations; minerals; remote sensing by radar; rock magnetism; terrestrial electricity; basement evaluation; borehole radar prototype; crosshole measurement mode; deep boreholes; downhole tool; geothermal field; high conductivity area; jade mine; metal ores; mineralized belt; mining activities; single hole reflection mode; surface-borehole measurement; target detection; velocity tomography; Geologic measurements; Ground penetrating radar; Optical reflection; Optical sensors; Optical transmitters; borehole radar; cross-hole measurement; prototype; single-hole reflection; velocity tomography;
Conference_Titel :
Ground Penetrating Radar (GPR), 2012 14th International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-4673-2662-9
DOI :
10.1109/ICGPR.2012.6254986