Title :
Pipe condition assessments using Pipe Penetrating Radar
Author :
Ékes, Csaba ; Neducza, Boriszlav
Author_Institution :
Sewer VUE Technol. Corp., Burnaby, BC, Canada
Abstract :
This paper describes the development of Pipe Penetrating Radar (PPR), the underground in-pipe application of GPR, a non-destructive testing method that can detect defects and cavities within and outside mainline diameter (>;18 in/450mm) non-metallic (concrete, PVC, HDPE, etc.) underground pipes. The method uses two or more high frequency GPR antennae carried by a robot into underground pipes. The radar data are transmitted to the surface via fibre optic cable and are recorded together with the output from CCTV (and optionally sonar and laser). Proprietary software analyzes the data and pinpoints defects or cavities within and outside the pipe. Thus the testing can identify existing pipe and pipe bedding symptoms that can be addressed to prevent catastrophic failure due to sinkhole development and can provide useful information about the remaining service life of the pipe, enabling accurate predictability of needed intervention or the timing of replacement. This reliable non-destructive testing method significantly impacts subsurface infrastructure condition based asset management by supplying previously unattainable measurable conditions.
Keywords :
condition monitoring; failure analysis; ground penetrating radar; nondestructive testing; optical cables; pipelines; pipes; radar antennas; remaining life assessment; service robots; voids (solid); CCTV; GPR antennas; HDPE; PVC; catastrophic failure prevention; cavities; concrete; defect detection; fibre optic cables; ground penetrating radar; nondestructive testing method; pipe bedding symptoms; pipe condition assessments; pipe penetrating radar; pipe remaining service life; proprietary software; sinkhole development; subsurface infrastructure condition based asset management; underground in-pipe application; underground pipe robots; Clocks; Ground penetrating radar; Inspection; Laser radar; Pipelines; Robots; asset management; concrete deterioration; ground penetrating radar (GPR); municipal engineering; pipe inspection; pipe penetrating radar (PPR);
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.2012.6254979