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Civil Engineering Applications of Ground Penetrating Radar (Hardcover, 2015 ed.): Andrea Benedetto, Lara Pajewski Civil Engineering Applications of Ground Penetrating Radar (Hardcover, 2015 ed.)
Andrea Benedetto, Lara Pajewski
R4,787 Discovery Miles 47 870 Ships in 10 - 15 working days

This book, based on Transport and Urban Development COST Action TU1208, presents the most advanced applications of ground penetrating radar (GPR) in a civil engineering context, with documentation of instrumentation, methods and results. It explains clearly how GPR can be employed for the surveying of critical transport infrastructure, such as roads, pavements, bridges and tunnels and for the sensing and mapping of underground utilities and voids. Detailed attention is also devoted to use of GPR in the inspection of geological structures and of construction materials and structures, including reinforced concrete, steel reinforcing bars and pre/post-tensioned stressing ducts. Advanced methods for solution of electromagnetic scattering problems and new data processing techniques are also presented. Readers will come to appreciate that GPR is a safe, advanced, non destructive and noninvasive imaging technique that can be effectively used for the inspection of composite structures and the performance of diagnostics relevant to the entire life cycle of civil engineering works.

Civil Engineering Applications of Ground Penetrating Radar (Paperback, Softcover reprint of the original 1st ed. 2015): Andrea... Civil Engineering Applications of Ground Penetrating Radar (Paperback, Softcover reprint of the original 1st ed. 2015)
Andrea Benedetto, Lara Pajewski
R4,989 Discovery Miles 49 890 Ships in 18 - 22 working days

This book, based on Transport and Urban Development COST Action TU1208, presents the most advanced applications of ground penetrating radar (GPR) in a civil engineering context, with documentation of instrumentation, methods and results. It explains clearly how GPR can be employed for the surveying of critical transport infrastructure, such as roads, pavements, bridges and tunnels and for the sensing and mapping of underground utilities and voids. Detailed attention is also devoted to use of GPR in the inspection of geological structures and of construction materials and structures, including reinforced concrete, steel reinforcing bars and pre/post-tensioned stressing ducts. Advanced methods for solution of electromagnetic scattering problems and new data processing techniques are also presented. Readers will come to appreciate that GPR is a safe, advanced, non destructive and noninvasive imaging technique that can be effectively used for the inspection of composite structures and the performance of diagnostics relevant to the entire life cycle of civil engineering works.

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