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Titlebook: Civil Engineering Applications of Ground Penetrating Radar; Andrea Benedetto,Lara Pajewski Book 2015 The Editor(s) (if applicable) and The

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书目名称Civil Engineering Applications of Ground Penetrating Radar
编辑Andrea Benedetto,Lara Pajewski
视频video
概述Describes the most up-to-date applications of ground penetrating radar in civil engineering.Enables the reader to gain knowledge quickly and to apply it to specific sectors.Identifies the limits and p
丛书名称Springer Transactions in Civil and Environmental Engineering
图书封面Titlebook: Civil Engineering Applications of Ground Penetrating Radar;  Andrea Benedetto,Lara Pajewski Book 2015 The Editor(s) (if applicable) and The
描述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.
出版日期Book 2015
关键词COST Action TU1208; Cultural Heritage Diagnostics; Data Processing Techniques; Electromagnetic Waves; Gr
版次1
doihttps://doi.org/10.1007/978-3-319-04813-0
isbn_softcover978-3-319-38245-6
isbn_ebook978-3-319-04813-0Series ISSN 2363-7633 Series E-ISSN 2363-7641
issn_series 2363-7633
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
The information of publication is updating

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Inspection Procedures for Effective GPR Surveying of Buildingsaboratory tests under controlled conditions and numerous cases studies are representative works in this field of knowledge. Some applications are focused on rebar detection, on concrete building assessment, and in modern masonry structures. However, the majority of the works are focused on cultural
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Determination, by Using GPR, of the Volumetric Water Content in Structures, Substructures, Foundatio The main weaknesses of subsurface moisture sensing techniques are usually related both to the lack of cost-effectiveness of measurements, and to unsuitable support scales with respect to the extension of the surface to be investigated. In this regard, ground-penetrating radar (GPR) is an increasing
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Methods for the Electromagnetic Forward Scattering by Buried Objectsesponses. Time-domain methods, as Finite-Difference Time Domain or space-time integral equations, are well established tools in the modeling impulse Ground Penetrating Radar systems. Integral equation methods, when solved with Method of Moments discretization, lead to dense linear system. Therefore,
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Development of Intrinsic Models for Describing Near-Field Antenna Effects, Including Antenna-Medium or Finite-Difference Time-Domain (FDTD) modeling approaches. Yet, numerical methods are computationally expensive and accurate reproduction of real measurements has remained a major challenge for many years. Recently, intrinsic modeling approaches, through which radar antennas are effectively descr
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GPR Imaging Via Qualitative and Quantitative Approachesof view, it requires to solve an inverse scattering problem, where a set of parameters describing the underground scenario must be retrieved starting from samples of the measured electromagnetic field. In this chapter, an overview of different methods/algorithms for quantitative and qualitative buri
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