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Geomatics applied to civil engineering
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Geomatics applied to civil engineering/ by Irineu da Silva, Paulo C. L. Segantine.
Author:
Silva, Irineu da.
other author:
Segantine, Paulo Cesar Lima.
Published:
Cham :Springer Nature Switzerland : : 2025.,
Description:
xvii, 1015 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
Subject:
Civil engineering - Measurement. -
Online resource:
https://doi.org/10.1007/978-3-031-75737-2
ISBN:
9783031757372
Geomatics applied to civil engineering
Silva, Irineu da.
Geomatics applied to civil engineering
[electronic resource] /by Irineu da Silva, Paulo C. L. Segantine. - Second edition. - Cham :Springer Nature Switzerland :2025. - xvii, 1015 p. :ill. (some col.), digital ;24 cm.
Introduction -- Basic concepts of Geomatics -- Geodetic and topographical reference systems -- Coordinate systems -- Coordinate transformation -- Angles and directions -- Distances in Geomatics -- Distance Measurement -- Surveying instruments -- Surveying instrument errors -- Coordinate geometry in surveying calculations -- Traversing -- Altimetry -- Relief representation -- Digital Terrain Modeling -- Universal Transverse Mercator Projection System - UTM -- Global Navigation Satellite Systems - GNSS -- Terrestrial Laser Scanning - TLS -- Aero photogrammetry -- Details surveying -- Setting out -- Area computation -- Volume computation -- Horizontal and vertical curves.
This textbook deals jointly with theoretical and practical concepts within geomatics in civil engineering, based on the global understanding of its use. Written by civil engineers with professional backgrounds in geomatics, the book has a number of unique characteristics, including analysis of geodetic references and their coordinate systems to allow their conversions and applications taking into account the local topographic plan; analysis of the measurements of directions, angles and distances, inserting them into the concepts of practical use of modern measuring instruments; detailed description of the main components of measurement instruments used in geomatics; discussion of instrumentation errors and their implications; and a complete study of UTM Projection System and its variants, equations, and practical application in civil engineering projects. For students and instructors, and practitioners, the subjects covered in the book are organized to cover most topics related to the disciplines of surveying or geomatics studied in civil engineering courses. It is entirely based on adjustment computation for spatial data analysis including coordinate geometry and traverse computation. To this end, an entire chapter is devoted to adjustment computation based on matrix theory to help readers understand its applications in spatial data analysis throughout the book's chapters; including chapters on modern technologies such as conventional and UAV-based digital photogrammetry, digital terrain modelling, terrestrial laser scanning and BIM. Presents concepts in a manner consistent with learning and practical use of modern measurement methods and technologies; Maximizes understanding of theories developed including a chapter on conventional and UAV-based digital photogrammetry; Reinforces theories presented with application examples and problems at the end of each chapter.
ISBN: 9783031757372
Standard No.: 10.1007/978-3-031-75737-2doiSubjects--Topical Terms:
1489139
Civil engineering
--Measurement.
LC Class. No.: TA153
Dewey Class. No.: 620.00151
Geomatics applied to civil engineering
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by Irineu da Silva, Paulo C. L. Segantine.
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Introduction -- Basic concepts of Geomatics -- Geodetic and topographical reference systems -- Coordinate systems -- Coordinate transformation -- Angles and directions -- Distances in Geomatics -- Distance Measurement -- Surveying instruments -- Surveying instrument errors -- Coordinate geometry in surveying calculations -- Traversing -- Altimetry -- Relief representation -- Digital Terrain Modeling -- Universal Transverse Mercator Projection System - UTM -- Global Navigation Satellite Systems - GNSS -- Terrestrial Laser Scanning - TLS -- Aero photogrammetry -- Details surveying -- Setting out -- Area computation -- Volume computation -- Horizontal and vertical curves.
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This textbook deals jointly with theoretical and practical concepts within geomatics in civil engineering, based on the global understanding of its use. Written by civil engineers with professional backgrounds in geomatics, the book has a number of unique characteristics, including analysis of geodetic references and their coordinate systems to allow their conversions and applications taking into account the local topographic plan; analysis of the measurements of directions, angles and distances, inserting them into the concepts of practical use of modern measuring instruments; detailed description of the main components of measurement instruments used in geomatics; discussion of instrumentation errors and their implications; and a complete study of UTM Projection System and its variants, equations, and practical application in civil engineering projects. For students and instructors, and practitioners, the subjects covered in the book are organized to cover most topics related to the disciplines of surveying or geomatics studied in civil engineering courses. It is entirely based on adjustment computation for spatial data analysis including coordinate geometry and traverse computation. To this end, an entire chapter is devoted to adjustment computation based on matrix theory to help readers understand its applications in spatial data analysis throughout the book's chapters; including chapters on modern technologies such as conventional and UAV-based digital photogrammetry, digital terrain modelling, terrestrial laser scanning and BIM. Presents concepts in a manner consistent with learning and practical use of modern measurement methods and technologies; Maximizes understanding of theories developed including a chapter on conventional and UAV-based digital photogrammetry; Reinforces theories presented with application examples and problems at the end of each chapter.
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