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course | Geospatial Applications in Civil Engineering

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CEC-792 | Geospatial Applications in Civil Engineering

Course Sector : Civil Engineering

Duration
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Date to Course Venue Course fees Book a course
5 Days2025-06-302025-07-04Los Angeles$5,950 Book now
5 Days2025-09-292025-10-03Dubai$4,250 Book now
5 Days2025-11-242025-11-28Abu Dhabi$4,250 Book now

Course Introduction

 

Geospatial Technologies 

Geospatial technologies are transforming the field of civil engineering by providing innovative tools for planning, design, construction, and maintenance. The integration of Geographic Information Systems (GIS), Remote Sensing (RS), and Global Navigation Satellite Systems (GNSS) enables civil engineers to analyze spatial data, optimize infrastructure projects, and enhance decision-making.

This course introduces the concepts, tools, and applications of geospatial technologies in civil engineering. Participants will explore how geospatial data can be used to address challenges in urban planning, transportation, water resources, and environmental management. Practical exercises and case studies will equip participants with the skills needed to apply geospatial techniques effectively in real-world civil engineering projects.


Course objective

  •          Understand the core concepts and principles of geospatial technologies in civil engineering.
  •         Learn to use GIS, remote sensing, and GNSS for infrastructure planning and management.
  •         Analyze spatial data to support decision-making in civil engineering projects.
  •         Apply geospatial tools for specific civil engineering domains, such as transportation, urban planning, and environmental management.
  •         Integrate geospatial technologies with other engineering tools for efficient project execution.
  •         Explore case studies to understand the practical applications and benefits of geospatial techniques in civil engineering.

Course Outline | DAY 01

Fundamentals of Geospatial Technologies

 

  •         Introduction to geospatial technologies: GIS, RS, and GNSS
  •         Importance of geospatial data in civil engineering
  •         Types of geospatial data: Raster and vector

 

        Geospatial data acquisition methods:

 

  •    Satellite imagery
  •    Aerial surveys
  •    Ground-based sensors

 

        Overview of geospatial software tools (e.g., ArcGIS, QGIS, Google Earth Pro)

Course Outline | Day 02

GIS Applications in Civil Engineering

 

  •         Basics of GIS: Layers, spatial analysis, and data visualization

 

        GIS applications in:

 

  •    Urban planning and zoning
  •    Transportation and traffic management
  •    Land use and land cover analysis
  •    Spatial database management and attribute data integration
  •    Practical session: Creating maps and performing spatial analysis using GIS

Course Outline | Day 03

Remote Sensing Applications in Civil Engineering

 

  •         Introduction to remote sensing: Principles and platforms

 

        Remote sensing applications in:

 

  •    Environmental monitoring and assessment
  •    Flood and disaster management
  •    Soil and vegetation analysis
  •    Image classification
  •    Change detection

 

        Image processing techniques:

 

  •         Practical session: Interpreting and analyzing satellite imagery for engineering purposes

Course Outline | Day 04

GNSS and Integration of Geospatial Data

 

  •        Overview of GNSS: GPS, GLONASS, Galileo, and BeiDou


       GNSS applications in civil engineering:

 
  •    Surveying and mapping
  •    Monitoring construction activities
  •    Real-time positioning for transportation systems
  •    Integration of GIS, RS, and GNSS for comprehensive geospatial analysis
  •    Practical session: Using GNSS data in GIS and remote sensing workflows

Course Outline | Day 05

     Advanced Applications and Case Studies

  •    Advanced geospatial applications
  •    Smart city development
  •    Infrastructure lifecycle management
  •    Climate change impact assessment


        Emerging technologies:

 
  •    Drones for geospatial data collection
  •    Artificial Intelligence (AI) in geospatial analysis
  •   Case studies:
  •   Successful geospatial applications in civil engineering projects
  •    Challenges and solutions in using geospatial technologies
  •     Final project: Develop a geospatial solution for a real-world civil engineering problem
  •     Course review and participant feedback
Course Certificates
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BOOST’s Professional Attendance Certificate “BPAC”

BPAC is always given to the delegates after completing the training course,and depends on their attendance of the program at a rate of no less than 80%,besides their active participation and engagement during the program sessions.

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