Print-ready copy — print it or save it as PDF
Back
Dubai 5 October 2026
Training Programme

Training Course in Wind Resource Assessment for Project Feasibility (Online / Remote)

1Summary

Every wind project stands or falls on a number most people never see: the measured wind resource at the site. Get that number wrong and a beautifully engineered turbine will underperform for its entire operating life — get it right, and financing, siting, and turbine choice all fall into place.

This training course by the Arab British Fellowship Training Academy focuses squarely on that measurement problem: how to collect wind data accurately, analyze it statistically, and turn it into a reliable forecast of energy production. Participants work through everything from anemometry and remote sensing to GIS mapping and reporting, building the skill set needed to judge whether a site is actually worth building on.

2Objectives and target group

Who Should Attend?

  • Energy sector professionals working in renewable energy who want to deepen their understanding of resource assessment techniques.
  • Engineering students in mechanical, civil, or environmental tracks with an interest in renewable energy technologies.
  • Policymakers and planners who need to understand how wind resource data affects project viability.

Course Objectives

By the end of the course, participants will be able to:

  • Explain the basic principles of wind energy and why accurate resource assessment matters.
  • Apply wind measurement techniques and tools to collect and analyze wind data.
  • Assess the feasibility of a wind energy project based on resource data and forecast potential energy generation.

3Course Content

Module 1: Why Wind Resource Assessment Makes or Breaks a Project

  • Wind energy as a renewable resource and its advantages in the global energy mix.
  • The role of resource assessment in project development.
  • How accurate assessment influences project success, and the risks of inadequate data.
  • The economic implications of getting resource evaluation right.

Module 2: Core Concepts and Measurement Basics

  • Basic wind terms: speed, direction, turbulence, and the wind energy equation.
  • Factors affecting wind patterns and behavior.
  • Anemometers and their role in wind measurement.
  • Types of anemometers — cup, vane, ultrasonic — and their applications.
  • Calibration and maintenance practices for accurate measurements.

Module 3: Collecting Reliable Data — Masts, Remote Sensing, and Protocols

  • Best practices for installing meteorological masts and essential data-collection equipment.
  • Measurement height and its effect on data quality.
  • Remote sensing methods — LiDAR and SODAR — and their advantages over traditional approaches.
  • Applications of remote sensing in resource assessment.
  • Consistency, duration, and quality control in data collection.

Module 4: Turning Data Into Numbers — Statistical Analysis and Production Estimates

  • Statistical tools for wind data analysis, including wind speed distribution and frequency analysis.
  • Applying the Weibull distribution for resource assessment.
  • Methods for calculating energy production potential from wind data.
  • Factoring turbine characteristics into energy yield predictions.

Module 5: Site Selection and Mapping Tools

  • Key factors influencing site selection, including geographical, environmental, and social considerations.
  • Tools for evaluating site suitability based on wind data.
  • Using GIS for spatial analysis of wind resources.
  • Mapping wind potential to identify optimal project locations.

Module 6: Regulatory Considerations and Keeping Data Honest

  • Regulatory frameworks that impact site assessment, including environmental impact assessments.
  • Engaging stakeholders and addressing community concerns.
  • Techniques for validating and verifying wind resource data.
  • Cross-comparing data from multiple sources and resolving discrepancies.

Module 7: Accounting for Change Over Time

  • The importance of long-term monitoring for reliable resource assessment.
  • Strategies for extending monitoring periods beyond initial assessments.
  • Seasonal patterns and temporal variability, and their impact on energy generation.
  • Adapting project planning to seasonal changes and using historical data for future projects.

Module 8: Advanced Modeling — Hybrid Approaches and Weather Prediction

  • Combining assessment methods, such as met masts and remote sensing, for greater reliability.
  • Practical applications of hybrid modeling in wind resource assessment.
  • Numerical weather prediction (NWP) models and their role in forecasting wind behavior.
  • Limitations and challenges of using NWP in resource assessment.

Module 9: From Data to Decisions

  • Incorporating wind resource data into project planning and aligning it with financial and technical assessments.
  • Tools for decision-making based on resource evaluation outcomes.
  • The value of interdisciplinary collaboration — engineers, environmental scientists, policy experts — in project development.
  • Strategies for communicating findings and preparing reports for stakeholders and decision-makers.

Module 10: Where the Field Is Heading

  • Innovations in wind measurement technology and data analysis.
  • The impact of big data and machine learning on resource assessment.
  • Future research directions and opportunities in wind energy.

Please enter your details to download the file

Training Course in Wind Resource Assessment for Project Feasibility (Online / Remote)