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Windpro Training

4.2

WindPRO Training gives wind energy professionals the technical depth to execute every stage of a wind farm analysis — from terrain modeling and flow calculations to energy yield and regulatory impact assessments. You'll work through real project workflows using WindPRO's full module suite and produce bankable, audit-ready results.

Dedika for students

What your team will master:

This course covers the complete WindPRO workflow from initial project setup through advanced layout optimization. You will learn to manage wind resource data, build terrain and roughness models, and run WAsP and CFD flow calculations. The course walks through gross and net AEP estimation using the PARK module, including wake loss modeling and uncertainty quantification for P50, P75, and P90 outputs. You will also perform noise propagation and shadow flicker assessments formatted for regulatory submission. By the end, you will be equipped to deliver technically rigorous, investor-grade wind energy analyses.

How your team learns in practice Windpro Training

How your team practices Windpro Training

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Course Content

8 Chapters • 37 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Introduction to WindPRO Software

  • Lesson 1 • Project Setup and Configuration

    Guides users through creating a new project file, setting coordinate systems, and defining project metadata. Correct setup prevents downstream calculation errors.

  • Lesson 2 • License Modules and Help Resources

    Describes available license modules and how to access built-in documentation and online support. Students learn to identify which modules are active in their installation.

  • Lesson 3 • WindPRO Interface Overview

    Covers the main workspace layout, toolbars, and menu structure. Establishes spatial awareness of the software before any data entry begins.

  • Lesson 4 • Object Types and Data Layers

    Introduces WindPRO's object-based data model, including WTG, met mast, and line objects. Understanding object types is prerequisite to all subsequent module work.

  • Lesson 5 • Map and Background Data Import

    Explains how to load raster and vector background maps into the project canvas. Accurate base maps are essential for turbine placement and terrain analysis.

Chapter 2See details

Wind Resource Data Management

  • Lesson 1 • Data Quality Screening

    Applies filtering rules to detect and flag erroneous measurements such as icing, sensor failures, and calm periods. Clean data is the foundation of reliable wind resource assessment.

  • Lesson 2 • Wind Rose and Frequency Analysis

    Generates wind roses and Weibull frequency distributions from cleaned datasets. These outputs characterize the site wind climate for energy modeling.

  • Lesson 3 • Time-Series Data Import

    Explains importing raw time-series wind data from standard file formats into WindPRO. Students map columns to channels and verify import integrity.

  • Lesson 4 • Met Mast Object Configuration

    Covers placing and configuring met mast objects with correct sensor heights and measurement types. Proper configuration ensures accurate data linkage in energy calculations.

  • Lesson 5 • Long-Term Correction Methods

    Introduces measure-correlate-predict techniques to extend short measurement records to long-term averages. Students apply MCP using reference datasets within WindPRO.

Chapter 3See details

Terrain and Roughness Modeling

  • Lesson 1 • Terrain Model Validation

    Validates terrain and roughness inputs by comparing modeled wind profiles against measured data. Validation builds confidence before full energy calculations are run.

  • Lesson 2 • Digital Elevation Model Import

    Covers importing and preprocessing digital elevation models for use in WindPRO terrain modules. Correct DEM resolution and extent directly affect flow model accuracy.

  • Lesson 3 • Roughness Map Creation

    Explains how to define land-use roughness classes and assign roughness lengths across the project area. Roughness inputs control the wind shear profile in flow models.

  • Lesson 4 • Orography and Obstacle Objects

    Introduces orography lines and obstacle objects for representing ridges, escarpments, and buildings. These objects refine local flow perturbations beyond the DEM.

Chapter 4See details

Wind Flow Modeling

  • Lesson 1 • Wind Atlas and Reanalysis Data

    Covers using mesoscale wind atlas and reanalysis datasets as background wind climate inputs. These datasets supplement or replace short on-site measurement records.

  • Lesson 2 • WAsP Engine Integration

    Explains how WindPRO interfaces with the WAsP flow engine for linearized terrain flow calculations. Students configure WAsP settings and understand its applicability limits.

  • Lesson 3 • CFD Flow Model Options

    Introduces computational fluid dynamics model options available within or linked to WindPRO for complex terrain. Students learn when CFD is preferred over linearized models.

  • Lesson 4 • Flow Model Output Interpretation

    Teaches reading and validating flow model outputs including wind speed maps and sector-wise distributions. Correct interpretation prevents systematic errors in energy estimates.

Chapter 5See details

Wind Turbine Generator Setup

  • Lesson 1 • WTG Object Placement and Layout

    Covers placing WTG objects on the map canvas and organizing them into wind farm layouts. Correct placement is prerequisite to all energy and wake calculations.

  • Lesson 2 • Power and Thrust Curve Entry

    Explains importing or manually entering power and thrust curves into the WindPRO turbine catalog. Accurate curves are the primary driver of energy yield estimates.

  • Lesson 3 • Hub Height and Tower Configuration

    Defines hub height, rotor diameter, and tower parameters for each WTG object. These parameters control wind shear extrapolation and structural load inputs.

  • Lesson 4 • Turbine Catalog Management

    Teaches creating, editing, and sharing turbine catalog entries across projects. A well-maintained catalog reduces setup time and ensures consistency across analyses.

Chapter 6See details

Energy Yield Calculation

  • Lesson 1 • Gross Energy Yield Estimation

    Runs PARK module calculations to estimate gross annual energy production before losses. Gross AEP is the baseline from which all loss deductions are applied.

  • Lesson 2 • Net AEP and Uncertainty Analysis

    Combines net energy estimates with uncertainty quantification to produce P50, P75, and P90 production values. Probabilistic outputs are required for project financing.

  • Lesson 3 • Wake Loss Modeling

    Applies wake models including Jensen and Eddy Viscosity to quantify turbine-to-turbine energy losses. Wake losses are typically the largest single deduction from gross AEP.

  • Lesson 4 • Energy Report Generation

    Produces formatted energy yield reports directly from WindPRO using built-in report templates. Reports document all inputs, assumptions, and results for third-party review.

  • Lesson 5 • Energy Loss Categories

    Defines and quantifies standard loss categories including availability, electrical, and environmental losses. Systematic loss accounting converts gross AEP to net AEP.

Chapter 7See details

Noise and Shadow Flicker Analysis

  • Lesson 1 • Noise Compliance Assessment

    Compares calculated receptor noise levels against applicable limit criteria and identifies exceedances. Compliance tables are formatted for submission to permitting authorities.

  • Lesson 2 • Noise Propagation Calculation

    Runs ISO-standard noise propagation models to compute sound levels at receptor locations. Students configure ground attenuation, meteorological factors, and terrain effects.

  • Lesson 3 • Noise Source Configuration

    Defines turbine noise emission spectra and directional characteristics within WindPRO. Accurate source data is the foundation of reliable noise propagation results.

  • Lesson 4 • Shadow Flicker Calculation

    Calculates annual shadow flicker hours at sensitive receptors using sun position and rotor geometry. Results identify locations requiring operational curtailment.

  • Lesson 5 • Combined Impact Reporting

    Integrates noise and shadow flicker results into a unified impact report for regulatory submission. Students learn to present findings clearly for non-technical audiences.

Chapter 8See details

Advanced Analysis and Project Optimization

  • Lesson 1 • Automation and Scripting Workflows

    Introduces WindPRO's scripting and batch calculation features to automate repetitive analysis tasks. Automation reduces manual effort and improves consistency across large projects.

  • Lesson 2 • Multi-Scenario Comparison

    Runs and compares multiple project scenarios differing in turbine type, hub height, or layout. Scenario comparison supports technology selection and investment decisions.

  • Lesson 3 • Layout Optimization Techniques

    Uses WindPRO's optimization tools to maximize AEP within constraint boundaries such as setbacks and noise limits. Optimization integrates all prior module outputs simultaneously.

  • Lesson 4 • Offshore and Complex Site Analysis

    Extends WindPRO workflows to offshore projects and highly complex onshore terrain requiring specialized inputs. Students adapt standard workflows to site-specific challenges.

  • Lesson 5 • Constraint Zone Management

    Creates and manages exclusion and buffer zones from environmental, infrastructure, and regulatory constraints. Zones are enforced automatically during layout optimization.

Certification

Your valid completion certificate

This course is for you:

  • Wind energy engineers seeking structured mastery of WindPRO's full analytical capabilities.

  • Environmental consultants preparing noise and shadow flicker reports for wind projects.

  • Renewable energy graduates entering the wind industry without prior WindPRO experience.

  • Project developers who need to evaluate site feasibility and energy production independently.

  • GIS analysts transitioning into wind resource assessment and terrain modeling roles.

  • Independent technical advisors preparing documentation for lender due diligence reviews.

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