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Wind Flow

Better Location.
Better Energy.

Correct turbine placement helps capture cleaner, less turbulent wind, improving efficiency, reliability, and long-term energy production.

Explore Site Assessment
Wind flow terrain diagram
Normal Airflow
Normal AirflowBlue lines show clean, stable wind moving across open terrain.
Obstacles
ObstaclesHills, trees and buildings interrupt the wind path and reduce performance.
Turbulence
TurbulenceOrange swirls indicate disturbed airflow behind obstacles.
Tower Height
Tower HeightRaise the rotor above the turbulent layer for better performance.
Site Selection Principles
Obstacle Assessment
Obstacle AssessmentIdentify and evaluate buildings, trees and terrain that can disturb wind flow and reduce energy yield.
Correct Tower Height
Correct Tower HeightEnsure the rotor height is above the turbulent airflow zone for maximum energy capture and lower mechanical stress.
Prevailing Wind Direction
Prevailing Wind DirectionAlign turbine placement with the dominant wind direction to capture consistent and stronger winds.
Ground Conditions
Ground ConditionsChoose stable, well-drained ground with proper access for installation and long-term foundations.
Optimal Placement
Optimal PlacementPosition turbines in open areas with minimal obstructions for clean, uninterrupted wind exposure.
Turbulence Reduction
Turbulence ReductionMinimize airflow disruption by maintaining proper clearance from obstacles in all wind directions.

Engineering Clearance Guide

Higher clearance means cleaner wind and better performance.

Small objects clearance Small Objects Clear by at least 2×
the object height
Houses clearance Houses Clear by at least 10×
the obstacle height
Large buildings clearance Large Buildings Clear by at least 15×
the obstacle height
Hills clearance Hills / Elevated Terrain Clear by at least 20×
the obstacle height
Recommended guideline
Recommended Guideline Rotor bottom should be above the highest obstacle by the recommended clearance.
Why Wind Flow Analysis Matters
Higher Energy Yield
Higher Energy YieldCapture stronger, cleaner winds for more consistent and higher energy output.
Lower Mechanical Stress
Lower Mechanical StressReduced turbulence means less vibration and wear, extending equipment life.
Better Reliability
Better ReliabilityStable wind conditions improve system reliability and reduce downtime.
Smarter Installation Planning
Smarter Installation PlanningData-driven decisions lead to better site design, lower costs and long-term success.
Open Area
Open AreaFewer obstacles
Cleaner Wind
Cleaner WindSmoother airflow
Better Turbine Performance
Better Turbine PerformanceMore energy, longer life

Good engineering starts before installation.

Request a professional site assessment and let our experts identify the right tower height, placement and wind conditions for maximum performance.

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