Overview
Solar street light poles must withstand extreme wind loads from typhoons, hurricanes, and severe storms. Our Wind Resistance Testing program evaluates the structural integrity of pole designs, mounting brackets, and solar panel attachments to ensure they survive Category 5 hurricane conditions.
Testing Standards
- ASCE 7-16: Minimum Design Loads for Buildings and Other Structures
- IEC 61400-1: Wind turbine design principles applied to pole structures
- GB 50009-2012: Chinese load code for building structures
- Local building codes: Compliance with regional wind zone requirements
Wind Load Calculation
The wind force on a solar street light pole is calculated using:
F = 0.5 × ρ × V² × Cd × A
- ρ = air density (1.225 kg/m³)
- V = wind velocity (m/s)
- Cd = drag coefficient (1.2 for cylindrical poles, 1.4 for square)
- A = projected area (m²)
Test Categories
1. Static Wind Load Test
- Apply lateral force equivalent to 150 mph (241 km/h) wind
- Measure deflection at pole top (must be <1/40 of pole height)
- Verify no permanent deformation after load removal
- Check all bolted connections for loosening
2. Dynamic Fatigue Test
- 1,000,000 cycles of oscillating load (0-50% of design load)
- Simulates vortex shedding and wind-induced vibration
- Monitor for fatigue cracks at weld points and stress concentrations
- Accelerometer measurement of natural frequency and damping ratio
3. Solar Panel Attachment Test
- Apply upward lift force on panel (simulating wind getting under panel)
- Verify panel bracket and mounting hardware maintain integrity
- Test at 2x design wind load for safety factor
Pole Design Specifications by Wind Zone
| Wind Zone | Design Speed | Wall Thickness | Foundation Depth |
|---|---|---|---|
| Normal | 100 mph | 3.0mm | 0.8m |
| Coastal | 130 mph | 4.0mm | 1.0m |
| Typhoon | 170 mph | 5.0mm | 1.5m |
| Hurricane | 200 mph | 6.0mm | 2.0m |