Western Thessaloniki

Western Thessaloniki 500 kW

Western Thessaloniki 500 kW

A 500 kW photovoltaic installation in Western Thessaloniki, designed for high annual energy yield through efficient system configuration and reliable grid-connected operation.

Project Introduction

The project was executed on a flat, readily accessible site, enabling optimal PV system configuration and efficient deployment. A grid-integrated photovoltaic installation was implemented to maximize annual energy yield, while maintaining reliable operation and long-term system durability.

Inverter System

High-efficiency inverters ensuring stable grid connection and reliable large-scale energy conversion.

PV Mounting System

Stable racking system providing dependable support, precise module alignment, and high structural resilience over time.

Solar Panel

Luxor 530 W photovoltaic modules, delivering consistent performance and high energy yield under standard operating conditions.

Installed Capacity

500 kW installed PV capacity, engineered for optimal energy yield, dependable grid integration, and reliable system performance.

Large-scale ground-mounted photovoltaic solar array installed in rural landscape with mountainous backdrop

What This Energy Represents in Real Terms

Impact Area

Results

🌳 Equivalent to planting trees

🌳 Equivalent to planting trees

~14,800 trees annually

~14,800 trees annually

🏠 Number of Households Powered

🏠 Number of Households Powered

~232 residences annually

~232 residences annually

🚗 Vehicle Emissions Avoided

🚗 Vehicle Emissions Avoided

~71 vehicles out of circulation annually

~71 vehicles out of circulation annually

💡 Energy Usage Comparison

💡 Energy Usage Comparison

~1,860 street lighting fixtures for one year

~1,860 street lighting fixtures for one year

⛽ Offsets the energy generated from fuel combustion

⛽ Offsets the energy generated from fuel combustion

~83,800 liters of oil per year

~83,800 liters of oil per year

Technical Challenges & Innovations

The installation prioritized grid integration and optimized energy production. Meticulous system dimensioning and strategic equipment selection guaranteed reliable operation, superior performance, and long-term system durability.

Conclusion

This project exemplifies the successful deployment of utility-scale photovoltaic systems in standard grid-integrated settings. It ensures substantial energy generation, reliable operation, and lasting value through validated technology and meticulous engineering design.

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